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    "count": 732,
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    "results": [
        {
            "id": 17,
            "title": "Modelling and electrical characteristics of the Thailand plasma focus-II (TPF-II)",
            "abstract": "The Thailand Plasma Focus II (TPF-II) is a 3.3 kJ dense plasma focus that was developed at Walailak University, Thailand. The aim of the device is to study the production of ion beams in the keV energy range and their applications for the color modification of gemstones. A high-energy ion beam is produced by heating and acceleration in the pinch phase of the plasma focus. The heating process is determined by the maximum electrical current, which can be optimized by variation of the system’s inductance. Lee model code was implemented to optimize the configuration of the electrodes. The current waveforms for the different initial conditions were used to obtain the system’s inductance, which was verified by a short circuit test. It was found that the inductance and resistance were about 153 nH and 12 mΩ, respectively. © 2018, Walailak University. All rights reserved.",
            "published_year": 2018,
            "file": null,
            "authors": [
                "Tamman A.",
                "Boonyawan D.",
                "Onjun T.",
                "Paosawatyanyong B.",
                "Poolyarat N.",
                "Nisoa M."
            ],
            "keywords": [
                "plasma sheath",
                "lee model code",
                "short-circuit test",
                "plasma focus",
                "pinch phase"
            ],
            "references": [
                "Abdou, A.E., Ismail, M.I., Mohamed, A.E., Lee, S., Saw, S.H., Verma, R., Preliminary results of Kansas State University dense plasma focus (2012) IEEE Trans. Plasma Sci, 40, pp. 2741-2744",
                "Soto, L., New trends and future perspectives on plasma focus research (2005) Plasma Phys. Contr. F, 47, p. A361",
                "Talukdar, N., Borthakur, S., Neog, N.K., Borthakur, T.K., Comparative study of neutron emission from a plasma focus device using two different anode shapes (2016) Phys. Plasmas, 23, p. 52711",
                "Habibi, M., Angular distribution of ion beam emitted from a 3.5 kJ plasma focus device using different shapes of anodes (2016) Phys. Lett. A, 380, pp. 439-443",
                "Lee, S., Plasma focus radiative model: Review of the Lee Model Code (2014) J. Fusion Energ, 33, pp. 319-335",
                "Jain, J., Moreno, J., Pavez, C., Bora, B., Inestrosa-Izurieta, M.J., Avaria, G., Soto, L., Ion beam measurement using Rogowski coils in a hundred of joules dense plasma focus device (2016) J. Phys. Conf. Ser., 720, p. 12042",
                "Tamman, A., Nisoa, M., Onjun, T., Preliminary numerical study of Thailand Plasma Focus II (TPF-II) design (2014) Int. J. Mod. Phys. Conf. Ser., 32, p. 1460334",
                "Lee, S., Saw, S.H., Numerical experiments providing new insights into plasma focus fusion devices (2010) Energies, 3, pp. 711-737",
                "Kunamaspakorn, T., Poolyarat, N., Picha, R., Promping, J., Onjun, T., Determination of the total inductance of TPF-I (2015) J. Phys. Conf. Ser., 611, p. 012009",
                "Frignani, M., Mannucci, S., Mostacci, D., Rocchi, F., Sumini, M., Angeli, E., Tartari, A., Karpinski, L., Short circuit tests on a 150 kJ, 1 Hz repetitive plasma focus (2006) Czech. J. Phys., 56, pp. B413-B418",
                "Wong, D., Patran, A., Tan, T.L., Rawat, R.S., Lee, P., Soft X-ray optimization studies on a dense plasma focus device operated in neon and argon in repetitive mode (2004) IEEE Trans. Plasma Sci, 32, pp. 2227-2235",
