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  2023 (2)
Primary human osteoblast and mesenchymal stem cell responses to apatite/tricalcium phosphate bone cement modified with polyacrylic acid and bioactive glass. Thaitalay, P.; Thongsri, O.; Dangviriyakul, R.; Srisuwan, S.; Carney, L.; Gough, J. E.; and Rattanachan, S. T. Journal of Biomedical Materials Research Part A. 2023.
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Fluoride release and uptake characteristics of the sol-gel derived glass ionomer cement modified with fluoride containing strontium-based bioactive glass nanoparticles. Thongsri, O.; Srisuwan, S.; Thaitalay, P.; Dangwiriyakul, R.; Chanlek, N.; Talabnin, C.; and Rattanachan, S. T. Journal of Sol-Gel Science and Technology, 105(3): 857–870. 2023.
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  2022 (2)
Structural evaluation of ZnO substitution for CaO in glass ionomer cement synthesized by sol-gel method and their properties. Thongsri, O.; Srisuwan, S.; Thaitalay, P.; Dangwiriyakul, R.; Aengchuan, P.; Chanlek, N.; Kidkhunthod, P.; Talabnin, C.; Suksaweang, S.; and Rattanachan, S. T. Journal of Materials Science,1–18. 2022.
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Nano-bioactive glass incorporated polymeric apatite/tricalcium phosphate cement composite supports proliferation and osteogenic differentiation of human adipose-derived stem/stromal cells. Thaitalay, P.; Giannasi, C.; Niada, S.; Thongsri, O.; Dangviriyakul, R.; Srisuwan, S.; Suksaweang, S.; Brini, A. T.; and Rattanachan, S. T. Materials Today Communications, 31: 103590. 2022.
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  2021 (3)
Influence of Al 2 O 3 and P 2 O 5 contents in sol-gel ionomer glass system on the structure and their cement properties. Thongsri, O.; Srisuwan, S.; Thaitalay, P.; Dangwiriyakul, R.; Aengchuan, P.; Chanlek, N.; Talabnin, C.; Suksaweang, S.; and Rattanachan, S. T. Journal of Sol-Gel Science and Technology, 98: 441–451. 2021.
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Influence of polyacrylic acid (PAA)/Na2HPO4 mixture on biphasic calcium phosphate cement: Enhancing strength and cell viability. Thaitalay, P.; Thongsri, O.; Dangviriyakul, R.; Srisuwan, S.; Talabnin, C.; Suksaweang, S.; Srakaew, N. L.; and Rattanachan, S. T. International Journal of Applied Ceramic Technology, 18(4): 1365–1378. 2021.
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Development of mechanical properties and biocompatibility of calcium phosphate bone cement for bone substitution. Thaitalay, P. Ph.D. Thesis, School of Ceramics Engineering Institute of Engineering Suranaree University …, 2021.
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  2020 (2)
3D mesoporous bioactive glass/silk/chitosan scaffolds and their compatibility with human adipose-derived stromal cells. Phetnin, R. B.; Suksaweang, S.; Giannasi, C.; Brini, A. T.; Niada, S.; Srisuwan, S.; and Rattanachan, S. T. International Journal of Applied Ceramic Technology, 17(6): 2779–2791. 2020.
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Development of injectable chitosan/biphasic calcium phosphate bone cement and in vitro and in vivo evaluation. Rattanachan, S. T; Srakaew, N. L.; Thaitalay, P.; Thongsri, O.; Dangviriyakul, R.; Srisuwan, S.; Suksaweang, S.; Widelitz, R. B; Chuong, C.; Srithunyarat, T.; and others Biomedical Materials, 15(5): 055038. 2020.
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  2018 (4)
Comparison among alpha-tricalcium phosphate synthesized by solid state reaction and wet chemical reaction for calcium phosphate cements. Thaitalay, P.; Srakaew, N. L.; and Rattanachan, S. T. Chiang Mai J. Sci, 45: 2123–2131. 2018.
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Self-setting calcium phosphate enhanced with osteoconduction and bioactivity for bone cement. Rattanachan, S. T.; Suksaweang, S.; Jiang, T.; Widelitz, R; Chuong, C; and Srakaew, N. L. Chiang Mai J Sci, 45: 2132–2139. 2018.
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High photocurrent gain of spherical nano-crystalline ZnO: Bi film for advanced solar cells application. Rattanawichai, P.; Fangsuwannarak, T.; Phatthanakun, R.; and Rattanachan, S. T Chiang Mai J. Sci, 45(5): 1995. 2018.
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Investigation on electrical properties of BCZT ferroelectric ceramics prepared at various sintering conditions. Buatip, N; Promsawat, N; Pisitpipathsin, N; Namsar, O; Pawasri, P; Ounsung, K; Phabsimma, K; Rattanachan, S.; Janphuang, P; and Projprapai, S Integrated Ferroelectrics, 187(1): 45–52. 2018.
