2005年获得山东省优秀硕士学位论文 以第一作者及通讯作者发表Sci、Ei收录论文: 1. F.H. Xiao, J. Wang, D.G. Wang*, J.Q. Zhai, G.X. Lu, C.Z. Chen*,Influence of TiO2 nanoparticles on the performance and inner structure of zein/eugenol films. Food Packaging and Shelf Life, 2022, 31:100782 2.D.G. Wang, F.H. Xiao, Y. Li, X.C. Ming, J.Q. Zhai, C.Z. Chen*, Properties of HA-based composite films fabricated by pulsed laser deposition with an in-situ heat treatment, Surface & Coatings Technology, 2020,394:125863 3. D.G. Wang, X.C. Ming, W.L. Zhang, J.H. Zhang,C.Z. Chen *.Effect of heat treatment on the properties of HA/BG composite films. Ceramics International, 2018, 44(6):7228-7233 4. D.G. Wang, X.C. Ming, W.L. Zhang, H.J. Li, J.H. Zhang,C.Z. Chen *.Influence of annealing on the phase transformation of pulsed laser deposited HA/45S5 films. Materials Letters, 2018,217: 316-319 5. D.G. Wang, C.Z. Chen *, X.X Yang, X.C. Ming, W.L. Zhang. Effect of bioglass addition on the properties of HA/BG composite films fabricated by pulsed laser deposition, Ceramics International, 2018,44(12):14528-14533 6. D.G. Wang, W.L. Zhang, H.J. Li, J.H. Zhang,C.Z. Chen *.HA/BG composite films deposited by pulse laser under O2 atmosphere. Ceramics International, 2017, 43: 672-676 7. D.G. Wang, C.Z. Chen *, Q.P. Jin, H.C. Li, Y.K Pan.HA/Bioglass composite films deposited by pulsed laser with different substrate temperature. Applied Physics A,2013, 2014, 114: 897-902 8. D.G. Wang, C.Z. Chen *, Q.S. Ma, Q.P. Jin, H.C. Li. A study on in vitro and in vivo bioactivity of HA/45S5 composite films by pulsed laser deposition. Applied Surface Science, 2013,270:667-674 9. D G Wang, C Z Chen*, J Ma, T He.Microstructure evolution of sol–gel HA films. Applied Surface Science. 2011,257: 2592-2598 10. D.G.Wang, C.Z. Chen*, J. Ma, G. Zhang. In situ synthesis of hydroxyapatite coating by laser cladding. Colloids and Surfaces B: Biointerfaces, 2008, 66: 155–162 11. Diangang Wang, Chuanzhong Chen*, Ting He, Tingquan Lei. Hydroxyapatite coating on Ti6Al4V alloy by a sol–gel method. Journal of Materials Science: Materials in Medicine, 2008, 19: 2281–2286 12. D G Wang, C Z Chen*, J Ma, T.H. Liu. Lead-based titanate ferroelectric thin films fabricated by a sol-gel technique. Applied Surface Science. 255(5), 2008: 1637-1645 13. Diangang Wang, Chuanzhong Chen*, Xiuna Liu, Tingquan Lei. Effects of sol-gel processing parameters on the phases and microstructures of HA films. Colloids and Surfaces B-Biointerfaces, 2007, 57(2):237-242 14. D G Wang, C Z Chen*, Q H Bao, L Zhang, T Q Lei. Microstructure of yttric calcium phosphate bioceramic coatings synthesized by laser cladding. Applied Surface Science, 2007, 253(8): 4016-4020 15. D G Wang, C Z Chen*, Q H Bao, L Zhang, T Q Lei. Bonding zone morphologies characteristics of laser remelted HA coatings. Surface Review and Letters, 2006, 13(5): 655-660 16. Yaokun Pan; Siyu He; Diangang Wang*; Danlan Huang; Tingting Zheng; Siqi Wang; Pan Dong; Chuanzhong Chen*. In vitro degradation and electrochemical corrosion evaluations of microarc oxidized pure Mg, Mg–Ca and Mg–Ca–Zn alloys for biomedical applications, Materials Science and Engineering: C, 2015,47, 85-96 17. W.L. Zhang, H. Shi, D.G. Wang*, C.Z. Chen*. Morphological and microstructural characteristics of pulsed laser deposited HA composite films. Surface Review and Letters. 2018,25(8):1950026 18. Zhenghong Chen, Jiqiang Zhai, Diangang Wang*, Chuanzhong Chen*. Bioactivity of hydroxyapatite/wollastonite composite films deposited by pulsed laser, Ceramics International,2018,44(9):10204-10209 19. H.C. Li, D.G. Wang*, C.Z. Chen*. Effect of sodium oxide and magnesia on structure, in vitro bioactivity and degradability of wollastonite. Materials Letters, 2014, 135: 237-240 (DOI: 10.1016/j.matlet.2014.07.177) 20. H.C. Li, D.G. Wang*, X.G. Meng, C.Z. Chen*. Influence of heat treatments upon the mechanical properties and in vitro bioactivity of ZrO2-toughened