叶崇 研究员 湖南省 研究领域: 储能,精细化工 研究方向: (一)沥青碳纤维结构及性能调控与制备 (二)沥青炭纤维织物结构设计与复合材料制备 (三)相变储能碳基材料的设计与制备 (四)耐高温介电型吸波/承载一体化复合材料 (五)超轻隔热气凝胶材料 所在单位: 湖南大学

基本信息

所在单位:
湖南大学
机构细分:
材料科学与工程学院
单位类型:
高等院校
职务:
研究员
职称:
研究员
专家介绍:
叶崇,男,河南西平人,研究员、博士生导师,国家高层次青年人才,先进炭材料及应用技术湖南省重点实验室主任。主要致力于高导热中间相沥青碳纤维及其复合材料的基础理论研究与国产化研制工作,兼任全国碳纤维标准化技术委员会委员、中国复合材料学会航天复合材料及应用专业委员会委员。主持国家及省市项目20余项,已在国内外学术刊物上发表论文60余篇,已获授权中国发明专利30余项,项目成果相继获2019年度湖南省技术发明一等奖及2020年度国家科技进步二等奖,研究成果在国家航天型号和国民经济领域中获得重要应用。

科研能力

研究领域:
储能,精细化工
研究方向:
(一)沥青碳纤维结构及性能调控与制备
(二)沥青炭纤维织物结构设计与复合材料制备
(三)相变储能碳基材料的设计与制备
(四)耐高温介电型吸波/承载一体化复合材料
(五)超轻隔热气凝胶材料
论文著作:
[1] Huafeng Quan, Wei Li, Dong Huang*, Woqian Gao, Shanying Sui, Yuefeng Zhang, Hua Liu, Ziwen Gu, Zhen Fan*, Jinshui Liu, Chong Ye*. Enhanced ablation resistance and mechanical properties of CMP/C-HfC composites contributed by dual-skeleton reinforcement and coating protection. Composites Part B-Engineering, 2025, 305, 112723.
[2] Ruixiang Liu, Huang Wu, Gaoming Ye, Kui Shi, Dong Huang, Huafeng Quan, Chong Ye*, Shipeng Zhu, Zhen Fan, Feng Qian, Jinshui Liu. Positive effect of isotropic components on the elongation at break of mesophase pitch-based carbon fibers. ACS Omega, 2025, 10, 14188-14198.
[3] Gaoming Ye, Huang Wu, Kui Shi, Dong Huang, Huafeng Quan, Chong Ye*, Shipeng Zhu, Zhen Fan, Feng Qian, Jinshui Liu*. Preparation of continuous large-diameter mesophase pitch-based carbon fiber with good weavability and potential ultra-high thermal conductivity. Carbon, 2025, 238, 120181.
[4] Yuchen Wang, Shuqi Wang, Lingxiao Xue, Fei Wang, Fulai Qi, Yuduo Zhou, Chengzhi Zhang*, Jun Tan*, Hongge Pan, Chong Ye*. An Ultrastable Integrated Anode with ~95wt. % SiOx via In Situ Electrode-Scale Conformal Coating. ACS Nano, 2025, 19, 1, 1660-1675. 
[5] Xiang Chen, Kui Shi, Ziwen Gu, Huafeng Quan, Dong Huang*, Yuefeng Zhang, Tongqi Li*, Shipeng Zhu, Zhen Fan, Chaoyi Peng, Lei Tao, Chong Ye*, Jinshui Liu. Positive effects of anisotropic thermal conductive structure of phenolic based composites on enhancing thermal protection. Composites Part B-Engineering, 2025, 292, 112093.
[6] Huang Wu, Gaoming Ye, Kui Shi, Dong Huang, Huafeng Quan, Chong Ye*, Shipeng Zhu, Zhen Fan, Feng Qian, Hongbo Liu, Jinshui Liu. Constructing the pyrolysis kinetic model of mesophase pitch for improving mechanical properties and thermal conductivity of carbon fibers. Carbon, 2025, 232, 119765.
[7] Gen Liao, Kui Shi*, Chong Ye*, Zhen Fan, Tongqi Li, Feng Qian, Dong Huang, Fei Han, Hongbo Liu, Jinshui Liu*. Saturate acts as both a "lubricant" and an "activator" during the conversion process of mesophase in fluid catalytic cracking slurry oil. ACS Omega, 2024, 9, 46472-46483.
[8] Kui Shi, Yuan Lai, Chengfei Li, Chong Ye*, Huang Wu, Dong Huang, Shipeng Zhu, Fei Han, Feng Qian, Jinshui Liu. Improving the spinnability of mesophase pitch and its carbon fiber performance by modifying toluene solubles content in the precursor. Journal of Materials Science, 2024, 59, 19319-19336.