                "Etaati, G.R., Ghorannevis, M., Insulator length effects in Mather: Type plasma focus device (2004) Proceeding of the 31st EPS Conference on Plasma Physics, pp. 28-31. , London, UK",
                "Saw, S.H., Lee, S., Scaling laws for plasma focus machines from numerical experiments (2010) Energ. Power Eng., 2, pp. 65-72",
                "Yousefi, H.R., Aghamir, F.M., Masugata, K., Effect of the insulator length on Mather-type plasma focus devices (2007) Phys. Lett. A, 361, pp. 360-363",
                "Saw, S.H., Lee, S., Roy, F., Chong, P.L., Vengadeswaran, V., Sidik, A.S.M., Leong, Y.W., Singh, A., (2010) Rev. Sci. Instrum, 81, pp. 053505-053509",
                "Behbahani, R.A., Xiao, C., Common features of particle beams and x-rays generated in a low energy dense plasma focus device (2015) Phys. Plasmas, 22, pp. 1-6",
                "Lee, S., An energy-consistent snow-plough model for pinch design (1983) J. Phys. D Appl. Phys, 16, pp. 2463-2474",
                "Bernard, A., Bruzzone, H., Choi, P., Chuaqui, H., Gribkov, V., Herrera, J., Hirano, K., Zoita, V., Scientific status of plasma focus research (1998) J. Moscow Phys. Soc., 8, pp. 93-170",
                "Bhuyan, H., Chuaqui, H., Favre, M., Mitchell, I., Wyndham, E., Ion beam emission in a low energy plasma focus device operating with methane (2005) J. Phys. D Appl. Phys, 38, pp. 1164-1169",
                "Verma, R., Rawat, R.S., Lee, P., Tan, A.T.L., Shariff, H., Ying, G.J., Springham, S.V., Shyam, A., Neutron emission characteristics of NX-3 plasma focus device: Speed factor as the guiding rule for yield optimization (2012) IEEE Trans. Plasma Sci, 40, pp. 3280-3289"
            ]
        },
        {
            "id": 11,
            "title": "Fabrication and evaluation of nanocellulose sponge for oil/water separation",
            "abstract": "Nanocellulose sponge was fabricated by a facile method: freeze-drying of nanocellulose aqueous suspension to sponge state, following by hydrophobic treatment with stearoyl chloride at 50 °C for 1 h. The obtained nanocellulose sponge showed superhydrophobicity (160° of water contact angle) and superoleophilicity with high protection from water but selective absorption of oil. Its absorption capacities for various kinds of oil and non-polar liquids were 25–55 times higher than its dry weight and exhibited excellent selectivity for absorbing of oil which spilled on the surface of water or underwater with high separation efficiency. This superhydrophobic nanocellulose sponge can be easily recovered by simple squeezing and reused at least 10 cycles with remained high separation efficiency. It is expected that such a biodegradable nanocellulose sponge can be applied to solve the oil spill accident and treat the oily wastewater from households and industries. © 2018 Elsevier Ltd",
            "published_year": 2018,
            "file": null,
            "authors": [
                "Wang Z.",
                "Hao X.",
                "Kongparakul S.",
                "Reubroycharoen P.",
                "Abudula A.",
                "Guan G.",
                "Phanthong P.",
                "Samart C."
            ],
            "keywords": [
                "oil/water separation",
                "sponge",
                "nanocellulose",
                "oil absorbent",
                "superhydrophobicity",
                "superoleophilicity"
            ],
            "references": [
                "Wang, S., Peng, X., Zhong, L., Tan, J., Jing, S., Cao, X., An ultralight, elastic, cost-effective, and highly recyclable superabsorbent from microfibrillated cellulose fibers for oil spillage cleanup (2015) Journal of Materials Chemistry A, 3, pp. 8772-8781",
