基本信息
胡友根  男  博导  中国科学院深圳先进技术研究院
电子邮件: yg.hu@siat.ac.cn
通信地址: 深圳市南山区西丽大学城学苑大道1068号
邮政编码: 518055

研究领域

电子封装材料;电磁屏蔽材料;微纳功能材料柔性电子材料与器件等。

招生信息

欢迎高分子、材料、化学、电子、电磁学等专业背景同学报考硕士研究生。

招生专业
070304-物理化学
070305-高分子化学与物理
085600-材料与化工
招生方向
聚合物基电子封装材料
导电与电磁屏蔽材料及其应用
柔性电子材料与器件,微纳功能材料

教育背景

2013-09--2017-07   中国科学院大学   博士
2007-09--2010-01   江苏大学   硕士
2003-09--2007-06   江苏大学   学士
学历
研究生

学位
博士

工作经历

   
工作简历
2023-01~现在, 中国科学院深圳先进技术研究院, 研究员
2018-01~2022-12,中国科学院深圳先进技术研究院, 副研究员
2017-09~2018-09,香港中文大学, 访问学者
2013-01~2017-12,中国科学院深圳先进技术研究院, 助理研究员
2010-04~2012-12,中国科学院深圳先进技术研究院, 研究助理

专利与奖励

   
奖励信息
(1) 第十一届广东大学生材料创新大赛优秀指导教师, 一等奖, 院级, 2021
专利成果
[1] 万艳君, 王晓允, 廖思远, 朱朋莉, 胡友根, 孙蓉. 一种修饰MXene的方法及其应用. CN202210992352.4, 2022-08-18.
[2] 万艳君, 廖思远, 王晓允, 胡友根, 朱朋莉, 孙蓉. 一种具有温度响应特性的电磁屏蔽复合材料及其制备方法和应用. CN202211011976.X, 2022-08-03.
[3] 胡友根, 陈菲, 许亚东, 田锭坤, 王勇, 赵涛, 孙蓉. 一种取向结构的导热电磁屏蔽材料及其制备方法. CN: CN111267434B, 2022-03-22.
[4] 万艳君, 王晓允, 廖思远, 朱朋莉, 胡友根, 孙蓉. 一种基于MXene废弃沉淀制备的电磁波吸收材料及其制备方法和应用. CN 113904126 A, 2022-01-07.
[5] 胡友根, 张浩睿, 张陆辉, 赵泽宇, 韦剑鸿, 田锭坤, 孙蓉. 一种可自愈合的电磁屏蔽材料及其制备方法和应用. CN: CN113861740A, 2021-12-31.
[6] 孙蓉, 梁先文, 赵涛, 朱朋莉, 胡友根. 一种银纳米线及其制备方法. CN: CN113857487A, 2021-12-31.
[7] 林志强, 胡友根, 田锭坤, 许亚东, 辛培培, 邓飞, 孙蓉. 一种碳纳米管热界面材料及其制备方法和应用. CN202111327563.8, 2021-11-10.
[8] 郭海伟, 王瑞智, 肖建军, 宋乐, 尹保林, 孔敏. 电磁屏蔽材料及其制备方法. CN: CN113429743A, 2021-09-24.
[9] 胡友根, 许亚东, 陈菲, 赵涛, 孙蓉. 高导热电磁屏蔽复合材料及其制备方法. CN: CN111070833B, 2021-07-23.
[10] 胡友根, 孙蓉, 朱朋莉, 赵涛. 一种基于印刷技术的全柔性干电极及其制备方法. CN: CN109044326B, 2021-07-23.
[11] 胡友根, 韦剑鸿, 许亚东, 林志强, 赵涛, 孙蓉. 一种轻质有机复合材料及其制备方法. CN: CN113061284A, 2021-07-02.
[12] 孙蓉, 张愿, 胡友根, 韩飞, 朱朋莉. 一种柔性压力传感器及其制备方法. CN: CN112723300A, 2021-04-30.
[13] 梁先文, 赵涛, 胡友根, 孙蓉. 银纳米线的制备方法. CN: CN112705721A, 2021-04-27.
[14] 赵涛",null,"朱朋莉. 银纳米颗粒的制备方法. CN: CN112548113A, 2021-03-26.
[15] 赵涛, 沈钦臣, 朱朋莉, 胡友根, 梁先文, 孙蓉. 银纳米颗粒的制备方法. CN: CN112548113A, 2021-03-26.
[16] 胡友根, 雷作敏, 朱朋莉, 赵涛, 孙蓉. 一种电磁屏蔽泡沫及其制备方法和应用. CN: CN112492865A, 2021-03-12.
[17] 胡友根, 许亚东, 田锭坤, 林志强, 赵涛, 孙蓉. 液态金属泡沫复合材料及其制备方法和应用. CN: CN112449567A, 2021-03-05.
[18] 胡友根, 田锭坤, 王勇, 林志强, 张玲, 赵涛, 邓飞, 孙蓉. 一种金属化多孔导电聚合物复合材料及其制备方法和应用. CN202011185735.8, 2020-10-29.
[19] 孙蓉, 叶晃青, 朱朋莉, 胡友根, 李刚, 赵涛. 一种二维纳米碳的制备方法. CN: CN111661834A, 2020-09-15.
[20] 孙蓉, 叶晃青, 胡友根, 朱朋莉. 一种微纳铜片的制备方法. CN: CN111659898A, 2020-09-15.
