师资情况

Faculty

| 新型无机功能材料研究室

科研团队

首席教授
研究室成员
  • 鲁启鹏

    系所:无机非金属材料系

    职称: 教授

    E-mail: qipeng@ustb.edu.cn

    办公地点:主楼601

  • 匡健磊

    系所:无机非金属材料系

    职称: 副教授

    E-mail: jlkuang@126.com

    办公地点:主楼425

  • 蒋朋

    系所:无机非金属材料系

    职称: 副教授

    E-mail: 主楼421

    办公地点:jiangp@ustb.edu.cn

  • 王琦

    系所:无机非金属材料系

    职称: 副教授

    E-mail: wangqi15@ustb.edu.cn

    办公地点:主楼425

  • 主要研究方向
  • 代表性科研项目
  • 代表性科研成果
  • 专利
  • 1. 新型半导体光催化材料;

    2. 无机能源催化材料;

    3. 无机功能纳米材料的晶相调控;

    4. 新型功能陶瓷和薄膜材料;

    5. 新型环保无机颜料的设计与制备;

    6. 5G高效热管理材料的设计与应用;

    7. 功能复合相变材料设计与应用研究;


  • 1. 国家重点研发计划课题,环境净化材料规模化生产关键技术及应用研究;

    2. 国家重点研发计划课题,基于材料散发特性参数调控的建材产品改进技术及应用;

    3. 国家重点研发计划子任务,资源节约型高耐蚀镀层技术与除雾霾抗菌涂层技术开发;

    4. 国家重点研发计划子任务,高纯高烧结活性AlON、AlN 粉体的碳热还原氮化机制及中试关键技术;

    5. 国家自然科学基金重大研究计划(培育项目):基于金属团簇外延生长机制构建亚稳晶相贵金属纳米晶及其催化应用;

    6. 国家自然科学基金联合基金(重点项目):5G用球形AlN粉体的限域制备及其导热机理研究;

    7. 国家自然科学基金面上项目,p-n-p型SnO/TiO2/SnO异质结构的构建及其光催化性能增强机制研究;

    8. 国家自然科学基金面上项目,过渡金属掺杂与堆垛缺陷协同增强SiC晶须介电性能研究;

    9. 国家自然科学基金面上项目:通过Al-AlN核壳结构中间体制备超洁净钢用Alon结合刚玉质耐火材料及其性能研究;

    10. 国家自然科学基金青年项目:金属纳米颗粒修饰的SiC纳米线吸波性能和界面结合强度研究;

    11. 国家自然科学基金青年项目:基于生物骨水泥的有机无机复合相变胶囊设计合成及强化传热研究;

    12. 北京市科技新星:高效稳定的钌基析氢电催化剂;

    13. 华为技术有限公司,球形氮化铝填料应用技术研究;

    14. 天津航空机电有限公司,675-N胶粘剂替代研究;

    15. 北新集团建材股份有限公司:抗菌净化功能饰面一体化制品的开发;

    16. 中国科学技术学会:“科创中国”北京科技大学专业科技服务团;

    17. 中国博士后科学基金:功能化PMMA基复合相变材料的可控制备及其热管理特性;


  • 1. Q. Lu, A. Wang, Y. Gong, W. Hao, H. Cheng, J. Chen, B. Li, N. Yang, W. Niu, J. Wang, Y. Yu, X. Zhang, Y. Chen, Z. Fan, X. Wu, J. Chen, J. Luo, S. Li, L. Gu, H. Zhang: Crystal Phase-Based Epitaxial Growth of Noble Metal Nanostructures on 4H/fcc Au Nanowires. Nat. Chem. 2018, 10, 456.

    2. Q. Lu, Y. Yu, Q. Ma, B. Chen, H. Zhang: Two-dimensional Transition Metal Dichalcogenide Nanosheet-based Composites for Photocatalytic and Electrocatalytic Hydrogen Evolution Reactions. Adv. Mater. 2016, 28, 1917.

    3. S. Han, Q. Yun, S. Tu, L. Zhu, W. Cao, Q. Lu: Metallic ruthenium-based nanomaterials for electrocatalytic and photocatalytic hydrogen evolution. J. Mater. Chem. A, 2019, 7, 24691.

    4. A-L. Wang, L. Zhu, Q. Yun, S. Han, L. Zeng, W. Cao, X. Meng, J. Xia, Q. Lu: Bromide Ions Triggered Synthesis of Noble Metal-Based Intermetallic Nanocrystals. Small, 2020, 2003782.

    5. Sun, P., Lu, Q., et al. Mo-ion doping evoked visible light response in TiO2 nanocrystals for highly-efficient removal of benzene. Chemical Engineering Journal, 2020, 397, 125444.