                "Moon, R., Martini, A., Nairn, J., Simonsen, J., Youngblood, J., Cellulose nanomaterials review: Structure, properties and nanocomposites (2011) Chemical Society Reviews, 40, pp. 3941-3994",
                "Mulyadi, A., Zhang, Z., Deng, Y., Fluorine-free oil absorbents made from cellulose nanofibril aerogels (2016) ACS Applied Materials & Interfaces, 8, pp. 2732-2740",
                "Korhonen, J., Kettunen, M., Ras, R., Ikkala, O., Hydrophobic nanocellulose aerogels as floating, sustainable, reusable, and recyclable oil absorbents (2011) ACS Applied Materials & Interfaces, 3, pp. 1813-1816",
                "Xue, Z., Cao, Y., Liu, N., Feng, L., Jiang, L., Special wettable materials for oil/water separation (2014) Journal of Materials Chemistry A, 2, pp. 2445-2460",
                "Zhai, T., Zheng, Q., Cai, Z., Xia, H., Gong, S., Synthesis of polyvinyl alcohol/cellulose nanofibril hybrid aerogel microspheres and their use as oil/solvent superabsorbents (2016) Carbohydrate Polymers, 148, pp. 300-308",
                "Liu, H., Geng, B., Chen, Y., Wang, H., A review on the aerogel-type oil sorbents derived from nanocellulose (2017) ACS Sustainable Chemistry & Engineering, 5 (1), pp. 49-66",
                "Lavoine, N., Bergström, L., Nanocellulose-based foams and aerogels: Processing, properties, and applications (2017) Journal of Materials Chemistry A, 5, pp. 16105-16117",
                "Jiang, F., Hsieh, Y., Amphiphilic superabsorbent cellulose nanofibril aerogels (2014) Journal of Materials Chemistry A, 2, pp. 6337-6342",
                "Wang, J., Geng, G., Highly recyclable superhydrophobic sponge suitable for the selective sorption of high viscosity oil from water (2015) Marine Pollution Bulletin, 97, pp. 118-124",
                "Xiao, C., Si, L., Liu, Y., Guan, G., Wu, D., Wang, Z., Ultrastable coaxial cable-like superhydrophobic mesh with self-adaption effect: Facile synthesis and oil/water separation application (2016) Journal of Materials Chemistry A, 4, pp. 8080-8090",
                "Geissler, A., Biesalski, M., Heinze, T., Zhang, K., Formation of nanostructured cellulose stearoyl esters via nanoprecipitation (2014) Journal of Materials Chemistry A, 2, pp. 1107-1116",
                "Delgado-aguilar, M., González, I., Jiménez, A., Tarrés, Q., Quintana, G., Mutjé, P., Cellulose nanofibers modified with alkyl ketene dimer for oil absorbent aerogels (2016) Cellulose Chemistry and Technology, 50, pp. 369-375",
                "Laitinen, O., Suopajärvi, T., Österberg, M., Liimatainen, H., Hydrophobic, superabsorbing aerogels from choline chloride-based deep eutectic solvent pretreated and silylated cellulose nanofibrils for selective oil removal (2017) ACS Applied Materials & Interfaces, 9, pp. 25029-25037",
                "Lu, Y., Wang, Y., Liu, L., Yuan, W., Environmental-friendly and magnetic/silanized ethyl cellulose sponges as effective and recyclable oil-absorption materials (2017) Carbohydrate Polymers, 173, pp. 422-430",
                "Cervin, N., Aulin, C., Larsson, P., Wågberg, L., Ultra porous nanocellulose aerogels as separation medium for mixtures of oil/water liquids (2012) Cellulose, 19, pp. 401-410",
                "Wang, G., He, Y., Wang, H., Zhang, L., Yu, Q., Peng, S., A cellulose sponge with robust superhydrophilicity and under-water superoleophobicity for highly effective oil/water separation (2015) Green Chemistry, 17, pp. 3093-3099",
                "Wei, Y., Cheng, F., Hou, G., Synthesis and properties of fatty acid esters of cellulose (2007) Journal of Scientific & Industrial Research, 66, pp. 1019-1024",
                "Xiao, S., Gao, R., Lu, Y., Li, J., Sun, Q., Fabrication and characterization of nanofibrillated cellulose and its aerogels from natural pine needles (2015) Carbohydrate Polymers, 119, pp. 202-209",