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  2017 (2)
Antibacterial activity of ZnO nanoparticles on silica thin film for wastewater treatment. Chanrawangyot, S.; Rattanachan, S.; Watcharenwong, A.; and Fangsuwannarak, T. Journal of Metals, Materials and Minerals, 27(2). 2017.
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Antibacterial Activity of ZnO nanoparticles coated on ceramic tiles prepared by sol-gel method. Chanrawangyot, S.; Rattanachan, S. T; Watcharenwong, A.; and Fangsuwannarak, T. Journal of Metals, 27(2). 2017.
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  2016 (2)
Bio-hybrid composite scaffold from silk fibroin/chitosan/mesoporous bioactive glass microspheres for tissue engineering applications. Phetnin, R.; and Rattanachan, S. T. Advanced Materials Research, 1131: 79–83. 2016.
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Polarization switching of PZT under electrical field via in-situ synchrotron X-ray absorption spectroscopy. Kempet, W; Marungsri, B; Yimnirun, R; Klysubun, W; Fangsuwannarak, T; Rattanachan, S; Pisitpipathsin, N; Promsawat, M; and Pojprapai, S Ferroelectrics, 492(1): 35–42. 2016.
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  2015 (3)
Preparation and antibacterial property on silver incorporated mesoporous bioactive glass microspheres. Phetnin, R.; and Rattanachan, S. T. Journal of Sol-Gel Science and Technology, 75: 279–290. 2015.
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Preparation, characterization and biocompatibility of mesoporous bioactive glass/silk fibroin/chitosan composite scaffold with mesenchymal stem/stromal cells. Phetnin, R; Rattanachan, S.; Giannasi, C; Brini, A.; and others . 2015.
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Effect of Temperature on Ferroelectric and Piezoelectric Behaviour of Mn-Doped 0.75 BF-0.25 BT Multiferroic Ceramics. Pisitpipathsin, N.; Sratta, Y.; Unruan, S.; Promsawat, M.; Marungsri, B.; Yimnirun, R.; Rattanachan, S.; and Pojprapai, S. Ferroelectrics, 489(1): 110–117. 2015.
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  2014 (3)
The pH-dependent properties of the biphasic calcium phosphate for bone cements. Srakaew, N; and Rattanachan, S. T. Journal of Biomimetics, Biomaterials and Biomedical Engineering, 21: 3–16. 2014.
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ANNEALING ATMOSPHERE OF BISMUTH DOPED ZINC OXIDE THIN FILMS PREPARED BY CTAB-ASSISTED SOL-GEL METHOD. Rattanachan, S. T; Kaewphoka, J.; and Fangsuwannarak, T. . 2014.
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Synthesis of surfactant-assisted nanostructured Bi-doped Zinc oxide for photo-sensing application. Kaewphoka, J; Fangsuwannarak, T; and Rattanachan, S. In 2014 11th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), pages 1–4, 2014. IEEE
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  2013 (4)
Influence of annealing temperature on characteristics of bismuth doped zinc oxide films. Rattanachan, S. T.; Krongarrom, P.; and Fangsuwannarak, T. American Journal of Applied Sciences, 10(11): 1427. 2013.
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Bismuth doped ZnO films as anti-reflection coatings for solar cells. Fangsuwannarak, T; Krongarrom, P; Rattanachan, S.; and others In 2013 10th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology, pages 1–5, 2013. IEEE
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Optical band gaps and electrical conductance of Si nanocrystals in SiO2 matrix for optoelectronic applications. Fangsuwannarak, T.; Khunchana, K; and Rattanachan, S. Key Engineering Materials, 545: 134–140. 2013.
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Boron doping effects on the structural and optical properties of sol-gel transparent ZnO films. Rattanachan, S. T; Krongarrom, P; and Fangsuwannarak, T. Key Engineering Materials, 547: 145–151. 2013.
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  2012 (2)
Effect of apatite wollastonite glass ceramic addition on brushite bone cement containing chitosan. Srakaew, N; and Rattanachan, S. T Advanced Materials Research, 506: 106–109. 2012.
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ZnO doped with bismuth in case of in-phase behavior for solar cell application. Krongarrom, P.; Rattanachan, S. T; and Fangsuwannarak, T. Engineering journal, 16(3): 59–70. 2012.
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  2011 (2)
Development of chitosan/nanosized apatite composites for bone cements. Rattanachan, S.; Boonphayak, P.; and Lorprayoon, C. Asian Biomedicine, 5(4): 499–506. 2011.
