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[调剂信息] 齐鲁工业大学 材料科学与工程学院 2022 硕士招生调剂

考研调剂招生信息

学校: 山东轻工
专业: 工学->材料科学与工程
年级: 2022
招生人数: 3
招生状态: 正在招生中
联系方式: ********* (为保护个人隐私,联系方式仅限APP查看)

补充内容

齐鲁工业大学材料科学与工程学院朱超峰教授课题组拟招收材料科学与工程、材料与化工硕士研究生,欢迎符合条件的考生调剂。考试科目应考数学,专业总分和单科成绩达到国家线A类分数线。本科专业为材料、化学、化工背景。
联系方式:13853198708; cfzhu@qlu.edu.cn

简   历
朱超峰,男,教授,博士,硕士研究生导师,山东省高等学校优势学科玻璃与陶瓷材料创新团队主要成员。硕士阶段在华东理工大学从事溶胶-凝胶法制备新型无机材料的研究;毕业后加入上海旭电子玻璃有限公司从事研发工作;博士阶段从事发光玻璃的研究,期间赴意大利国家能源、环境与新技术研究所 (ENEA) 做短期访问,从事γ 射线辐照对玻璃性能影响方面的研究;博士毕业后获得法国Egide奖学金,赴法国昂热大学材料光学性质及应用实验室从事博士后研究,主要从事稀土离子(Eu3+, Er3+, Yb3+)掺杂的发光玻璃的溶胶-凝胶法制备及性能研究;之后获得澳大利亚Endeavour Awards,赴澳大利亚科廷理工大学从事博士后研究,主要从事镍铁矿石浸出液铁杂质的去除及相关机理研究;2010年在法国凯诺斯铝酸盐技术有限公司研发中心从事研究开发工作;2011年加入齐鲁工业大学从事教学及科研工作,2012年赴法国昂热大学光子学实验室做访问教授,主要从事发光玻璃中稀土离子所处局域结构的研究;2014年赴法国雷恩第一大学玻璃与陶瓷国家实验室做访问学者,主要从事发光玻璃的研究。目前主要从事无机非金属材料专业的教学以及无机发光材料的研究工作。在Journal of Materials Chemistry C,  Optics Letters, Applied Physics Letters, Journal of the American Ceramic Society, Journal of Luminescence等期刊发表50余篇学术论文,申请发明专利7项(已授权5项);作为主持人承担山东省自然科学基金及山东省高等学校科技计划等科研项目;参与国家自然科学基金项目5项;获得2017年度山东省高等学校科学技术奖;获得2018年度山东省经济隆起带人才支持项目计划;指导学生参加第十五届“挑战杯”海尔山东省大学生课外学术科技作品竞赛,获得省级三等奖;担任教育部学位与研究生教育发展中心学位论文通讯评议专家,中国日用玻璃协会专家委员会专家,山东省科普专家人才库工程技术类专家,山东省知识产权公共服务平台智库专家;担任国际学术期刊ACS Applied Materials & Interfaces, Journal of Materials Chemistry C, CrystEngComm, Optics Express,Journal of the American Ceramic Society,Journal of Non-Crystalline Solids, Journal of Alloys and Compounds,RSC Advances, Materials Research Bulletin, New Journal of Chemistry, Physics and Chemistry of Glasses - European Journal of Glass Science and Technology Part B审稿人;多次在International Congress on Glass, International Conference on the Physics of Non-crystalline Solids等本学科权威学术会议做口头报告。
【E-mail】cfzhu@qlu.edu.cn, chaofengzhu@gmail.com
【主要研究领域】光功能玻璃、荧光粉、植物补光材料
【研究生招生】 招收材料学、材料与化工、材料物理化学方向硕士研究生
【学习、科研及工作经历】
•        2018-01至今,齐鲁工业大学,教授
•        2011-03至2017-12,齐鲁工业大学,副教授
•        2014-09至2015-08,法国雷恩第一大学,访问学者
•        2012-01至2012-02,法国昂热大学,访问教授
•        2010-01至2011-01,凯诺斯(中国)铝酸盐技术有限工司,研发中心