                "Nguyen, S., Feng, J., Le, N., Le, A., Hoang, N., Tan, V., Cellulose aerogel from paper waste for crude oil spill cleaning (2013) Industrial & Engineering Chemistry Research, 52, pp. 18386-18391",
                "Zhi, C., Bando, Y., Tang, C., Huang, Q., Golberg, D., Boron nitride nanotubes: functionalization and composites (2008) Journal of Materials Chemistry, 18, pp. 3900-3908",
                "Liu, C., Chen, B., Yang, J., Li, C., One-step fabrication of superhydrophobic and superoleophilic cigarette filters for oil-water separation (2015) Journal of Adhesion Science and Technology, 29, pp. 2399-2407",
                "Geissler, A., Chen, L., Zhang, K., Bonaccurso, E., Biesalski, M., Superhydrophobic surfaces fabricated from nano- and microstructured cellulose stearoyl esters (2013) Chemical Communications, 49, pp. 4962-4964",
                "Lin, R., Li, A., Zheng, T., Lu, L., Cao, Y., Hydrophobic and flexible cellulose aerogel as an efficient, green and reusable oil sorbent (2015) RSC Advances, 5, pp. 82027-82033",
                "Liu, F., Ma, M., Zang, D., Gao, Z., Wang, C., Fabrication of superhydrophobic/superoleophilic cotton for application in the field of water/oil separation (2014) Carbohydrate Polymers, 103, pp. 480-487",
                "Zhang, Z., Sèbe, G., Rentsch, D., Zimmermann, T., Tingaut, P., Ultralightweight and flexible silylated nanocellulose sponges for the selective removal of oil from water (2014) Chemistry of Materials, 26, pp. 2659-2668",
                "Wang, X., Xu, S., Tan, Y., Du, J., Wang, J., Synthesis and characterization of a porous and hydrophobic cellulose-based composite for efficient and fast oil-water separation (2016) Carbohydrate Polymers, 140, pp. 188-194"
            ]
        },
        {
            "id": 12,
            "title": "Effect of injection parameters on mechanical and physical properties of super ultra-thin wall propylene packaging by Taguchi method",
            "abstract": "The parameters of the plastic injection molding process have been investigated for the manufacture of a 64 oz. ultra-thin polypropylene bucket. The 3 main parameters, such as injection speed, melting temperature, holding pressure, were investigated to study their effect on the physical appearance and compressive strength. The orthogonal array of Taguchi's L9 (33) was used to carry out the experimental plan. The physical properties were measured and the compressive strength was determined using linear regression analysis. The differential scanning calorimeter (DSC) was used to analyze the crystalline structure of the product. The optimization results show that the proposed approach can help engineers identify optimal process parameters and achieve competitive advantages of energy consumption and product quality. In addition, the injection molding of the product includes 24 mm of shot stroke, 1.47 mm position transfer, 268 rpm screw speed, injection speed 100 mm/s, 172 ton clamping force, 800 kgf holding pressure, 0.9 s holding time and 1.4 s cooling time, make the products in the shape and proportion of the product satisfactory. The parameters of influence are injection speed 71.07%, melting temperature 23.31% and holding pressure 5.62%, respectively. The compressive strength of the product was able to withstand a pressure of up to 839 N before the product became plastic. The low melting temperature was caused by the superior crystalline structure of the super-ultra-thin wall product which leads to a lower compressive strength. © 2018 The Authors",
            "published_year": 2018,
            "file": null,
            "authors": [
                "Ginghtong T.",
                "Nakpathomkun N.",
                "Pechyen C."