[21] 胡友根, 孙蓉, 赵涛, 朱朋莉. 一种柔性压力传感器及其制作方法. CN: CN106370327B, 2020-09-15.
[22] 胡友根, 沈友康, 赵涛, 田锭坤, 王勇, 许亚东, 孙蓉. 一种电磁屏蔽泡沫复合材料及其制备方法和用途. CN: CN111592377A, 2020-08-28.
[23] 胡友根, 刘学斌, 雷作敏, 朱朋莉, 赵涛, 孙蓉. 一种图案化电磁屏蔽材料及其制备方法和应用. CN: CN111511181A, 2020-08-07.
[24] 胡友根, 雷作敏, 刘学斌, 朱朋莉, 赵涛, 孙蓉. 一种柔性电磁屏蔽复合材料及其制备方法. CN: CN111138836A, 2020-05-12.
[25] 赵涛, 郝放, 朱朋莉, 胡友根, 梁先文, 孙蓉. 一种纳米银颗粒及其制备方法和用途. CN: CN111097922A, 2020-05-05.
[26] 胡友根, 田锭坤, 王勇, 张玲, 辛培培, 邓飞, 孙蓉. 一种在碳材料表面镀银的方法. CN: CN111074243A, 2020-04-28.
[27] 胡友根, 熊耀旭, 沈友康, 刘学斌, 朱朋莉, 孙蓉. 柔性导电复合膜及其制备方法、柔性压力传感器及其制备方法. CN: CN110967131A, 2020-04-07.
[28] 胡友根, 沈友康, 古晗, 熊耀旭, 赵涛, 孙蓉. 一种轻质高导电屏蔽材料及其制备方法. CN: CN110540729A, 2019-12-06.
[29] 朱朋莉, 余雪城, 胡友根, 张愿, 孙蓉. 一种异质结直流压电纳米发电机及其制备方法. CN: CN110534640A, 2019-12-03.
[30] 胡友根, 古晗, 沈友康, 赵涛, 孙蓉. 电磁屏蔽材料及其制备方法. CN: CN110436923A, 2019-11-12.
[31] 赵涛, 郝放, 朱朋莉, 胡友根, 梁先文, 孙蓉. 纳米银颗粒及其制备方法和应用. CN: CN110181071A, 2019-08-30.
[32] 孙蓉, 张愿, 胡友根, 韩飞, 朱朋莉. 一种柔性压力传感器及其制备方法. CN: CN110137337A, 2019-08-16.
[33] 张愿, 胡友根, 韩飞, 朱朋莉, 孙蓉. 一种柔性压力传感器及制备方法. CN: CN110118623A, 2019-08-13.
[34] 孙蓉, 叶晃青, 赵涛, 张保坦, 胡友根, 梁先文. 复合胶膜及其制备方法. CN: CN110117376A, 2019-08-13.
[35] 赵涛, 郝放, 朱朋莉, 胡友根, 梁先文, 孙蓉. 一种纳米银粉的制备方法. CN: CN110079557A, 2019-08-02.
[36] 胡友根, 孙蓉, 赵涛, 朱朋莉, 梁先文, 朱玉, 张愿. 一种柔性压力传感器及其制作方法. CN: CN110082012A, 2019-08-02.
[37] 赵涛, 郝放, 朱朋莉, 胡友根, 梁先文, 孙蓉. 一种纳米银颗粒及其制备方法. CN: CN110014168A, 2019-07-16.
[38] 孙蓉, 叶晃青, 赵涛, 张保坦, 胡友根, 梁先文. 一种石墨烯基热界面材料及其制备方法. CN: CN109957380A, 2019-07-02.
[39] 胡友根, 赵涛, 古晗, 叶晃青, 梁先文, 孙蓉. 一种导热电磁屏蔽复合材料及其制备方法和应用. CN: CN109943023A, 2019-06-28.
[40] 孙蓉, 叶晃青, 赵涛, 张保坦, 胡友根, 梁先文. 一种石墨烯水分散液及其制备方法. CN: CN109928386A, 2019-06-25.
[41] 孙蓉, 帅行天, 朱朋莉, 胡友根. 电容型压力传感器及其制备方法. CN: CN109932105A, 2019-06-25.
[42] 胡友根, 张保坦, 赵涛, 梁先文, 孙蓉. 一种导热电磁屏蔽复合材料及其制备方法. CN: CN109881038A, 2019-06-14.
[43] 胡友根, 赵涛, 朱朋莉, 张愿, 朱玉, 梁先文, 孙蓉. 压力传感器及其制备方法. CN: CN109556768A, 2019-04-02.
[44] 赵涛, 王壮, 孙蓉, 胡友根, 梁先文, 朱朋莉. 一种导电油墨及其制备方法. CN: CN109337448A, 2019-02-15.
[45] 梁先文, 赵涛, 胡友根, 朱朋莉, 孙蓉. 一种银纳米线的制备方法. 中国: CN105478793B, 2018.08.14.
[46] 胡友根, 赵涛, 张馨予, 梁先文, 朱朋莉, 孙蓉. 一种透明柔性可拉伸的电磁屏蔽薄膜及其制备方法. CN: CN108882661A, 2018-11-23.
[47] 孙蓉, 熊耀旭, 胡友根, 朱朋莉, 赵涛, 张馨予. 柔性压力传感器及其制备方法. CN: CN108225625A, 2018-06-29.