[9] Gen Liao, Kui Shi*, Chong Ye*, Zhen Fan, Tongqi Li, Shipeng Zhu, Xubin He, Dong Huang, Fei Han, Hongbo Liu, Jinshui Liu*. Optimizing light and heavy aromatic ratios in fluid catalytic cracking slurry oil for mesophase pitch with wide-area optically anisotropic texture. Geoenergy Science and Engineering, 2024, 240, 213073.
[10] Ningyuan Zhang, Dong Huang, Huafeng Quan, Chong Ye*, Chaoyi Peng, Lei Tao, Shipeng Zhu, Zhen Fan, Kui shi, Feng Qian, Jinshui Liu. Unveiling the microscopic compression failure behavior of mesophase-pitch-based carbon fibers for improving the compressive strength of their polymer composites. Composites Part B-Engineering, 2024, 283, 111658.
[11] Gen Liao, Kui Shi*, Chong Ye*, Zhen Fan, Tongqi Li, Xubin He, Dong Huang, Fei Han, Hongbo Liu, Jinshui Liu*. Influence of two asphaltenes on the formation and development of mesophase in fluid catalytic cracking (FCC) slurry oil. Energy, 2024, 293, 130731. 
[12] Gui Wang, Huafeng Quan, Yuefeng Zhang, Dong Huang*, Tongqi Li, Chong Ye*, Zhen Fan, Fei Han, Hongbo Liu, Jinshui Liu*. Development of the graphite crystal contributing to the thermal performance of high-thermal-conductive C/C composites. Ceramics International, 2024, 50, 6108-6119.
[13] Biao Cheng, Huafeng Quan, Yuefeng Zhang, Dong Huang*, Tongqi Li, Chong Ye*, Xinming Zhou, Zhen Fan, Yafang Zhang, Ting Ouyang, Fei Han, Hongbo Liu, Jinshui Liu. Enhanced thermal conductivity of phase change composites with novel binary graphite networks. Composites Part A, 2024, 177, 107925.
[14] Gaoming Ye, Kui Shi, Huang Wu, Dong Huang, Chong Ye*, Ting Ouyang, Shipeng Zhu, Zhen Fan, Hongbo Liu, Jinshui Liu*. Improving the mechanical properties and thermal conductivity of the mesophase-pitch-based carbon fibers by spinning temperature regulation applying an engineering equipment. New Carbon Materials, 2024, 39(2): 334-344.
[15] Yafang Zhang, Zhao Jiang, Yu Qin, Chong Ye*, Jinshui Liu, and Ting Ouyang*. Thermal interface Engineering in a 3D-Structured Carbon Framework for a Phase-Change Composite with High Thermal Conductivity. ACS Applied Materials & Interfaces, 2023, 15(41), 48235-48245.
[16] Zhijie Xiang, Fei Wang, Kui Shi*, Chong Ye*, Zhen Fan, Gen Liao, Chengfei Li, Dong Huang, Fei Han, Hongbo Liu, Jinshui Liu*. Functionalized graphene assisted the formation of mesocarbon microbeads with ultra-large size and loose microcrystalline structure from petroleum pitch for sodium-ion batteries anode. Journal of Analytical and Applied Pyrolysis, 2023, 175, 106171.
[17] Gen Liao, Kui Shi*, Chong Ye*, Zhen Fan, Zhijie Xiang, Chengfei Li, Dong Huang, Fei Han, Hongbo Liu, Jinshui Liu*. Influence of resin on the formation and development of mesophase influid catalytic cracking (FCC) slurry oil. Journal of Analytical and Applied Pyrolysis, 2023, 172, 105997
[18] Ningyuan Zhang, Dong Huang, Xiang Chen, Chong Ye*, Shipeng Zhu, Zhen Fan, Fei Han, Hongbo Liu, Jinshui Liu. Improving the interlaminar bonding and thermal conductivity of polymer composites by using split-radial mesophase pitch-based carbon fiber as reinforcement. Composites Part B-Engineering, 2023, 252, 110509.