•        2010-07赴法国凯诺斯公司总部(巴黎)及凯诺斯研发中心(里昂)进行技术交流
•        2009-07至2009-12,澳大利亚科廷理工大学,博士后
•        2008-06至2009-05,法国昂热大学,博士后
•        2004-09至2007-08,华东理工大学,材料学,博士
•        2005-09至2005-10  意大利能源、环境与新技术研究所(ENEA),访问学者
•        1999-08至2004-07,上海旭电子玻璃有限公司,研发工程师
•        2003-12赴日本旭硝子玻璃公司韩国分公司参加技术交流
•        1996-09至1999-06, 华东理工大学,材料学,硕士
•        1992-09至1996-06,山东轻工业学院,无机非金属材料,本科
【主持或参加的科研项目】
[1] 山东省自然科学基金、基于半导体照明的发光玻璃的研究、主持
[2] 齐鲁工业大学(山东省科学院)—郓城县产学研协同创新基金项目、玻璃器皿性能提升研究、主持
[3] 西部经济隆起带和省扶贫开发重点区域引进急需紧缺人才支持项目计划、玻璃瓶罐的强度提升研究、主持
[4] 山东省自然科学基金、用于LED的新型发光玻璃及玻璃陶瓷的制备及性能研究、主持
[5] 山东省高等学校科技计划项目、用于LED的发光玻璃及玻璃陶瓷的可控制备及性能研究、主持
[6] 武汉理工大学硅酸盐建筑材料国家重点实验室开放基金、泡沫玻璃及微晶泡沫玻璃的制备及性能研究、主持
[7] 济南市留学人员创业计划、用于LED的发光玻璃/微晶玻璃的研究、主持
[8] 国家自然科学基金、基于双曲超材料的宽谱激光振荡及工作原理研究、参加
[9] 国家自然科学基金、惰性稀土与铝离子共掺改性的掺钬石英玻璃光纤的研制及2 m光谱特性研究、参加
[10] 国家自然科学基金、基于奇特焓弛豫特征过冷液体结构异质的研究、参加
[11] 山东省自然科学基金、基于硫铁矿渣制备亚铁磁性泡沫微晶玻璃的机理研究、参加
[12] 山东省自然科学基金、基于奇特焓弛豫特征三元硅酸盐玻璃纤维结构异质的研究、参加
[13] 山东省自然科学基金、无碱高铁系统铁磁性纳米晶玻璃纤维性能调控机制研究、参加
[14] 山东省重点研发计划项目、自催化生长纳米晶氧化铟锡(ITO)薄膜及在LED上应用研究、参加
[15] 山东省住建厅软科学研究项目、建筑用岩棉熔体、结合剂及保温板的研究、参加
[16] 国家自然科学基金、宽带光放大用新型多掺杂硫卤玻璃的研究、参加
[17] 国家自然科学基金、透红外玻璃-陶瓷:一类新型红外光学复合材料、参加
【获奖】
[1] 朱超峰,沈建兴,王佳,张艳飞,张梅梅,用于LED的发光玻璃的制备及性能研究,山东省高等学校科学技术奖,三等,2017
[2] 第十五届“挑战杯”海尔山东省大学生课外学术科技作品竞赛三等奖指导教师,LED用稀土离子掺杂的新型硅酸盐发光玻璃,2017
[3] 山东省政府公派出国访问学者奖学金,2014
[4] 法国 Visiting Professor 基金,2012
[5] 澳大利亚Endeavour奖学金,2009
[6] 法国Egide奖学金,2008
[7] 上海先进无机材料研究与应用研讨会论文三等奖,2006
[8] 意大利罗马ENEA研究中心奖学金,2005
【主要论著】
A.期刊论文(*通讯作者)
[1] Jian Shen, Bin Xu, Zifei Wang*, Jing Zhang, Weiguang Zhang, Zhenhua Gao, Xue Wang, Chaofeng Zhu*, and Xiangeng Meng, Aggregation-induced Room Temperature Phosphorescent Carbonized Polymer Dots with Wide-range Tunable Lifetimes for Optical Multiplexing, Journal of Materials Chemistry C, 2021, 9: 6781-6788.
[2] Xiaoxi Li, Zifei Wang*, Yang Liu, Weiguang Zhang, Chaofeng Zhu*, and Xiangeng Meng, Bright Tricolor Ultrabroad-band Emission Carbon Dots for White Light-emitting Diodes with a 96.5 High Color Rendering Index, Journal of Materials Chemistry C, 2020, 8: 1286-1291.