            ],
            "keywords": [
                "plastic packaging",
                "injection molding",
                "injection parameter",
                "super ultra-thin wall"
            ],
            "references": [
                "Marsh, K., Bugusu, B., Food packaging-roles, material, and environment issues, scientific status summary (2007) J Food Sci, 72, pp. 39-55",
                "Rajalingam, S., Vasant, P., Khe, C.S., Merican, Z., Oo, Z., Optimization of injection molding process parameters by response surface methods (2016) J Inform Tech Softw Eng, pp. 1-2",
                "Dang, X.-P., General frameworks for optimization of plastic injection molding process parameters (2014) Simul Model Pract Theory, 41, pp. 15-27",
                "Hiroshi, Fundamental study on structure development of thin-wall injection molded products",
                "Kamaruddin, S., Khan, A., Wan, K.S., The use of the Taguchi method in determining the optimum plastic injection molding parameters for the production of a consumer product (2004) J Mekanikal, 18, pp. 98-110",
                "Huang, M.C., The effective factors in the war page problem of an injection-molded part with a thin shell feature (2001) Mater Process Technol, pp. 1-9",
                "Seow, L.W., Lam, Y.C., Optimizing flow in plastic injection molding (1997) J Mater Process Technol, pp. 333-341",
                "Chen, C.P., Chuang, M.T., Hsiao, Y., Yang, Y., Tsai, C., Simulation and experimental study in determining injection molding process parameters for thin-shell plastic parts via the design of experiments analysis (2009) J Expert Syst Appl, 36, pp. 10752-10759",
                "Song, M.C., Liu, Z., Wang, M.J., Yu, T.M., Zhao, D.Y., Research on effects of injection process parameters on the molding process for ultra-thin wall plastic parts (2007) J Mater Process Technol, pp. 668-671",
                "Keith, C., R&D: filling analysis (2013), StackTeck System Limited Brompton",
                "Wang, T.H., Study on residual stresses of thin-walled injection molding (2005) J Eur Poly, 41, pp. 2511-2517",
                "Weiss, K., Thinwall: reducing the weight, size, and cost of portable electronics by reducing the wall thickness of enclosures (2000) J Mater Des, 21, pp. 51-55"
            ]
        },
        {
            "id": 13,
            "title": "On modified Z -contractions and an iterative scheme for solving nonlinear matrix equations",
            "abstract": "In this work, we introduce the notion of a ZR-contraction mapping, where R is an binary relation on its domain, which improves upon the idea of Khojasteh et al. (Filomat 29:1189–1194, 2015). We establish some fixed point results for ZR-contraction mappings in complete metric spaces endowed with a transitive relation and also give two illustrative examples. Moreover, we show that N-th order fixed point theorems are derived from our main results. As an application, we apply our main result to study a class of nonlinear matrix equation. Finally, as numerical experiments, we approximate the definite solution of a nonlinear matrix equation using MATLAB. © 2018, Springer International Publishing AG, part of Springer Nature.",
            "published_year": 2018,
            "file": null,
            "authors": [
                "Sintunavarat W.",
                "Sawangsup K."
            ],
            "keywords": [
                "fixed point",
                "zr-contraction",
                "simulation function",
                "binary relation"
            ],
            "references": [
                "Berzig, M., Solving a class of matrix equations via the Bhaskar–Lakshmikantham coupled fixed point theorem (2012) Appl. Math. Lett., 25, pp. 1638-1643",
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                "Rad, G.S., Shukla, S., Rahimi, H., Some relations between n -tuple fixed point and fixed point results (2015) Revista de la Real Academia de Ciencias Exactas Fisicas y Naturales Serie A Matematicas, 109 (2), pp. 471-481",
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                "Berinde, V., On the approximation of fixed points of weak contractive mappings (2003) Carpathian J. Math., 19 (1), pp. 7-22",
                "Khojasteha, F., Shuklab, S., Radenović, S., A new approach to the study of fixed point theory for simulation functions (2015) Filomat, 29 (6), pp. 1189-1194",
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                "Su, Y., Petrusel, A., Yao, J.-C., Multivariate fixed point theorems for contractions and nonexpansive mappings with applications (2016) Fixed Point Theory Appl., 2016, p. 9",
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                "Aydi, H., Karapýnar, E., Yüce, Quadruple fixed point theorems in partially ordered metric spaces depending on another function. ISRN Appl. Math (2012) Article ID",
