1)极端环境服役的隔防热材料
2)极端环境服役的导/散热材料与器件
3)金属/陶瓷粉材3D增材打印
4)热控材料高通量设计及热传导模拟
黄竹林
职称:博导,研究员,国家优秀青年科学基金,中科院青年创新促进会会员
部门:纳米材料与器件技术研究部
电话:0551-65597936
邮箱:zlhuang@issp.ac.cn
地址:安徽省合肥市蜀山湖路350号固体物理研究所
2011年毕业于固体物理研究所,获博士学位,之后留所工作;期间在美国西弗吉尼亚大学担任访问学者。担任《粉末冶金材料科学与工程》、《Extreme Materials》等刊物青年编委。
1)极端环境服役的隔防热材料
2)极端环境服役的导/散热材料与器件
3)金属/陶瓷粉材3D增材打印
4)热控材料高通量设计及热传导模拟
主要研究极端环境热控功能材料(硼化物、碳化物、氮化物、高熵超高温陶瓷及陶瓷气凝胶)的制备、表征、强韧化机理及在空天环境和核材料等领域的工程应用。在Advanced Materials、Journal of Materials Science & Technology、欧陶、美陶等期刊发表90余篇论文,授权发明专利40余件,起草多个陶瓷企标和多个工艺规范。主持多个国家专项工程课题、国家基金委项目等。
代表性成果
1.Xincan Gao, et al. Synthesis of ultrafine WC ceramic powders with reduced carbon content by liquid phase precursor method and the sintering behaviors. Ceramics International 2024, 50, 15134–15143.
2.Mengen Hu, et al. Phase-Tunable Molybdenum Boride Ceramics as anEmerging Sensitive and Reliable SERS Platform in Harsh Environments. Small 2024, 2308690.
3.Zhimin Chen, et al. Self-Confined Dewetting Mechanism in Wafer-Scale Patterning of Gold Nanoparticle Arrays with Strong Surface Lattice Resonance for Plasmonic Sensing. Adv. Sci. 2024, 2306239.
4.Xian Dang, et al. Improved spectral emissivity and mechanical properties of high-entropy (Ti0.2Zr0.2Nb0.2Mo0.2Hf0.2)B2 derived from boro/carbothermal reduction. Journal of the European Ceramic Society 2024, 44, 4410–4424.
5.Chunxue Zheng, et al. Biomass-derived lightweight SiC aerogels forsuperior thermal insulation. Nanoscale, 2024, 16, 4600–4608.
6.Liangfei Wu, et al. Kirkendall effect induced ultrafine VOOH nanoparticles and their transformation into VO2(M) for energy-efficient smart windows. Mater. Horiz. 2024, 11, 1098–1107.
7.Zhen Wang, et al. Synthesis and formation mechanism of HfB2 ultrafine powders with low oxygen via flocculating settling assisted process and carbo/borothermal reduction. Journal of Materials Science & Technology, 2023 164, 229–239.
8.Chunxue Zheng, et al. Flexible 3D Substrate of Ag Nanoparticle-Loaded Carbon Aerogels with Outstanding Surface-Enhanced Raman Scattering Performance. ACS Appl. Mater. Interfaces 2023, 15, 29609−29617.
9.Mengen Hu, et al. Ultrafine ZrB2 Ceramic Powders Prepared by a Sol−Gel Method Synergized with a Carbothermic Reaction and Their Improved Sintering Performance. ACS Applied Engineering Materials 2023, 1, 769−779.
10.Tianxu Wang, Zhen Wang, Chenguang Hu, Xinyang Li, Zhulin Huang, Xiaoye Hu, Yue Li. Dispersant-assisted preparation of ultra-fine HfB2 powder. Applied Surface Science 2022, 606, 154995.
安徽省自然科学一等奖