[48] 孙蓉, 熊耀旭, 胡友根, 朱朋莉, 赵涛, 张馨予. 柔性压力传感器及其制备方法. CN: CN108195491A, 2018-06-22.
[49] 赵涛, 王壮, 孙蓉, 胡友根, 梁先文, 朱朋莉. 一种纳米银立方颗粒的制备方法. CN: CN107552810A, 2018-01-09.
[50] 赵涛, 王壮, 孙蓉, 胡友根, 梁先文, 朱朋莉. 一种纳米银颗粒的制备方法. CN: CN106964785A, 2017-07-21.
[51] 胡友根, 孙蓉, 赵涛, 朱朋莉, 张愿, 朱玉. 一种可印刷柔性导电浆料及其导电线路与制备方法. CN: CN106782757A, 2017-05-31.
[52] 胡友根, 赵涛, 朱朋莉. 压力传感器及其制备方法. CN: CN106768520A, 2017-05-31.
[53] 孙蓉, 胡友根, 赵涛, 朱朋莉, 梁先文, 朱玉. 一种基于印刷技术的压力敏感型电开关. CN: CN206210665U, 2017-05-31.
[54] 孙蓉, 朱玉, 胡友根, 朱朋莉, 赵涛. 一种铜纳米线/石墨烯复合材料及其制备方法和应用. CN: CN106710890A, 2017-05-24.
[55] 胡友根, 孙蓉, 赵涛, 朱朋莉, 朱玉, 张愿. 一种可拉伸柔性导电复合材料、其制备方法及用途. CN: CN106674784A, 2017-05-17.
[56] 胡友根, 朱玉, 朱朋莉, 赵涛, 孙蓉. 一种含有石墨烯包覆铜纳米线的复合弹性体的制备方法和应用. CN: CN106653159A, 2017-05-10.
[57] 孙蓉, 邵伟芳, 朱朋莉, 胡友根, 赵涛. 一种用于导电油墨的纳米银颗粒及其制备方法. CN: CN106623971A, 2017-05-10.
[58] 赵涛, 梁先文, 胡友根, 朱朋莉, 孙蓉. 基于离子液体制备银纳米线的方法及制备得到的银纳米线. CN: CN106623966A, 2017-05-10.
[59] 胡友根, 孙蓉, 赵涛, 朱朋莉, 梁先文, 朱玉, 张愿. 一种柔性压力传感器. CN: CN206132280U, 2017-04-26.
[60] 孙蓉, 韩延康, 赵涛, 张保坦, 朱朋莉, 胡友根. 一种掺杂银纳米颗粒的导电银胶及其制备方法与应用. CN: CN106118539A, 2016-11-16.
[61] 孙蓉, 帅行天, 朱朋莉, 胡友根. 电容型压力传感器及其制备方法. 中国: CN106092384A, 2016-11-09.
[62] 朱朋莉, 帅行天, 李刚, 胡友根, 孙蓉. 压阻式压力传感器及其制备方法. CN: CN106092390A, 2016-11-09.
[63] 孙蓉, 帅行天, 朱朋莉. 电容型压力传感器及其制备方法. CN: CN106092384A, 2016-11-09.
[64] 孙蓉, 胡友根, 赵涛, 朱朋莉, 梁先文, 朱玉. 一种基于印刷技术的压力敏感型电开关及其制作方法. CN: CN106057534A, 2016-10-26.
[65] 孙蓉, 朱玉, 胡友根, 朱朋莉. 石墨烯包覆铜纳米线的三维结构气凝胶及其制备方法和应用. CN: CN105772741A, 2016-07-20.
[66] 胡友根, 赵涛, 朱朋莉, 梁先文, 朱玉, 帅行天, 韩延康, 孙蓉. 一种聚合物导电复合材料及其制备方法. CN: CN105733112A, 2016-07-06.
[67] 胡友根, 赵涛, 朱朋莉, 梁先文, 朱玉, 帅行天, 韩延康, 孙蓉. 一种聚合物导电复合材料及其制备方法. CN: CN105623136A, 2016-06-01.
[68] 孙蓉, 张保坦, 韩延康, 朱朋莉, 胡友根. 导电银胶及其制备方法和微电子功率器件. CN: CN105462530A, 2016-04-06.
[69] 胡友根, 赵涛, 梁先文, 朱朋莉, 孙蓉. 具有表面增强拉曼散射效应的基底材料的制备方法. CN: CN104962890A, 2015-10-07.
[70] 孙蓉, 赵波, 符显珠, 胡友根. 石墨烯的制备方法. 中国: CN104773730A, 2015-07-15.
[71] 孙蓉, 赵涛, 朱朋莉, 胡友根, 梁先文. 氧化硅纳米颗粒的制备方法. CN: CN103172076A, 2013-06-26.
[72] 梁先文, 赵涛, 胡友根, 孙蓉. 银纳米线的制备方法. CN: CN103170645A, 2013-06-26.
[73] 孙蓉, 胡友根, 赵涛, 梁先文. 镀银铜纳米线及其制备方法. CN: CN103103510A, 2013-05-15.
[74] 孙蓉, 梁先文, 赵涛, 胡友根. 银纳米线的制备方法. CN: CN103100724A, 2013-05-15.
[75] 孙蓉, 胡友根, 赵涛, 郑述. 一种多层夹芯式复合保温板. CN: CN202689212U, 2013-01-23.
[76] 赵涛, 孙蓉, 梁先文, 胡友根. 多级结构的纳米银颗粒及其制备方法. CN: CN102837003A, 2012-12-26.
