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冯东

文章来源:学生工作办公室     发布时间:2022年02月25日     点击数:

姓名:冯东

 

 

职称:讲师

 

 

联系方式:fdryan@kust.edu.cn

 

 

个人简介:

冯东,男,1990年8月出生,四川广安人,中共党员,工学博士(导师:王琪院士)。主要围绕高性能多功能高分子材料先进发泡技术及机理研究、锂/钠离子电池电极材料设计与制备、功能高分子材料3D打印结构设计与应用等开展工作,完成题为“高性能多功能聚醚酰亚胺泡沫材料和制品制备新技术及机理的研究”的博士学位论文。以第一作者或通讯作者在材料与化工领域发表国内外高水平论文30余篇,其中SCI论文20余篇;曾获博士研究生及硕士研究生国家奖学金等荣誉;多次参加国内外高分子材料学术会议;主持基金5项。

主讲课程:化工原理、化工原理实验。

研究方向:

1、高性能聚合物微孔发泡

2、功能聚合物复合材料与结构复合材料

3、聚合物的成型加工新技术与应用

4、锂/钠离子电池新能源材料

主要研究项目:

1.公司高层次人才引进经费,80万元,2020.10-2028.10,在研,主持

2.国家自然科学基金地区基金,35万,2022.01-2025.12,在研,主持

3.公司“双一流”创建联合专项面上项目,20万,2021.12-2024.11,在研,主持

4.云南省自然科学基金青年基金项目,5万元,2022.06-2025.05,在研,主持

5.云南省教育厅科学研究基础项目,4万元,2022.03-2023.02,在研,主持

代表性论文:

1.Feng Dong, Liu Pengju, Wang Qi. Carbon nanotubes in microwave-assisted foaming and sinter molding of high performance polyetherimide bead foam products. Materials Science & Engineering B: Advanced Functional Solid-State Materials, 2020, 262: 114727.

2.Feng Dong, Liu Pengju, Wang Qi. Selective Microwave Sintering to Prepare Multifunctional Poly(ether imide) Bead Foams Based on Segregated Carbon Nanotube Conductive Network. Industrial & Engineering Chemistry Research. 2020, 59 (13): 5838-5847.

3.Feng Dong, Xu Dawei, Wang Qingqing, Liu Pengju. Highly stretchable electromagnetic interference (EMI) shielding segregated polyurethane/carbon nanotubes composites fabricated by microwave selective sintering. Journal of Materials Chemistry C, 2019, 7, 7938-7946.

4.Feng Dong, Wang Qingqing, Xu Dawei, Liu Pengju. Microwave assisted sinter molding of polyetherimide/carbon nanotubes composites with segregated structure for high-performance EMI shielding applications. Composites Science and Technology. 2019, 182: 107753.

5.Feng Dong, Liu Pengju, Wang Qi. Exploiting the piezoresistivity and EMI shielding of polyetherimide/carbon nanotube foams by tailoring their porous morphology and segregated CNT networks. Composites Part A: Applied Science and Manufacturing. 2019, 124: 105463.

6.Feng Dong, Liu Qi, Hu Tianding, Chen Yuan,Zeng Tianbiao. Boosting cyclability performance of the LiNi0.8Co0.15Al0.05O2 cathode by a polyacrylonitrile-induced conductive carbon surface coating. Ceramics International, 2021,47(9): 12706-12715.

7.Feng Dong, Hao Siyu, Liu Qi, Zeng Tianbiao. Polyacrylonitrile gel polymer electrolyte as separator in boosting Li-ion storage performance of GeSe2. Ceramics International, 2021, 47(19): 27916-27924.

8.Feng Dong, Liu Qi, Li Zhongming, Zeng Tianbiao. Confining Nano-GeS2 in Cross-Linked Porous Carbon Networks for High-Performance and Flexible Li-Ion Battery Anodes [J]. ACS Applied Energy Materials, 2021, 4(6): 6096-6105.

9.Feng Dong, Liu Qi, Sun Fasen, Wu Feng, Zeng Tianbiao. Study on the Electrochemical Features of Carbon-Coated GeS2 and GeSe2 Anodes toward Application in Sodium-Ion Battery [J]. Energy & Fuels, 2021, 35(16), 13499-13505.

10.Feng Dong, Hao Siyu, Liu Qi, Zhu Yuanzhi, Zeng Tianbiao. Immobilization of GeS2 on exfoliated graphite sheet for high-capacity lithium-ion battery anodes [J]. Solid State Ionics, 2022, 375, 115839.

11.Zeng Tianbiao,Feng Dong*, Liu Qi, Zhou Ruoyu. Confining Nano-GeP in Nitrogenous Hollow Carbon Fibers toward Flexible and High-Performance Lithium-Ion Batteries [J]. ACS Applied Materials & Interfaces, 2021, 13(28), 32978-32988.

12.Zeng Tianbiao,Feng Dong*, Peng Qimeng, Xi Guocui, Chen Gang*. Nano-GeTe Embedded in a Three-Dimensional Carbon Sponge for Flexible Li-Ion and Na-Ion Battery Anodes [J]. ACS Applied Materials & Interfaces, 2021, 13(13), 15178-15189.

13.Zeng Tianbiao,Feng Dong*. Conductive carbon networks in surface coating of GeP rods toward high-performance lithium/sodium-ion battery anode [J]. Surfaces and interfaces, 2021, 27, 101461.

14.Zeng Tianbiao,Feng Dong*, Liu Qi, Siyu Hao, Ruoyu Zhou. Boosting cyclability performance of GeP anode via in-situ generation of free expansion volume [J]. Journal of Alloys and Compounds, 2021, 883, 160857.

15.Zeng Tianbiao, Chen Gang*, Peng Qimeng,Feng Dong*, Wang Qian. Nano Sn2S3 Embedded in Nitrogenous-Carbon Compounds for Long-Life and High-Rate Cycling Sodium-Ion Batteries [J]. CHEMSUSCHEM, 2021, 14(11): 2383-2392.

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