                "Sawangsup, K., Sintunavarat, W., de Hierro, A.F.R.L., J., Fixed point theorems for FR -contractions with applications to solution of nonlinear matrix equations (2017) J. Fixed point Theory Appl., 19 (3), pp. 1725-1771",
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                "Nieto, J.J., Rodŕguez-opez, R., Contractive mapping theorems in partially ordered sets and applications to ordinary differential equations (2005) Order, 22, pp. 223-239",
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                "Samet, B., Turinici, M., Fixed point theorems on a metric space endowed with an arbitrary binary relation and applications (2012) Commun. Math. Anal., 13 (2), pp. 82-97",
                "Luong, N.V., Thuan, N.X., Coupled fixed points in partially ordered metric spaces and application (2011) Nonlinear Anal., 74, pp. 983-992",
                "Kolman, B., Busby, R.C., Ross, S., (2000) Discrete Mathematical Structures, , 3, PHI Pvt. Ltd., New Delhi",
                "Berinde, V., Borcut, M., Tripled fixed point theorems for contractive type mappings in partially ordered metric spaces (2011) Nonlinear Anal., 74, pp. 4889-4897",
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                "Turinici, M., Ran–Reurings fixed point results in ordered metric spaces (2011) Libertas Math., 31, pp. 49-55",
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            ]
        },
        {
            "id": 14,
            "title": "PEG-template for surface modification of zeolite: A convenient material to the design of polypropylene based composite for packaging films",
            "abstract": "Zeolite was successfully modified by conventional synthetic route. Polyethylene glycol was employed for surface modification of zeolite. The surface of zeolite exhibited therefore hydrophobic properties. Less than 5 wt% of modified zeolites with uniform size and shape were integrated into polypropylene matrix. Mechanical properties of composite exhibited the similar trend compare to neat polypropylene. Oxygen transmission rate and water vapor transmission rate were evaluated and it exhibited the strong potential to be a good candidate material in active packaging. © 2018 The Authors",
            "published_year": 2018,
            "file": null,
            "authors": [
                "Pratumpong P.",
                "Toommee S."
            ],
            "keywords": [
                "polypropylene",
                "zeolite",
                "packaging",
                "composite",
                "peg-template"
            ],
            "references": [
                "Brosseua, C., Emerging technologies of plastic carbon nanoelectronics: a review (2011) Surf Coat Technol, 206, pp. 753-758",
                "Abdul Khalil, H.P.S., Bhat, A.H., Ireana Yusra, A.F., Green composites from sustainable cellulose nanofibrils: a review (2012) Carbohydr Polym, 87, pp. 963-979",
                "Wang, C., Fang, C.Y., Wang, C.Y., Electrospun poly (butylene terephthalate) fibers: entanglement density effect on fiber diameter and fiber nucleating ability towards isotactic polypropylene (2015) Polymer, 72, pp. 21-29",
                "Sahner, K., Zeolites – versatile materials for gas sensors (2008) Solid State Ionics, 179, pp. 2416-2423",
                "Ummartyotin, S., Si-O barrier technology for bacterial cellulose nanocomposite flexible displays (2011) Carbohydr Polym, 86, pp. 337-342",
                "Ummartyotin, S., Development of transparent bacterial cellulose nanocomposite film as substrate for flexible organic light emitting diode (OLED) display (2012) Ind Crops Prod, 35, pp. 92-97",
                "Gomez-Elvira, J.M., Benavente, R., Martinez, M.C., Correlation between chain microstructure and activation energy in the pyrolysis of a high molecular weight isotactic polypropylene (2015) Polym Degrad Stab, 117, pp. 46-57",
                "Ummartyotin, S., Manuspiya, H., A critical review on cellulose: From fundamental to an approach on sensor technology (2015) Renew Sustain Energy Rev, 41, pp. 402-412",
                "Martin-Alfonso, J.E., Franco, J.M., Influence of polymer reprocessing cycles on the microstructure and rheological behavior of polypropylene/mineral oil oleogels (2015) Polym Test, 45, pp. 12-19",
                "Soroudi, A., Jakubowicz, I., Recycling of bioplastics, their blends and biocomposites: a review (2013) Eur Polym J, 49, pp. 2839-2858",
                "Majeed, K., Potential materials for food packaging from nanoclay/natural fibres filled hybrid composites (2013) Mater Des, 46, pp. 391-410",
                "Lew, C.M., Yan, Y.S., Pure-silica-zeolite low-k dielectric films for computer chips (2007) Stud Surf Sci Catal, 170, pp. 1502-1507",
                "Ohajar Othman, S., Bio-nanocomposite materials for food packaging applications: Types of biopolymer and nano-sized filler (2014) Agric Agric Sci Procedia, 2, pp. 296-303",
                "Singh, S., Renewable resource based biocomposites from natural fiber and polyhydroxybutyrate-co-valerate (PHBV) bioplastic (2008) Compos A Appl Sci Manuf, 39, pp. 875-886",