[77] 孙容, 胡友根, 姜成名, 赵涛. 轻质绝热发泡水泥及其制备方法. CN: CN102795878A, 2012-11-28.
[78] 孙蓉, 赵涛, 胡友根, 赖茂柏. 节能聚氨酯复合板材及房屋. CN: CN202248329U, 2012-05-30.
[79] 孙蓉, 赖茂柏, 张海文, 邹杰, 王依海, 赵涛, 胡友根. 智能调温聚氨酯节能板及其制备方法. CN: CN102322110A, 2012-01-18.

出版信息

   
发表论文
[1] Lu, Xi, He, JinMing, Xu, YaDong, Wei, JianHong, Li, JianHui, Long, HaoHui, Hu, YouGen, Sun, Rong. Conductive microsphere monolayers enabling highly conductive pressure-sensitive adhesive tapes for electromagnetic interference shielding. ADVANCES IN MANUFACTURING[J]. 2023, 11(2): 212-221, http://dx.doi.org/10.1007/s40436-022-00421-1.
[2] Ye, Huangqing, Chen, Jiahui, Hu, Yougen, Li, Yunming, Wang, Yu, Fu, XianZhu, Sun, Rong. Enhanced electrically and thermally conductive free-standing graphene films with two-dimensional copper sheets as the catalyst and bridge. DALTON TRANSACTIONS[J]. 2023, 52(17): 5486-5495, http://dx.doi.org/10.1039/d2dt04142a.
[3] Xiao-Yun Wang, Si-Yuan Liao, Yan-Jun Wan, Hai-Peng Huang, Xing-Miao Li, You-Gen Hu, Peng-Li Zhu, Rong Sun, Ching-Ping Wong. Near-field and far-field EMI shielding response of lightweight and flexible MXene-decorated polyester textiles. Materials Today Physics[J]. 2022, 23: 1000644-1000644, DOI: 10.1016/j.mtphys.2022.100644.
[4] Xu, Yadong, Lin, Zhiqiang, Yang, Yaqi, Duan, Hongji, Zhao, Guizhe, Liu, Yaqing, Hu, Yougen, Sun, Rong, Wong, ChingPing. Integration of efficient microwave absorption and shielding in a multistage composite foam with progressive conductivity modular design. MATERIALS HORIZONS[J]. 2022, 9(2): 708-719, [5] Jia, Meiling, Yi, Chenghan, Han, Yankun, Wang, Lei, Li, Xin, Xu, Guoliang, He, Ke, Li, Nianci, Hou, Yuxin, Wang, Zhongguo, Zhu, Yuanhao, Zhang, Yuanao, Hu, Mingzhu, Sun, Ran, Tong, Peifei, Yang, Jiawei, Hu, Yougen, Wang, Zhixun, Li, Weimin, Li, Wenjie, Wei, Lei, Yang, Chunlei, Chen, Ming. Hierarchical Network Enabled Flexible Textile Pressure Sensor with Ultrabroad Response Range and High-Temperature Resistance. ADVANCED SCIENCE[J]. 2022, 9(14): http://dx.doi.org/10.1002/advs.202105738.
[6] Shen, Youkang, Lin, Zhiqiang, Wei, Jianhong, Xu, Yadong, Wan, Yanjun, Zhao, Tao, Zeng, Xierong, Hu, Yougen, Sun, Rong. Facile synthesis of ultra-lightweight silver/reduced graphene oxide (rGO) coated carbonized-melamine foams with high electromagnetic interference shielding effectiveness and high absorption coefficient. CARBON[J]. 2022, 186: 9-18, http://dx.doi.org/10.1016/j.carbon.2021.09.068.
[7] Si-Yuan Liao, Gang Li, Xiao-Yun Wang, Yan-Jun Wan, Peng-Li Zhu, You-Gen Hu, Tao Zhao, Rong Sun, Ching-Ping Wong. Metallized Skeleton of Polymer Foam Based on Metal-Organic Decomposition for High-Performance EMI Shielding. ACS APPLIED MATERIALS & INTERFACES[J]. 2022, 14(2): 3302-3314, DOI: 10.1021/acsami.1c21836.
[8] Lu, Xi, He, JinMing, Xu, YaDong, Wei, JianHong, Li, JianHui, Long, HaoHui, Hu, YouGen, Sun, Rong. Conductive microsphere monolayers enabling highly conductive pressure-sensitive adhesive tapes for electromagnetic interference shielding. ADVANCES IN MANUFACTURING. 2022, [9] Zhang, Zhen, Wang, Jianda, Shang, Jian, Xu, Yadong, Wan, YanJun, Lin, Zhiqiang, Sun, Rong, Hu, Yougen. A Through-Thickness Arrayed Carbon Fibers Elastomer with Horizontal Segregated Magnetic Network for Highly Efficient Thermal Management and Electromagnetic Wave Absorption. SMALL. 2022, [10] Wei, Jianhong, Lin, Zhiqiang, Lei, Zuomin, Xu, Yadong, Zhao, Zeyu, Zhao, Tao, Hu, Yougen, Miao, Hua, Sun, Rong. Lightweight and Highly Compressible Expandable Polymer Microsphere/Silver Nanowire Composites for Wideband Electromagnetic Interference Shielding. ACS APPLIED MATERIALS & INTERFACES[J]. 2022, 14(4): 5940-5950, http://dx.doi.org/10.1021/acsami.1c20593.