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Structural and optical characterizations of n-type doped ZnO by sol-gel method for photovoltaic. Krongarrom, P.; Rattanachan, S. T; and Fangsuwannarak, T. In The 8th Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI) Association of Thailand-Conference 2011, pages 50–53, 2011. IEEE
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  2010 (1)
Feasibility of using TIG welding in dissimilar metals between steel/aluminum alloy. Borrisutthekul, R.; Mitsomwang, P.; Rattanachan, S.; and Mutoh, Y. Energy Research Journal, 1(2): 82–86. 2010.
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  2009 (1)
Development of Apatite Composite for Bone Cement. Rattanachan, S.; Lorprayoon, C.; and Bunpayun, P. In The Joint Symposium Between National Science and Technology Center and Nagaoka University of Technology, volume 22, 2009.
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  2008 (1)
Synthesis of chitosan/brushite powders for bone cement composites. Rattanachan, S.; Lorprayoon, C.; and Boonphayak, P. Journal of the Ceramic Society of Japan, 116(1349): 36–41. 2008.
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  2007 (2)
Dan Kwian clays for slip casting. Rattanachan, S. ScienceAsia, 33: 239–243. 2007.
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Chitosan-Crystallized Apatite Composites for Bone Cements: Mechanical Strength and Setting Behavior. Rattanachan, S. T; Lorpayoon, C.; and Bunpayun, P. Key Engineering Materials, 330: 839–842. 2007.
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  2006 (3)
Fatigue behavior of Al2O3-based composite with BaTiO3 piezoelectric phase. Rattanachan, S.; Miyashita, Y.; and Mutoh, Y. International journal of fatigue, 28(10): 1413–1419. 2006.
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Low temperature synthesis of crystallized apatite nanoparticles. Boonphayak, P; and Rattanachan, S In Proc. Sixth Asian Bioceramics Symposium. Bangkok: Thailand, pages 67–70, 2006.
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D-1 CHITOSAN-CALCIUM PHOSPHATE CEMENT COMPOSITES FOR BONE SUBSTITUTES (Session: Biomaterials). Rattanachan, S.; Lorprayoon, C.; and Bunpayun, P. In The Proceedings of the Asian Symposium on Materials and Processing 2006, pages 70, 2006. The Japan Society of Mechanical Engineers
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  2005 (4)
Fabrication of piezoelectric laminate for smart material and crack sensing capability. Rattanachan, S.; Miyashita, Y.; and Mutoh, Y. Science and Technology of Advanced Materials, 6(6): 704. 2005.
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Fracture Toughness of BaTiO 3 and BaTiO 3-Al 2 O 3 Composite under Electric Field. Rattanachan, S.; Miyashita, Y.; and Mutoh, Y. In Fracture Mechanics of Ceramics: Active Materials, Nanoscale Materials, Composites, Glass and Fundamentals, pages 297–305, 2005. Springer
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Fracture Toughness of BaTiO 3-MgO Composites Sintered by Spark Plasma Sintering. Rattanachan, S.; Miyashita, Y.; and Mutoh, Y. In Fracture Mechanics of Ceramics: Active Materials, Nanoscale Materials, Composites, Glass and Fundamentals, pages 287–295, 2005. Springer
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Korat clays as raw materials for lightweight aggregates. Rattanachan, S.; and Lorprayoon, C. Sci. Asia, 31(42): 277–281. 2005.
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  2004 (1)
Effect of polarization on fracture toughness of BaTiO3/Al2O3 composites. Rattanachan, S.; Miyashita, Y.; and Mutoh, Y. Journal of the European Ceramic Society, 24(5): 775–783. 2004.
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  2003 (2)
Mechanical behavior of oxide ceramic-based smart composites with piezoelectric phase. Rattanachan, S. Ph.D. Thesis, 長岡技術科学大学, 2003.
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Microstructure and fracture toughness of a spark plasma sintered Al2O3-based composite with BaTiO3 particulates. Rattanachan, S.; Miyashita, Y.; and Mutoh, Y. Journal of the European Ceramic Society, 23(8): 1269–1276. 2003.
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  2002 (1)
232 Al_2O_3-based Composite with BaTiO_3 Sintered by Spark Plasma Sintering. Rattanachan, S.; Miyashita, Y.; and Mutoh, Y. In The Proceedings of the JSME Materials and Processing Conference (M&P) 10.2, pages 270–275, 2002. The Japan Society of Mechanical Engineers
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e-mail: thipwan@ g. sut. ac. th. Fangsuwannarak, T; Kaewphoka, J; and Rattanachan, S. . .
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Engineering Materials: Ceramics. Rattanachan, S. T . .
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e-mail: sirirat. b@ g. sut. ac. th. Rattanachan, S. T; Fangsuwannarak, T.; Chanrawangyot, S.; and Watcharenwong, A. . .
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