[3] Shuai Zhao, Chaofeng Zhu*, Yao Zhou, and Jinbo Zhao, Influence of Boron Content on the Properties of Tm/Eu Activated Sr3(PO4)2-x(BO3)x Phosphors, Vacuum, 2020, 176: 109328.
[4] Luyue Niu, Chaofeng Zhu*, Meimei Zhang, Zhigang He, Jianan Liu, Qingshan Xu, and Zhihao Wang, Eu and Dy Doped Borophosphosilicate Glass-ceramics for Near Ultraviolet Based Light-emitting Diode Applications, Vacuum, 2019, 169: 108877.
[5] Luyue Niu, Yao Zhou, Chaofeng Zhu*, Zhigang He, and Xiangeng Meng, Pr3+ Doped Oxyfluoride Silicate Glasses for LEDs, Ceramics International, 2019, 45:4108-4112.
[6] Zhigang He, Chaofeng Zhu*, Sheng Huang, and Xinyu Wu, Luminescent Properties of Pr3+ and Tm3+ Doped Oxyfluoride Silicate Glasses for Light Emitting Diode Applications, Vacuum, 2019, 159: 269-276.
[7] Meng Lu, Chaofeng Zhu*, Zhongtao Chen, Meiling Shi, and Xiangeng Meng*, Ce3+ and Dy3+ Doped Ca3(P1-xBxO4)2 Phosphors for White Light-emitting Applications, Journal of Alloys and Compounds, 2019, 775: 1044-1051.
[8] Zhigang He, Sheng Huang, Kaili Chu, Chaofeng Zhu*, Luyue Niu, Xinyu Wu, and Xiaohui Tang, Influence of Compositional Variation on Optical and Structural Properties of Tb3+ and Dy3+ Doped Phosphosilicate Glasses, Journal of Non-Crystalline Solids, 2018, 500: 260-265.
[9] Meng Lu, Chaofeng Zhu*, Zhongtao Chen, and Meiling Shi, Ca10Na(PO4)7: Eu2+, Mn2+ Phosphors for Ultraviolet Light Emitting Diodes, Polyhedron, 2018, 153: 139-144.
[10] Meiling Shi, Chaofeng Zhu*, Meng Lu, Xiangeng Meng*, and Mingzhi Wei, Dy and Eu Activated Ca3B2O6 Phosphors for Near Ultraviolet-based Light-emitting Diodes, Journal of the American Ceramic Society, 2018, 101: 5461-5468.
[11] Meiling Shi, Chaofeng Zhu*, Mingzhi Wei, Zhigang He, and Meng Lu, Dy3+-, Tb3+-, and Eu3+-Activated NaCa4(BO3)3 Phosphors for Lighting Based on Near Ultraviolet Light Emitting Diodes, Vacuum, 2018, 149: 343-349.
[12] Meiling Shi, Chaofeng Zhu*, Meimei Zhang, Meng Lu, and Jianan Liu, NaCa4(BO3)3: Ce, Dy, Eu Phosphors for Light Emitting Diode Applications, Polyhedron, 2018, 140: 19-24.
[13] Yao Zhou, Chaofeng Zhu*, and Xuena Yang, Near White Light Emission of Ce3+-, Ho3+-, and Sm3+-doped Oxyfluoride Silicate Glasses, Journal of the American Ceramic Society, 2017, 100: 2059-2068.
[14] Chaofeng Zhu*, Dongqun Wu, Jianan Liu, Meimei Zhang, and Yanfei Zhang, Color-tunable Luminescence in Ce-, Dy-, and Eu-doped Oxyfluoride Aluminoborosilicate Glasses, Journal of Luminescence, 2017, 183:32-38.
[15] Yao Zhou, Chaofeng Zhu*, Meimei Zhang, and Jianan Liu, Optical Properties of Eu- and Dy-Doped Calcium Aluminoborosilicate Glasses for LED Applications, Journal of Alloys and Compounds, 2016, 688:715-720.
[16] Dongqun Wu, Chaofeng Zhu*, and Meimei Zhang, Ce3+- and Dy3+-Doped Oxyfluoride Borosilicate Glasses with Near White Luminescence, Journal of the American Ceramic Society, 2016, 99:1587-1593.