[11] Xu, Yadong, Lin, Zhiqiang, Rajavel, Krishnamoorthy, Zhao, Tao, Zhu, Pengli, Hu, Yougen, Sun, Rong, Wong, ChingPing. Tailorable, Lightweight and Superelastic Liquid Metal Monoliths for Multifunctional Electromagnetic Interference Shielding. NANO-MICRO LETTERS[J]. 2022, 14(1): 136-150, http://dx.doi.org/10.1007/s40820-021-00766-5.
[12] Si-Yuan Liao, Xiao-Yun Wang, Xing-Miao Li, Yan-Jun Wan, Tao Zhao, You-Gen Hu, Peng-Li Zhu, Rong Sun, Ching-Ping Wong. Flexible liquid metal/cellulose nanofiber composites film with excellent thermal reliability for highly efficient and broadband EMI shielding. CHEMICAL ENGINEERING JOURNAL[J]. 2021, 422: 129962-129962, DOI: 10.1016/j.cej.2021.129962.
[13] Rajavel, Krishnamoorthy, Yu, Xuecheng, Zhu, Pengli, Hu, Yougen, Sun, Rong, Wong, Chingping. Investigation on the structural quality dependent electromagnetic interference shielding performance of few-layer and lamellar Nb2CTx MXene nanostructures. JOURNAL OF ALLOYS AND COMPOUNDS[J]. 2021, 877: http://dx.doi.org/10.1016/j.jallcom.2021.160235.
[14] Lei, Zuomin, Tian, Dingkun, Liu, Xuebin, Wei, Jianhong, Rajavel, Krishnamoorthy, Zhao, Tao, Hu, Yougen, Zhu, Pengli, Sun, Rong, Wong, ChingPing. Electrically conductive gradient structure design of thermoplastic polyurethane composite foams for efficient electromagnetic interference shielding and ultra-low microwave reflectivity. CHEMICAL ENGINEERING JOURNAL[J]. 2021, 424: http://dx.doi.org/10.1016/j.cej.2021.130365.
[15] Shen, Youkang, Lin, Zhiqiang, Liu, Xuebin, Zhao, Tao, Zhu, Pengli, Zeng, Xierong, Hu, Yougen, Sun, Rong, Wong, ChingPing. Robust and flexible silver-embedded elastomeric polymer/carbon black foams with outstanding electromagnetic interference shielding performance. COMPOSITES SCIENCE AND TECHNOLOGY[J]. 2021, 213: http://dx.doi.org/10.1016/j.compscitech.2021.108942.
[16] Tian, Dingkun, Xu, Yadong, Wang, Yong, Lei, Zuomin, Lin, Zhiqiang, Zhao, Tao, Hu, Yougen, Sun, Rong, Wong, ChingPing. In-situ metallized carbon nanotubes/poly(styrene-butadiene-styrene) (CNTs/SBS) foam for electromagnetic interference shielding. CHEMICAL ENGINEERING JOURNAL[J]. 2021, 420: http://dx.doi.org/10.1016/j.cej.2021.130482.
[17] Zhang, Xinyu, Chen, Fei, Han, Lewei, Zhang, Gang, Hu, Yougen, Jiang, Wenlong, Zhu, Pengli, Sun, Rong, Wong, ChingPing. Flexible, Highly Sensitive, and Ultrafast Responsive Pressure Sensor with Stochastic Microstructures for Human Health Monitoring. ADVANCED ENGINEERING MATERIALS[J]. 2021, 23(2): http://dx.doi.org/10.1002/adem.202000902.
[18] Ma, Longquan, Yu, Xuecheng, Yang, Yuanyuan, Hu, Yougen, Zhang, Xinyu, Li, Huayuan, Ouyang, Xing, Zhu, Pengli, Sun, Rong, Wong, Chingping. Highly sensitive flexible capacitive pressure sensor with a broad linear response range and finite element analysis of micro-array electrode. JOURNAL OF MATERIOMICS[J]. 2020, 6(2): 321-329, http://dx.doi.org/10.1016/j.jmat.2019.12.008.
[19] Rajavel, Krishnamoorthy, Luo, Suibin, Wan, Yanjun, Yu, Xuecheng, Hu, Yougen, Zhu, Pengli, Sun, Rong, Wong, Chingping. 2D Ti3C2Tx MXene/polyvinylidene fluoride (PVDF) nanocomposites for attenuation of electromagnetic radiation with excellent heat dissipation. COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING[J]. 2020, 129: http://dx.doi.org/10.1016/j.compositesa.2019.105693.
[20] Zhang Yuan, Han Fei, Hu Yougen, Xiong Yaoxu, Gu Han, Zhang Guoqi, Zhu Pengli, Sun Rong, Wong ChingPing. Flexible and Highly Sensitive Pressure Sensors with Surface Discrete Microdomes Made from Self-Assembled Polymer Microspheres Array. MACROMOLECULAR CHEMISTRY AND PHYSICS[J]. 2020, 221(11): https://www.webofscience.com/wos/woscc/full-record/WOS:000531404300001.
[21] Rajavel, Krishnamoorthy, Yu, Xuecheng, Zhu, Pengli, Hu, Yougen, Sun, Rong, Wong, Chingping. Exfoliation and Defect Control of Two-Dimensional Few-Layer MXene Ti3C2Tx for Electromagnetic Interference Shielding Coatings. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(44): 49737-49747, https://www.webofscience.com/wos/woscc/full-record/WOS:000589384100041.
