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教师基本信息——柯香

2021年09月23日 13:05  点击:[]

柯香


 

柯香,男,19926月生,博士,助教2020年毕业于南京理工大学,获工学博士学位,美国马里兰大学帕克分校访问学者

研究方向:1. 新型亚稳态分子间复合微球构效关系研究

2. 亚稳态分子间复合物界面结构与含能特性间的本质关系研究  

3. 多梯度燃速复合含能薄膜的配方设计与3D打印成型技术

承担课程

新能源材料材料分析与测试技术

承担的主要科研项目

1.安徽省自然科学基金青年项目:基于含能微球精准内嵌的高能薄膜的释能规律与增强机理研究,2121/08-2023/0710万元

2.安徽科技学院人才引进项目含能微球内嵌高能薄膜的构建与能量释放规律研究2021/01-2016/1230万元

3.横向课题:吸收药效果评价研究,2020/08-2020/1210元。

发表论文和承担科研项目情况

一、发表的主要科研论文:

[1] Ghildiyal Pankaj#, Ke Xiang#, Biswas Prithwish, et al. Silicon Nanoparticles for the Reactivity and Energetic Density Enhancement of Energetic-Biocidal Mesoparticle Composites, ACS Applied Materials & Interfaces, 2020, 1(13): 458-467.

[2] Ke Xiang, Gou Bingwang, Liu Xiulian, et al. Tuning the reactivity of Al/NiO@C nanoenergetic materials through building an interfacial ccarbon barrier layer[J]. ACS Applied Materials and Interfaces, 2019, 11(38): 35394-35403.

[3] Ke Xiang, Guo Shuangfeng, Gou Bingwang, et al. Superhydrophobic fluorine-containing protective coating to endow Al nanoparticles with long-term storage stability and self-activation reaction capability[J]. Advanced Materials Interfaces, 2019, 6(19): 1901025-1901035.

[4] Ke Xiang, Guo Shuangfeng, Zhang Gensheng, et al. Safe preparation, energetic performance and reaction mechanism of corrosion-resistant Al/PVDF nanocomposite films[J]. Journal of Materials Chemistry A, 2018, 6(36): 17713-17723.

[5] Ke Xiang, Zhou Xiang, Gao Han, et al. Surface functionalized core/shell structured CuO/Al nanothermite with long-term storage stability and steady combustion performance[J]. Materials & Design, 2018, 140: 179-187.

[6] Ke Xiang, Zhou Xiang, Hao Gazi, et al. Rapid fabrication of superhydrophobic Al/Fe2O3 nanothermite film with excellent energy-release characteristics and long-term storage stability[J]. Applied Surface Science, 2017, 407: 137-144.

[7] Ke Xiang, Zhou Xiang, Hao Gazi, et al. Template-assisted synthesis of 3D ordered macroporous structured CuO as catalyst for ammonium perchlorate[J]. Functional Materials Letters, 2017, 10(03): 1750030-1750033.

[8] Ke Xiang, Zhou Xiang, Rong Yuanbo, et al. A facile approach to the hydrothermal synthesis of graphene[C].

 

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