[17] Chaofeng Zhu, Xianghua Zhang*, and Hongli Ma, Sb/Mn Co-doped Oxyfluoride Silicate Glasses for Potential Applications in Photosynthesis, Journal of Luminescence, 2016, 171:198-201.
[18] Chaofeng Zhu*, Xianghua Zhang, Hongli Ma, and Claire Timlin, Sb-, Dy-, and Eu-Doped Oxyfluoride Silicate Glasses for Light Emitting Diodes, Journal of Alloys and Compounds, 2015, 647: 880-885.
[19] Chaofeng Zhu*, Dongqun Wu, Yanfei Zhang, Meimei Zhang, and Yuanzheng Yue*, Composition Dependence of the Optical and Structural Properties of Eu-Doped Oxyfluoride Glasses, Journal of Alloys and Compounds, 2015, 632: 291-295.
[20] Chaofeng Zhu*, Jia Wang, Meimei Zhang, Xiaorong Ren, Jianxing Shen, and Yuanzheng Yue*, Eu-, Tb-, and Dy-Doped Oxyfluoride Silicate Glasses for LED Applications, Journal of the American Ceramic Society, 2014, 97: 854-861.
[21] Chaofeng Zhu*, Jia Wang, Xiaorong Ren, Yanfei Zhang, Shujiang Liu, Jianxing Shen, and Yuanzheng Yue*, Sintering Temperature and Atmosphere Modulated Evolution of Structure and Luminescence of 2CaO-P2O5-B2O3: Eu Phosphors, Journal of Luminescence, 2014, 145: 110-113.
[22] Chaofeng Zhu, Stéphane Chaussedent, Shujiang Liu, Yanfei Zhang, André Monteil, Nathalie Gaumer, and Yuanzheng Yue*, Composition Dependence of Luminescence of Eu and Eu/Tb Doped Silicate Glasses for LED Applications, Journal of Alloys and Compounds, 2013, 555: 232-236.
[23] Chaofeng Zhu, André Monteil*, Mohamed EI-Jouad, Nathalie Gaumer, and Stephane Chaussedent, Effect of Compositional Variation on Optical and Structure Properties of Europium-Doped SiO2-HfO2 Glasses, Optics Letters, 2009, 34: 3749-3751.
[24] Chaofeng Zhu, André Monteil*, Mohamed EI-Jouad, Nathalie Gaumer, and Stephane Chaussedent, Influence of Thermal Treatment on Optical and Structure Properties of Europium-doped SiO2-HfO2 Glasses, Journal of the American Ceramic Society, 2010, 93: 1039-1043.
[25] Chaofeng Zhu, Xiaoluan Liang, Yunxia Yang, and Guorong Chen*, Luminescence Properties of Tb Doped and Tm/Tb/Sm Co-Doped Glasses for LED Applications, Journal of Luminescence, 2010, 130: 74-77.
[26] Chaofeng Zhu, Yunxia Yang, Xiaoluan Liang, Shuanglong Yuan, and Guorong Chen*, Rare Earth Ions Doped Full-Color Luminescence Glasses for White LED, Journal of Luminescence, 2007, 126: 707-710.
[27] Chaofeng Zhu, Yunxia Yang, Xiaoluan Liang, Shuanglong Yuan, and Guorong Chen*, Composition Induced Reducing Effects on Eu Ions in Borophosphate Glasses, Journal of the American Ceramic Society, 2007, 90: 2984-2986.  
[28] Chaofeng Zhu, Yunxia Yang, Guorong Chen*, S.Baccaro, A.Cecilia, and M.Falconieri, Photoluminescence and Gamma-Ray Irradiation of SrAl2O4:Eu2+ and Y2O3:Eu3+ Phosphors, Journal of Physics and Chemistry of Solids, 2007, 68: 1721-1724.
[29] Yao Zhou, Chao Liu*, Zhiyong Zhao, Wenchao Zhang, Kai Li, Ying Ye, Chaofeng Zhu, and Xiangeng Meng, Enhanced Luminescence of Mn doped CsPbCl3 and CsPb(Cl/Br)3 Perovskite Nanocrystals Stabilized in Glasses, Journal of Alloys and Compounds, 2020, 827:154349.