                "Lee, D.S., Yam, K.L., Piergiovanni, L., (2008), Food packaging science and technology;",
                "Juntaro, J., Bacterial cellulose reinforced polyurethane-based resin nanocomposites: a study of how ethanol and processing pressure affect physical, mechanical and dielectric properties (2012) Carbohydr Polym, 87, pp. 2464-2469",
                "Bhatnager, A., Sillanpaa, M., Applications of chitin- and chitosan-derivatives for the detoxification of water and wastewater – a short review (2009) Adv Colloid Interface Sci, 152, pp. 26-38",
                "Ummartyotin, S., Manuspiya, H., An overview of feasibilities and challenge of conductive cellulose for rechargeable lithium based battery (2015) Renew Sustain Energy Rev, 50, pp. 204-213",
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            ]
        },
        {
            "id": 15,
            "title": "Effect of PDGF-B aptamer on PDGFRβ/PDGF-B interaction: Molecular dynamics study",
            "abstract": "PDGFRβ/PDGF-B interaction plays a role in angiogenesis, and is mandatory in wound healing and cancer treatment. It has been reported that the PDGF-B aptamer was able to bind to PDGF-B, thus regulating the angiogenesis. However, the binding interaction between the aptamer and the growth factor, including the binding sites, has not been well investigated. This study applied a molecular dynamics (MD) simulation to investigate the aptamer-growth factor interaction in the presence or absence of a receptor (PDGFRβ). Characterization of the structure of an aptamer-growth factor complex revealed binding sites from each section in the complex. Upon the complex formation, PDGF-B and its aptamer exhibited less flexibility in their molecular movement, as indicated by the minimum values of RMSD, RMSF, loop-to-loop distance, and the summation of PCA eigenvalues. Our study of residue pairwise interaction demonstrated that the binding interaction was mainly contributed by electrostatic interaction between the positively-charged amino acid and the negatively-charged phosphate backbone. The role of the PDGF-B aptamer in PDGFRβ/PDGF-B interaction was also investigated. We demonstrated that the stability of the Apt-PDGF-B complex could prevent the presence of a competitor, of PDGFRβ, interrupting the binding process. Because the aptamer was capable of binding with PDGF-B, and blocking the growth factor from the PDGFRβ, it could down regulate the consequent signaling pathway. We provide evidence that the PDGF-BB aptamer is a promising molecule for regulation of angiogenesis. The MD study provides a molecular understanding to modification of the aptamer binding interaction, which could be used in a number of medical applications. © 2018 Elsevier Inc.",
            "published_year": 2018,
            "file": null,
            "authors": [
                "Tantirungrotechai Y.",
                "Rotkrua P.",
                "Vu C.Q.",
                "Soontornworajit B."
            ],
            "keywords": [
                "pdgfrβ/pdgf-b interaction",
                "pdgf-b",
                "molecular dynamics",
                "dna aptamer",
                "angiogenesis"
            ],
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        {
            "id": 16,
            "title": "Postharvest quality maintenance and bioactive compounds enhancement in ‘Taaptimjaan’ wax apple during short-term storage by salicylic acid immersion",
            "abstract": "Physicochemical quality and bioactive compounds of ‘Taaptipjaan’ wax apple (Syzygium samarangenese) that were immersed in 0, 0.5 and 1.0 mM salicylic acid (SA) for 30 min and then stored at 12 ± 1 °C for 9 days were investigated. SA had no effect on the colour of fruit skin, total soluble solids, total acidity, total sugars, ascorbic acid (AsA) and anthocyanin contents but could help maintaining the firmness of the fruit. Antioxidant activity, total phenols, total flavonoids and antioxidant enzymes activities such as peroxidase and catalase were enhanced by SA. The SA immersion at the concentration of 0.5 mM effectively maintained firmness and visual appearance without causing any shrinkage on the fruit top and skin pitting and enhanced the bioactive compounds greater than 1.0 mM SA immersion. The evidences suggest that 0.5 mM SA immersion is an effective approach of maintaining quality and enhancing bioactive compounds including the activities of antioxidant enzymes in the fruit during short-term storage. © 2018, Korean Society for Horticultural Science and Springer-Verlag GmbH Germany, part of Springer Nature.",
            "published_year": 2018,
            "file": null,
            "authors": [
                "Boonyaritthongchai P.",
                "Tepsorn R.",
                "Mitsang P.",
                "Supapvanich S.",
                "Youryon P.",
                "Techavuthiporn C."