[19] Biao Li, Dong Huang*, Tongqi Li, Chong Ye*, Xingming Zhou, Zhen Fan, Ningyuan Zhang, Fei Han, Hongbo Liu, Jinshui Liu*. The positive role of mesophase-pitch-based carbon fibers in enhancing thermal response behavior in Carbon/Carbon composite. Materials characterization, 2023, 196, 112630.
[20] Dong Huang, Qianli Liu, Peng Zhang, Chong Ye*, Fei Han, Hongbo Liu, Zhihai Feng*, Shipeng Zhu, Zhen Fan, Jinshui Liu*, Hao Wang. Thermal response of the two-directional high-thermal-conductive carbon fiber reinforced aluminum composites with low interface damage by a vacuum hot pressure diffusion method. Journal of Alloys and Compounds. 2022, 905: 1-11.
[21] Huang Wu, Dong Huang, Chong Ye*, Ting Ouyang, Shipeng Zhu*, Zhen Fan, Gaoming Ye, Xiao Wu, Kui Shi, Fei Han, Hongbo Liu, Jinshui Liu*. Engineering microstructure toward split free mesophase pitch based carbon fibers. Journal of Materials Science, 2022, 57(4):2411-2423.
[22] Ze Li, Zhao Jiang, Ting Ouyang*, Yafang Zhang, Chong Ye*, Jinshui Liu. Unveiling the microcrystal structure evolution of carbon fibers induced by thermal soaking of mesophase pitch. Journal of Materials Science, 2022, 57(7):4556-4568.
[23] Dong Huang, Qianli Liu,  Yuefeng Zhang, Chong Ye*, Shipeng Zhu, Zhen Fan*, Fei Han, Hongbo Liu, Jinshui Liu*. Ablation behavior and thermal conduction mechanism of 3D ZrC-SiC-modified carbon/carbon composite having high thermal conductivity using mesophase-pitch-based carbon fibers and pyrocarbon as heat transfer channels. Composites Part B-Engineering, 2021, 224: 109201.
[24] Chong Ye, Huang Wu, Shipeng Zhu, Zhen Fan, Dong Huang*, Fei Han, Jinshui Liu*, Jianxiao Yang, Hongbo Liu. Microstructure of high thermal conductivity mesophase pitch-based carbon fibers. New Carbon Materials, 2021, 36(5): 980-986.
[25] Dong Huang, Ruixuan Tan, Chong Ye*, Shipeng Zhu, Zhen Fan, Peng Zhang, Huang Wu, Fei Han, Hongbo Liu, Jinshui Liu*. Preparation and properties of the three-dimensional highly thermal conductive carbon/carbon-silicon carbide composite using the mesophase-pitch-based carbon fibers and pyrocarbon as thermal diffusion channels. Journal of the European Ceramic Society, 2021, 41(8):4438-4446.
发明专利:
[1] 叶崇、向逸风、伍孝等. 一种加氢及链转移改性精制中间相沥青的方法. 中国发明专利. 专利号:ZL202010291747.2
[2] 叶崇、黄东、伍孝等. 一种全自动干燥炉. 中国发明专利. 专利号:ZL202010302549.1
[3] 叶崇、黄东、伍孝等. 一种干燥炉. 中国发明专利. 专利号:ZL202010302550.4
[4] 叶崇、刘玲、黄东等. 一种碳蜂窝及其制备方法.专利号:ZL202010348455.8
[5] 叶崇、刘玲、黄东等. 一种高导热C/SiC复合材料及其制备方法. 专利号:ZL202010402393.4
[6] 叶崇、刘玲、黄东等. 一种自催化高导热C/C复合材料及其制备方法.专利号:ZL202010437046.5
[7] 叶崇、陈坤、余洋等. 一种中间相沥青的制备方法. 专利号:ZL202011419380.4
[8] 叶崇、伍孝、余洋等. 一种沥青基炭纤维及其制备方法. 专利号:ZL202011419370.0
[9] 叶崇、刘玲、黄东等. 一种高导热碳纤维预浸料及其制备方法. 专利号:ZL202011358480.0
[10] 叶崇、刘玲、黄东等. 一种高导热碳纤维粉及其制备方法. 专利号:ZL202011363995.X
科研项目:
主持军委装备发展部项目、军委科技委项目、国家自然科学基金、湖南省自然科学基金、湖南省重点领域研发计划、湖南省十大技术攻关项目、长沙市揭榜挂帅项目、国家及省级人才项目、平台建设项目、企事业单位委托项目等20余项。

项目合作

合作意向:
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