[30] Yuebo Hu*, Yang Shen, Chaofeng Zhu, Shujiang Liu, Hao Liu, Yanfei Zhang, Yuanzheng Yue*, Optical Bandgap and Luminescence in Er3+ doped Oxyfluoro-germanate Glass-ceramics, Journal of Non-Crystalline Solids, 2021, 555:120533.
[31] Jianan Liu*, Chaofeng Zhu, Meimei Zhang, and Xuena Yang, Synthesis and Properties of Ferrimagnetic Glass-ceramics and Glass Fibers Derived from Pyrite Slag, International Journal of Applied Ceramic Technology, 2019,16: 1041-1049.
[32] Jianan Liu*, Chaofeng Zhu, Meimei Zhang, Yanfei Zhang, Shujiang Liu, and Xuena Yang, Preparation and Properties of Ferromagnetic Glass Ceramics and Glass Fibers Based on the Composition of SiO2-B2O3-Fe2O3-SrO, Journal of the European Ceramic Society, 2017, 37: 4707-4714.
[33] Jianan Liu*, Meimei Zhang, Chaofeng Zhu, Shujiang Liu, and Yanfei Zhang, Preparation and Properties of Ferromagnetic Glass-ceramics and Glass Fibers in Alkali-free and High-iron Glass System, Ceramics International, 2017, 43: 4295-4301.
[34] Jianan Liu*, Chaofeng Zhu, Meimei Zhang, Yanfei Zhang, and Xuena Yang, Ferromagnetic Glass Ceramics and Glass Fibers Based on the Composition of SiO2-CaO-Al2O3-B2O3-Fe2O3 Glass System, Journal of Magnetism and Magnetic Materials, 2017, 426: 375-379.
[35] Xingjie Lv, Yi Du*, Zhongfu Li, Zhongtao Chen, Kai Yang, Tong Liu, Chaofeng Zhu, Minxing Du, and Yibing Feng, High Photocatalytic Property and Crystal Growth of Spindle-like ZnO Microparticles Synthesized by One-step Hydrothermal Method, Vacuum, 2017, 144: 229-236.
[36] Zhongfu Li, Yi Du*, Shiying Zhang, Zhongtao Chen, Kai Yang, Xingjie Lv, and Chaofeng Zhu, Synthesis and Characterization of Hierarchical γ-AlOOH and γ-Al2O3 Microspheres with High Adsorption Performance for Organic Dyes, RSC Advances, 2016, 6: 89699-89707.
[37] Fei Zhao, Qifang Lu*, Zhiliang Xiu, and Chaofeng Zhu, Preparation and Photocatalytic Performance of One-dimensional In2O3 Nanofibers, CuO Microfibers and CuO/In2O3 Heterostructured Nanofibers by Electrospinning Process, Nano, 2016, 11: 1650048 (10 pp).
[38] Dandan Sun, Yi Du*, Zhongfu Li, Zhongtao Chen, Chaofeng Zhu, and Shiquan Liu, Starch-assisted Synthesis and Photocatalytic Activity of Monosized Cuprous Oxide Octahedron Microcrystals, Journal of Sol-Gel Science and Technology, 2016, 78: 347-352.
[39] Fei Zhao, Qifang Lu*, Suwen Liu, Chaofeng Zhu, and Haiyan Sun, Fabrication and Characterization of the Enhanced Photocatalytic CuO/In2O3 Heterostructured Nanobelts by Electrospinning Process, Materials Letters, 2015, 139: 19-21.
[40] Xiaona Liu, Qifang Lu*, Chaofeng Zhu, and Suwen Liu, Enhanced Photocatalytic Activity of α-Fe2O3/Bi2WO6 Heterostructured Nanofibers Prepared by Electrospinning Technique, RSC Advances, 2015, 5: 4077-4082.
[41] Xiaona Liu, Qifang Lu*, Cuiqing Wang, Chaofeng Zhu, and Suwen Liu, Facile Fabrication of In2O3/Bi2WO6 Heterostructured Microbelts with Enhanced Photocatalytic Activity, Journal of Sol-Gel Science and Technology, 2015, 73: 358-364.