[22] Gu, Han, Xu, Yadong, Shen, Youkang, Zhu, Pengli, Zhao, Tao, Hu, Yougen, Sun, Rong, Wong, ChingPing. Versatile Biomass Carbon Foams for Fast Oil-Water Separation, Flexible Pressure-Strain Sensors, and Electromagnetic Interference Shielding. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH[J]. 2020, 59(47): 20740-20748, https://www.webofscience.com/wos/woscc/full-record/WOS:000595543000018.
[23] Liu, Xuebin, Liang, Xianwen, Lin, Zhiqiang, Lei, Zuomin, Xiong, Yaoxu, Hu, Yougen, Zhu, Pengli, Sun, Rong, Wong, ChingPing. Highly Sensitive and Stretchable Strain Sensor Based on a Synergistic Hybrid Conductive Network. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(37): 42420-42429, https://www.webofscience.com/wos/woscc/full-record/WOS:000572965700149.
[24] Xiong, Yaoxu, Shen, Youkang, Tian, Lan, Hu, Yougen, Zhu, Pengli, Sun, Rong, Wong, ChingPing. A flexible, ultra-highly sensitive and stable capacitive pressure sensor with convex microarrays for motion and health monitoring. NANO ENERGY[J]. 2020, 70: http://dx.doi.org/10.1016/j.nanoen.2019.104436.
[25] Rajavel, Krishnamoorthy, Hu, Yougen, Zhu, Pengli, Sun, Rong, Wong, Chingping. MXene/metal oxides-Ag ternary nanostructures for electromagnetic interference shielding. CHEMICAL ENGINEERING JOURNAL[J]. 2020, 399: http://dx.doi.org/10.1016/j.cej.2020.125791.
[26] Yu, Xuecheng, Liang, Xianwen, Krishnamoorthy, Rajavel, Jiang, Wen, Zhang, Leicong, Ma, Longquan, Zhu, Pengli, Hu, Yougen, Sun, Rong, Wong, ChingPing. Transparent and flexible hybrid nanogenerator with welded silver nanowire networks as the electrodes for mechanical energy harvesting and physiological signal monitoring. SMART MATERIALS AND STRUCTURES[J]. 2020, 29(4): https://www.webofscience.com/wos/woscc/full-record/WOS:000521424400001.
[27] Yan-Jun Wan, Xiao-Yun Wang, Xing-Miao Li, Si-Yuan Liao, Zhi-Qiang Lin, You-Gen Hu, Tao Zhao, Xiao-Liang Zeng, Chun-Hong Li, Shu-Hui Yu, Peng-Li Zhu, Rong Sun, Ching-Ping Wong. Ultrathin Densified Carbon Nanotube Film with "Metal-like" Conductivity, Superior Mechanical Strength, and Ultrahigh Electromagnetic Interference Shielding Effectiveness. ACS NANO[J]. 2020, 14(10): 14134-14145, DOI: 10.1021/acsnano.0c06971.
[28] Xiong, Yaoxu, Zhu, Yu, Liu, Xuebin, Zhu, Pengli, Hu, Yougen, Sun, Rong, Wong, ChingPing. A flexible pressure sensor based on melamine foam capped by copper nanowires and reduced graphene oxide. MATERIALS TODAY COMMUNICATIONS[J]. 2020, 24: http://dx.doi.org/10.1016/j.mtcomm.2020.100970.
[29] Shen, Youkang, Chen, Fei, Zhang, Luhui, Zhang, Haorui, Xu, Yadong, Zeng, Xierong, Hu, Yougen, Sun, Rong, IEEE. Fabrication of lightweight CMF/RGO/Ag nanocomposite foam via a simple pyrolysis method for highly effective electromagnetic interference (EMI) shielding. 2020 21ST INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY (ICEPT)null. 2020, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000629072600139.
[30] Ye, Huangqing, Chen, Jiahui, Hu, Yougen, Li, Gang, Fu, XianZhu, Zhu, Pengli, Sun, Rong, Wong, ChingPing. One-pot synthesis of two-dimensional multilayered graphitic carbon nanosheets by low-temperature hydrothermal carbonization using the in situ formed copper as a template and catalyst. CHEMICAL COMMUNICATIONS[J]. 2020, 56(78): 11645-11648, https://www.webofscience.com/wos/woscc/full-record/WOS:000574031500017.
[31] 胡友根. 微纳结构柔性压力传感器的制备及应用. 化学进展. 2019, [32] Zhang, Xinyu, Hu, Yougen, Gu, Han, Zhu, Pengli, jiang, Wenlong, Zhang, Gang, Sun, Rong, Wong, ChingPing. A Highly Sensitive and Cost-Effective Flexible Pressure Sensor with Micropillar Arrays Fabricated by Novel Metal-Assisted Chemical Etching for Wearable Electronics. ADVANCED MATERIALS TECHNOLOGIES[J]. 2019, 4(9): http://dx.doi.org/10.1002/admt.201900367.
[33] Liang, Xianwen, Lu, Jibao, Zhao, Tao, Yu, Xuecheng, Jiang, Qingshan, Hu, Yougen, Zhu, Pengli, Sun, Rong, Wong, ChingPing. Facile and Efficient Welding of Silver Nanowires Based on UVA-Induced Nanoscale Photothermal Process for Roll-to-Roll Manufacturing of High-Performance Transparent Conducting Films. ADVANCED MATERIALS INTERFACES[J]. 2019, 6(3): https://www.webofscience.com/wos/woscc/full-record/WOS:000458309700001.