MgO-CaO-SiO2-P2O5-CaF2 glass-ceramics. Biointerphases, 2014, 9(3): 031014-1-6 21. H.C. Li, D.G. Wang*, X.G. Meng, C.Z. Chen*. Effect of ZrO2 additions on the crystallization, mechanical and biological properties of MgO-CaO-SiO2-P2O5-CaF2 bioactive glass-ceramics, Colloids and Surfaces B: Biointerfaces, 2014, 118: 226-233 22. Yaokun Pan, Diangang Wang*, Chuanzhong Chen*, Effect of negative voltage on the microstructure, degradability and in vitro bioactivity of microarc oxidized coatings on ZK60 magnesium alloy, Materials Letters, 119, 127-130, 2014 23. H.C. Li, D.G. Wang*, J.H. Hu, C.Z. Chen*. Influence of fluoride additions on biological and mechanical properties of Na2O-CaO-SiO2-P2O5 glass-ceramics. Materials Science & Engineering C, 2014, 35C: 171-178 24. H.C. Li, D.G. Wang*, J.H. Hu, C.Z. Chen*.. Effect of the partial substitution of K2O, MgO, B2O3 for CaO on crystallization, structure and properties of Na2O-CaO-SiO2-P2O5 system glass-ceramics, Materials Letters, 2013, 106C: 373-376 (SCI, IF=2.269) 25. H.C. Li, D.G. Wang*, J.H. Hu, C.Z. Chen*. Effect of various additives on microstructure, mechanical properties, and in vitro bioactivity of sodium oxide-calcium oxide-silica-phosphorus pentoxide glass-ceramics, Journal of Colloid and Interface Science, 2013, 405C: 296-304 26. H.C. Li, D.G. Wang*, J.H. Hu, C.Z. Chen*.. Crystallization, mechanical properties and in vitro bioactivity of sol-gel derived Na2O-CaO-SiO2-P2O5 glass-ceramics by partial substitution of CaF2 for CaO, Journal of Sol-Gel Science and Technology, 2013, 67(1): 56-65 27. H.C. Li, D.G. Wang*, C.Z. Chen*, F. Weng. Effect of CeO2 and Y2O3 on microstructure, bioactivity and degradability of laser cladding CaO-SiO2 coating on titanium alloy, Colloids and Surfaces B: Biointerfaces, 2015, 127: 15-21 28. H.C. Li, D.G. Wang*, C.Z. Chen*, Effect of zinc oxide and zirconia on structure, degradability and in vitro bioactivity of wollastonite, Ceramics International, 2015, 41(8): 10160-10169 29. H.C. Li, D.G. Wang*, C.Z. Chen*, F. Weng, H. Shi. Phase composition, microstructure and in vitro bioactivity of laser cladding CaO-ZrO2-SiO2 system coatings on titanium alloy, Materials Letters, 2015,157: 139-142 30. H.C. Li, D.G. Wang*, C.Z. Chen*, F. Weng, H Shi. Preparation and characterization of laser cladding wollastonite derived bioceramic coating on titanium alloy. Biointerphsased, 2015,10(3):031007-1-11 31. H.C. Li, D.G. Wang*, C.Z. Chen*, H Shi. Microstructure, in vitro bioactivity and degradability of various magnesia-containing wollastonite. Materials Letter, 2015,159: 459-462 32. H.C. Li, D.G. Wang*, C.Z. Chen*, H Shi. Influence of different amount of Na2O additive on the structure, mechanical properties and degradability of bioactive wollastonite. Ceramics International, 2016,42(1): 1439-1445 专利 1. 王佃刚、肖飞虹、王菁、陈传忠, 一种玉米醇溶蛋白/二氧化钛复合膜及制备方法与应用, 中国,2020115085845 2. 王佃刚、明星辰、陈传忠、肖飞虹,硅磷酸钙基体粉料及制备方法、骨修复材料及制备方法,2020.05.26,中国,ZL2019106316369 3. 明星辰、王佃刚、陈传忠、孙博文,植酸钠制备骨水泥固化液的应用及基于植酸钠的骨水泥,2020.05.25,中国,ZL2019106674335 4. 王佃刚、张维丽、陈传忠、明星辰,一种掺硅磷酸钙骨水泥修复材料的制备方法,2020.05.08,中国,ZL201810481717.0 5. 王佃刚、张维丽、陈传忠,钛自固化磷酸钙骨修复材料,2018.02.09,中国,201810133955.2 6. 王佃刚、陈传忠、李焕彩,钛合金表面激光熔覆硅灰石基生物活性陶瓷涂层的方法,2017.01.11,中国,ZL 201410239767.X 7. 陈传忠(#)、石佳子、于慧君、王佃刚,一种Ca/P-TiO2复合生物薄膜的制备工艺,2016.2.15,中国,ZL201410246773.8 8. 王佃刚、陈传忠、李焕彩,一种生物活性硅灰石陶瓷的制备方法,2015.10.21 2015.10.21,中国,ZL201410239786.2 9. 王佃刚、陈传忠、户俊华,一种高活性低膨胀生物微晶玻璃的制备方法,2014.03.26,中国,ZL201210129639.0 10. 陈传忠、何青山、王佃刚,无压浸渗法制备SiC/Al电子封装材料的工艺,2014.1.15,中国,ZL201210165260.5 11. 陈传忠、于雪、潘尧坤、于慧君、王佃刚,一种可降解镁合金植入体材料的制备方法,2013.08.02,中国,ZL201110219841.8 12. 陈传忠、潘尧坤、王佃刚、于慧君、石佳子, 一种镁合金表面富含钙磷相的生物陶瓷涂层的制备方法,2013.01.09,中国,ZL 201110219578.2 13. 陈传忠、王佃刚、于慧君、马杰,一种羟基磷灰石-生物玻璃薄膜及其制备工艺,2012.10.31,中国,ZL200910015089.8 14. 陈传忠、孟祥国、王佃刚,ZrO2增韧MgO-CaO-SiO2-P2O5-CaF2系生物活性微晶玻璃及其制备方法,2012.10.31,中国,ZL 200910015171 15. 于慧君、赵天盖、陈传忠、王佃刚,一种铝合金微弧氧化着绿色膜层的方法,2017.05. 10,CN201510290297.4
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