[42] Mingzhi Yang, Manman Ren*, Weiyue Zhu, Weiliang Liu, and Chaofeng Zhu, Li3V2(PO4)3/Graphene Nanocomposites with Superior Cycling Performance as Cathode Materials for Lithium Ion Batteries, Electrochimica Acta, 2015, 182: 1046-1052.
[43] Zhongfu Li, Yi Du*, Zhongtao Chen, Dandan Sun, and Chaofeng Zhu, Synthesis and Characterization of Cobalt Doped Green Ceramic Pigment from Tannery Sludge, Ceramics International, 2015, 41:12693-12699.
[44] Zhongtao Chen, Yi Du*, Zhongfu Li, Dandan Sun, and Chaofeng Zhu, Synthesis of Black Pigments Containing Chromium from Leather Sludge, Ceramics International, 2015, 41:9455-9460.
[45] Changbao Wei, Jianxing Shen*, Jiayan Zhang, Huayong Zhang, and Chaofeng Zhu, Effects of Ball Milling on the Crystal Face of Spinel LiMn2O4, RSC Advances, 2014, 4: 44525-44528.
[46] Dandan Sun, Yi Du*, Xiuying Tian, Zhongfu Li, Zhongtao Chen, and Chaofeng Zhu, Microwave-assisted Synthesis and Optical Properties of Cuprous Oxide Micro/Nanocrystals, Materials Research Bulletin, 2014, 60: 704-708.
[47] S.J. Liu*, G.Z. Fu, Z.T. Shan, X.R. Ren, Y.F. Zhang, C.F. Zhu, W. He, and Y.Z. Yue, Nanocrystal Formation and Photoluminescence in the Yb3+/Er3+ Codoped Phosphosilicate Glasses, Journal of Non-Crystalline Solids, 2014, 383: 141-145.
[48] Jiayan Zhang, Jianxing Shen*, Tailin Wang, Changbao Wei, Yuan Ma, Chaofeng Zhu, and Yuanzheng Yue, Improvement of Capacity and Cycling Performance of Spinel LiMn2O4 Cathode Materials with TiO2-B Nanobelts, Electrochimica Acta, 2013, 111: 691-697.
[49] Yanfei Zhang, Lina Hu, Shujiang Liu, Chaofeng Zhu, and Yuanzheng Yue*, Sub-Tg Enthalpy Relaxation in an Extremely Unstable Oxide Glass and Its Implication for Structural Heterogeneity, Journal of Non-Crystalline Solids, 2013, 381: 23-28.
[50] Shujiang Liu, Chaofeng Zhu, Yanfei Zhang, Zhuohao Xiao, and Yuanzheng Yue*, Composition Dependence of Spontaneous Crystallization of Phosphosilicate Glass Melts During Cooling, Glass Technology: European Journal of Glass Science and Technology Part A, 2012, 53: 235-239.
[51] Xiaoluan Liang, Chaofeng Zhu, Yunxia Yang, Shuanglong Yuan, and Guorong Chen*, Luminescent Properties of Dy3+-Doped and Dy3+-Tm3+ Co-Doped Phosphate Glasses, Journal of Luminescence, 2008, 128: 1162-1164.
[52] Xiaoluan Liang, Yunxia Yang, Chaofeng Zhu, Shuanglong Yuan, Guorong Chen*, Pring Allan, and Fang Xia, Luminescence Properties of Tb3+-Sm3+ Codoped Glasses for White Light Emitting Diodes, Applied Physics Letters, 2007, 91: 091104 (3 pp).
[53] Yuan Shuanglong, Chen Xianling, Zhu Chaofeng, Yang Yunxia, and Chen Guorong*, Eu2+, Mn2+ Co-doped (Sr,Ba)6BP5O20-A Novel Phosphor for White-LED, Optical Materials, 2007, 30: 192-194.
B.会议论文
[54] Zhigang He,Chaofeng Zhu*, Pr3+ and Tm3+ Doped Oxyfluoride Silicate Glasses for Light Emitting Diode Applications, 第二届全国光电材料与器件学术研讨会,武汉,2021.4.8-11.
[55]Shuai Zhao, Chaofeng Zhu*, Yao Zhou, Jinbo Zhao, Tm/Eu activated Sr3(PO4)2-x(BO3)x phosphors for light emitting diode applications, 第十一届中国功能玻璃学术研讨会暨新型光电子材料国际论坛,宁波, 2020. 8.20-23.