[34] Lu Tan, Gu Han, Hu Yougen, Zhao Tao, Zhu Pengli, Sun Rong, Wong ChingPing, IEEE. Three Dimensional Copper Foam-Filled Elastic Conductive Composites with Simultaneously Enhanced Mechanical, Electrical, Thermal and Electromagnetic Interference (EMI) Shielding Properties. 2019 IEEE 69TH ELECTRONIC COMPONENTS AND TECHNOLOGY CONFERENCE (ECTC)null. 2019, 1916-1920, [35] Xiong, Yaoxu, Hu, Yougen, Zhu, Pengli, Sun, Rong, Wong, ChingPing. Fabrication and Application of Flexible Pressure Sensors with Micro/Nano-Structures. PROGRESS IN CHEMISTRY[J]. 2019, 31(6): 800-810, [36] Liang, Xianwen, Zhao, Tao, Jiang, Wen, Yu, Xuecheng, Hu, Yougen, Zhu, Pengli, Zheng, Hairong, Sun, Rong, Wong, ChingPing. Highly transparent triboelectric nanogenerator utilizing in-situ chemically welded silver nanowire network as electrode for mechanical energy harvesting and body motion monitoring. NANO ENERGY[J]. 2019, 59: 508-516, http://dx.doi.org/10.1016/j.nanoen.2019.02.071.
[37] Hu Yougen, Zhao Tao, Zhu Pengli, Zhang Yuan, Liang Xianwen, Sun Rong, Wong ChingPing. A low-cost, printable, and stretchable strain sensor based on highly conductive elastic composites with tunable sensitivity for human motion monitoring.. NANO RESEARCH[J]. 2018, http://ir.siat.ac.cn:8080/handle/172644/13607.
[38] Hu, Yougen, Liu, Xuebin, Tian, Lan, Zhao, Tao, Wang, Hui, Liang, Xianwen, Zhou, Fengrui, Zhu, Pengli, Li, Guanglin, Sun, Rong, Wong, ChingPing. Multidimensional Ternary Hybrids with Synergistically Enhanced Electrical Performance for Conductive Nanocomposites and Prosthetic Electronic Skin. ACS APPLIED MATERIALS & INTERFACES[J]. 2018, 10(44): 38493-38505, http://ir.siat.ac.cn:8080/handle/172644/14898.
[39] Ma, Longquan, Shuai, Xingtian, Hu, Yougen, Liang, Xianwen, Zhu, Pengli, Sun, Rong, Wong, Chingping. A highly sensitive and flexible capacitive pressure sensor based on a micro- arrayed polydimethylsiloxane dielectric layer. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2018, 6(48): 13232-13240, https://www.webofscience.com/wos/woscc/full-record/WOS:000453251200014.
[40] Hu, Yougen, Zhao, Tao, Zhu, Pengli, Zhang, Yuan, Liang, Xianwen, Sun, Rong, Wong, ChingPing. A low-cost, printable, and stretchable strain sensor based on highly conductive elastic composites with tunable sensitivity for human motion monitoring. NANO RESEARCH[J]. 2018, 11(4): 1938-1955, http://lib.cqvip.com/Qikan/Article/Detail?id=674998914.
[41] Zhu, Yu, Hu, Yougen, Zhu, Pengli, Zhao, Tao, Liang, Xianwen, Sun, Rong, Wong, Chingping. Enhanced oxidation resistance and electrical conductivity copper nanowires-graphene hybrid films for flexible strain sensors. NEW JOURNAL OF CHEMISTRY[J]. 2017, 41(12): 4950-4958, https://www.webofscience.com/wos/woscc/full-record/WOS:000403340100036.
[42] Ouyang Qionglin, Li Gang, Shao Weifang, Zhu Pengli, Hu Yougen, Sun Rong, Wong Chingping, IEEE. A Facile Route to Prepare Metal Nanostructure Applied in SERS Active Substrate. 2017 18TH INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY (ICEPT)null. 2017, 888-893, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000431392000194.
[43] Wang, Zhuang, Liang, Xianwen, Zhao, Tao, Hu, Yougen, Zhu, Pengli, Sun, Rong. Facile synthesis of monodisperse silver nanoparticles for screen printing conductive inks. JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS[J]. 2017, 28(22): 16939-16947, https://www.webofscience.com/wos/woscc/full-record/WOS:000414322100044.
[44] Liang, Xianwen, Zhao, Tao, Zhu, Pengli, Hu, Yougen, Sun, Rong, Wong, ChingPing. Room-Temperature Nanowelding of a Silver Nanowire Network Triggered by Hydrogen Chloride Vapor for Flexible Transparent Conductive Films. ACS APPLIED MATERIALS & INTERFACES[J]. 2017, 9(46): 40857-40867, https://www.webofscience.com/wos/woscc/full-record/WOS:000416614600108.
[45] Hu Yougen, Zhao Tao, Zhu Pengli, Zhang Yuan, Liang Xianwen, Sun Rong, Wong ChingPing, IEEE. A Printable and Flexible Conductive Polymer Composite with Sandwich Structure for Stretchable Conductor and Strain Sensor Applications. 2017 18TH INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY (ICEPT)null. 2017, 1361-1365, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000431392000296.
[46] Shao Weifang, Zhu Pengli, Hu Yougen, Sun Rong, Wong Chingping, IEEE. The Preparation of Monodisperse Silver Nanoparticles and its Application in Flexible Printed Electronics. 2017 18TH INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY (ICEPT)null. 2017, 588-592, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000431392000130.