    6. Zhang, J. , Sun, P. , Jiang, P. , Guo, Z. , Liu, W. , & Lu, Q. , et al. (2019). Formation mechanism of tio2 polymorphs under hydrothermal conditions based on structure evolution of [ti(oh)h(h2o)6-h]4-h monomers. Journal of Materials Chemistry C, 2019, 7, 5764-5771

    7. Yuan K, Shi J, Aftab W, et al. Engineering the Thermal Conductivity of Functional Phase‐Change Materials for Heat Energy Conversion, Storage, and Utilization[J]. Advanced Functional Materials, 2020, 30 (8), 1904228.

    8. Yuan K, Liu J, Fang X et al. Crafting visible-light-absorbing dye-doped phase change microspheres for enhancing solar-thermal utilization performance[J]. Solar Energy Materials and Solar Cells, 2020, 218: 110759.

    9. Yuan K, Liu J, Fang X, Zhang Z. Novel facile self-assembly approach to construct graphene oxide-decorated phase change microcapsules with enhanced photo-to thermal conversion performance [J]. Journal of Material Chemistry A, 2018, 6, 4535-4543.

    10. J. Kuang, T. Xiao, Q. Zheng, S. Xiong, Q. Wang, P. Jiang and W. Cao. Dielectric permittivity and microwave absorption properties of transition metal Ni and Mn doped SiC nanowires. Ceramics International, 2020, 46(9): 12996-13002.

    11. J. Kuang, Q. Qin, T. Xiao, X. Hou, P. Jiang Q. Wang and W. Cao. Tunable dielectric permittivity and microwave absorption properties of Pt-decorated SiC nanowires prepared by magnetic sputtering. Materials Letters, 2019, 245: 90-93.

    12. J. Kuang, T. Xiao, X. Hou, Q. Zheng, Q. Wang, P. Jiang and W. Cao. Microwave synthesis of worm-like SiC nanowires for thin electromagnetic wave absorbing materials. Ceramics International, 2019, 45(9): 11660-11667.

    13. Sen Li,Jie Zhang, Zhaobo Tian, Xuanyi Yuan, Songmo Du, Qi Wang*, Wenbin Cao. Synthesis of blue emitting AlN:Eu2+ spherical phosphors by carbothermal reduction-nitridation method. Journal of the American Ceramic Society, 2020, 00: 1–10.

    14. Qi Wang, Yiyao Ge, Jianlei Kuang, et al, Effects of Additives on the Synthesis of Spherical Aluminum Nitride Granules by Carbothermal Reduction Nitridation Process, Journal of Alloys and Compounds, 2017, 696: 220-225

    15. Wang, Yuqian; Lei, Honghong; Jiang, Peng; Cui, Kunyang; Liu, Lin; Cao, Wenbin. Synthesis and optical properties of intense blue colors oxides based on Mn5+ in tetrahedral sites in Ba7Al2-xMnxO10+y, Ceramics International. 2021, 47 (1), 686-691

    16. Cui, Kunyang; Liu, Lin; Wang, Yuqian; Jiang, Peng; Li, Bin; M. A. Subramanian; Cao, Wenbin. Synthesis and properties of novel inorganic green chromophore based on Bi24Al2-xMnxO39, Ceramics International. 2021, 47 (7), 8944-8948

    17. Wang, Yuqian; Lei, Honghong; Jiang, Peng; et al. Synthesis and optical properties of Mn-doped Ba3Al2O6 intense blue oxides, Optical Materials, 2020, 109, 110327


  • 1. 一种可见光相应二氧化钛光催化液的制备方法.

    2. 一种氮掺杂锐钛矿型纳米二氧化钛的制备方法.

    3. 氮掺杂纳米二氧化钛改性光催化涂料及其制备方法.

    4. 一种可见光响应水性光催化喷涂浆料的制备方法.

    5. 一种具有分级结构的高效抗菌杀毒铜基滤网及制备方法.

    6. 一种碳热还原制备氮化铝纤维的方法.

    7. 一种Ba-Al-Mn-O蓝色无机颜料的制备方法.

    8. 一种Cr掺杂Bi24Al2O39金属氧化物混相红色无机颜料及制备方法.

    9. 一种蓝色氧化锆陶瓷的制备方法.

    10. 一种用于阻隔人造板材VOC释放的无机涂层的制备方法.

    11. 一种氧化石墨烯掺杂二氧化硅无机壁材包覆的有机相变微胶囊及其制备方法.

    12. 一种包覆型水合盐储热材料及制备方法.


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