            ],
            "keywords": [
                "bioactive compounds",
                "wax apple fruit",
                "physicochemical quality",
                "salicylic acid"
            ],
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            ]
        },
        {
            "id": 386,
            "title": "Some inequalities for the q-analogue of the classical riemann zeta functions and the q-polygamma functions",
            "abstract": "We present the generalizations on some inequalities for the q-analogue of the classical Riemann zeta functions and the q-polygamma functions. © 2014 Banyat Sroysang.",
            "published_year": 2014,
            "file": null,
            "authors": [
                "Sroysang B."
            ],
            "keywords": [],
            "references": [
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            ]
        },
        {
            "id": 18,
            "title": "An 8-aminoquinoline derivative as a molecular platform for fluorescent sensors for Zn(II) and Cd(II) ions",
            "abstract": "The amide derivatives of 8-aminoquinoline with two types of amino acid pendants, i.e. glycine and β-alanine, are evaluated for fluorescence sensing of various metal ions. In Tris-HCl aqueous buffer solution, the derivative containing glycine exhibits selective fluorescence enhancement with Zn2+. The fluorescence turn-on signal at a longer wavelength is a result of the binding between N-8-aminoquinolinylglycinamide and Zn2+ which is promoted by the deprotonation of the amide proton. However, both Zn2+ and Cd2+ induce the turn-on signal in ethanol solution. X-ray crystallography of single crystals of both Zn2+ and Cd2+ complexes formed in ethanol reveals 1-D coordination polymer structures in which the metal ions are tethered with N and O of the amide groups. Simultaneous detection of Zn2+ and Cd2+ are possible by using paper chromatographic separation and the ligand as a visualizing agent. The fluorescence imaging of either Zn2+ or Cd2+ in plant tissue is demonstrated. The conjugation of the ligand with dimethylaminophenylacetylene effectively tunes the emission color of the ligand while retaining the sensing selectivity. Therefore, N-8-aminoquinolinylglycinamide is a simple yet effective binding probe for Zn2+ and Cd2+ with excellent fluorescence signal transduction. © 2018 Elsevier B.V.",
            "published_year": 2018,
            "file": null,
            "authors": [
                "Boonkitpatarakul K.",
                "Smata A.",
                "Chainok K.",
                "Sukwattanasinitt M.",
                "Kongnukool K.",
                "Srisurichan S."
            ],
            "keywords": [
                "aminoquinoline",
                "fluorescence imaging",
                "metal ion detection",
                "coordination polymer",
                "fluorescent sensor"
            ],
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            ]
        },
        {
            "id": 19,
            "title": "Transforming fish scale waste into an efficient filler for starch foam",
            "abstract": "In this work modified fish scale waste (FS) was used as a filler in order to improve the properties of starch foam prepared by a baking process. The FS was modified under two calcination conditions: at 500 °C for 5 h and at 700 °C for 3 h. The FS powder calcined at 700 °C for 3 h (FS700-3) had higher Ca content and lower protein content and was the filler chosen for experimental study of the effects of its addition on the properties of the starch foam. The addition of FS700-3 to the starch foam produced a more expanded structure due to FS700-3 efficiently supported the growth of existing cells during nucleation and bubble growth. Moreover, the flexural stress at maximum load of the starch foam increased from 1.03 MPa to 1.54 MPa after adding FS700-3 at 10 wt% because of the good adhesion between the two components. © 2018",
            "published_year": 2018,
            "file": null,
            "authors": [
                "Chiarathanakrit C.",
                "Kaewtatip K.",
                "Riyajan S.-A."
            ],
            "keywords": [
                "density",
                "calcination",
                "starch foam",
                "fish scale",
                "morphology"
            ],
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            ]
        }
    ]
}