[56] Chaofeng Zhu*, Meng Lu, Shuai Zhao, Influence of Boron Content on the Structure and Luminescent Performance of Ce3+ and Dy3+ Doped Ca3(P1-xBxO4)2 phosphors, 中国稀土学会2020学术年会暨江西(赣州)稀土资源绿色开发与高效利用大会,赣州,2020.10.19-21.
[57] Chaofeng Zhu*, Zhigang He, Luyue Niu,Influence of compositional variation on optical and structural properties of Tb3+ and Dy3+ doped phosphosilicate glasses,全国玻璃科学技术年会,2019.10.16-18,济南,中国。
[58] Chaofeng Zhu*, Meng Lu, Shuai Zhao, Structure and Luminescence Properties of Ce3+ and Dy3+ Doped Ca3(P1-xBxO4)2 phosphors for Light Emitting Diodes Applications, 11th Phosphor Safari 2019, International Symposium on Luminescent Materials, Nov. 14-17, 2019, Xiamen, China. (Poster)
[59] Meiling Shi, Chaofeng Zhu*, Meng Lu, Xiangeng Meng, and Mingzhi Wei, Ca3B2O6: Dy, Eu Phosphors for Light Emitting Diode Applications, 第十届中国功能玻璃学术研讨会暨新型光电子材料国际论坛,昆明,2018, 11.7-11.10.
[60] Chaofeng Zhu*, Dongqun Wu, and Yao Zhou, Ce-, Dy-, and Eu-Doped Luminescent Glasses for Light Emitting Diodes Applications, 第九届中国功能玻璃学术研讨会暨新型光电子材料国际论坛,福州,2017, 5.16-5.18.
[61] C.F. Zhu*, D.Q. Wu, Y. Zhou, and Y.Z. Yue, Ce-, Dy-, and Mn-Doped Luminescent Glasses for White Light Emittig Diodes Applications, The 24th International Congress on Glass, Shanghai, China, April 7-11, 2016.
[62] Chaofeng Zhu*, Stéphane Chaussedent, Shujiang Liu, Jianxing Shen, André Monteil, Nathalie Gaumer, Yanfei Zuang, Wen He, Yuanzheng Yue, and Jun Zhang, Impact of Composition and Crystallization on Luminescent Properties of Eu and/or Tb Doped Silicate Glasses, XIII International Conference on the Physics of Non-crystalline Solids, pp75, Yichang, China, Sept. 16-20, 2012.
[63] Yunxia Yang, Chaofeng Zhu, Xiaoluan Liang, Shuanglong Yuan, and Guorong Chen*, Composition Induced the Variation of Yellow to Blue Intensity Ratio of Dy3+ Ions Emission in Phosphate Glasses and Dy/(Tm,Tb) Co-doped Phosphate Glasses for LED Applications, XXIst International Congress on Glass (ICG2007), pp138, Strasbourg, France, July 1-6, 2007.  
[64] Chaofeng Zhu, Yunxia Yang, Xiaoluan Liang, Shuanglong Yuan, and Guorong Chen*, Study on Luminescence Properties of Rare Earth Ions Doped Silicate Glasses, 2006’Sol-Gel Symposium of China & International Forum, pp111, Wenzhou, China, Nov. 22-25, 2006.
C.专利
[65] 朱超峰,王佳. 一种LED用发光玻璃及其制备方法,中国发明专利, ZL 2013107260293
[66] 朱超峰,王佳. 一种稀土掺杂发光玻璃及其制备方法,中国发明专利,ZL 2014100389594
[67] 朱超峰,何智钢,黄盛,吴欣宇. 一种稀土掺杂的发光玻璃及其制备方法,中国发明专利,ZL201810290528.5
[68] 朱超峰,牛璐玥,黄盛,吴欣宇. 一种可调控光谱的Eu,Dy掺杂的发光玻璃及其制备方法,中国发明专利,ZL201810579099.3
[69] 朱超峰,陆萌,石美玲. 一种Ce3+, Dy3+ 掺杂的颜色可控的荧光粉及其制备方法,中国发明专利,ZL201810579410.4
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