[47] Zeng, Xiaoliang, Yao, Yimin, Hu, Yougen, Guo, Kun, Sun, Jiajia, Sun, Rong, Xu, JianBin, Wong, ChingPing, IEEE. A Novel Organic Substrate with Enhanced Thermal Conductivity. 2017 IEEE 67TH ELECTRONIC COMPONENTS AND TECHNOLOGY CONFERENCE (ECTC 2017)null. 2017, 144-149, [48] Yu Zhu, Yougen Hu, Pengli Zhu, Tao Zhao, Xianwen Liang, Rong Sun, Chingping Wong. Enhanced Oxidation Resistance and Electrical Conductivity Copper Nanowires-Graphene Hybrid Films as Flexible Strain Sensors. NEW JOURNAL OF CHEMISTRY[J]. 2017, http://ir.siat.ac.cn:8080/handle/172644/11659.
[49] Shuai, Xingtian, Zhu, Pengli, Zeng, Wenjin, Hu, Yougen, Liang, Xianwen, Zhang, Yu, Sun, Rong, Wong, Chingping. Highly Sensitive Flexible Pressure Sensor Based on Silver Nanowires-Embedded Polydimethylsiloxane Electrode with Microarray Structure. ACS APPLIED MATERIALS & INTERFACES[J]. 2017, 9(31): 26314-26324, https://www.webofscience.com/wos/woscc/full-record/WOS:000407540400073.
[50] Zhang Yuan, Hu Yougen, Zhao Tao, Zhu Pengli, Sun Rong, Wong Chingping, IEEE. Highly Sensitive Flexible Pressure Sensor Based on Microstructured PDMS For Wearable Electronics Application. 2017 18TH INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY (ICEPT)null. 2017, 853-856, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000431392000186.
[51] Zhang, Yuan, Hu, Yougen, Zhu, Pengli, Han, Fei, Zhu, Yu, Sun, Rong, Wong, ChingPing. Flexible and Highly Sensitive Pressure Sensor Based on Microdome-Patterned PDMS Forming with Assistance of Colloid Self-Assembly and Replica Technique for Wearable Electronics. ACS APPLIED MATERIALS & INTERFACES[J]. 2017, 9(41): 35968-35976, https://www.webofscience.com/wos/woscc/full-record/WOS:000413503700047.
[52] Hu, Yougen, Zhao, Tao, Zhu, Pengli, Zhu, Yu, Shuai, Xingtian, Liang, Xianwen, Sun, Rong, Lu, Daoqiang Daniel, Wong, ChingPing. Low cost and highly conductive elastic composites for flexible and printable electronics. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2016, 4(24): 5839-5848, https://www.webofscience.com/wos/woscc/full-record/WOS:000378245500038.
[53] Hu, Yougen, Zhao, Tao, Zhu, Pengli, Zhu, Yu, Liang, Xianwen, Sun, Rong, Wong, ChingPing. Tailoring Size and Coverage Density of Silver Nanoparticles on Monodispersed Polymer Spheres as Highly Sensitive SERS Substrates. CHEMISTRY-AN ASIAN JOURNAL[J]. 2016, 11(17): 2428-2435, https://www.webofscience.com/wos/woscc/full-record/WOS:000383606900012.
[54] Su Haibo, Zhu Pengli, Zhou Fengrui, Han Yankang, Shuai Xingtian, Hu Yougen, Li Tingxi, Sun Rong, Wong Chingping, Bi KY, Liu S, Zhou S. Preparation water dispersible reduced graphene oxide as ink materials for the flexible and wearable energy storage devices. 201617THINTERNATIONALCONFERENCEONELECTRONICPACKAGINGTECHNOLOGYICEPTnull. 2016, 218-221, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000389835800046.
[55] Hu, Yougen, Zhao, Tao, Zhu, Pengli, Liang, Xianwen, Sun, Rong, Wong, ChingPing. Preparation of large micron-sized monodisperse polystyrene/silver core-shell microspheres with compact shell structure and their electrical conductive and catalytic properties. RSC ADVANCES[J]. 2015, 5(1): 58-67, http://dx.doi.org/10.1039/c4ra12475h.
[56] Hu Yougen, Zhu Pengli, Zha Tao, Liang Xianwen, Sun Rong, Wong ChingPing, Bi KY, Zhu WH, He H. P(St-AA)/Ag nano-composite particles as electrical conductive filler for conductive ink in printed electronics. 2015 16TH INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGYnull. 2015, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000380377000063.
[57] Liang, Xianwen, Zhao, Tao, Hu, Yougen, Zhu, Pengli, Sun, Rong, Lu, Dao Qiang Daniel, Wong, Chingping. CuCl2 and stainless steel synergistically assisted synthesis of high-purity silver nanowires on a large scale. RSC ADVANCES[J]. 2014, 4(88): 47536-47539, https://www.webofscience.com/wos/woscc/full-record/WOS:000343035800055.
[58] Liang, Xianwen, Zhao, Tao, Hu, Yougen, Sun, Rong. Dielectric properties of silver nanowires-filled polyvinylidene fluoride composite with low percolation threshold. JOURNAL OF NANOPARTICLE RESEARCH[J]. 2014, 16(9): https://www.webofscience.com/wos/woscc/full-record/WOS:000340464700001.
[59] Hu Yougen, Zhao Tao, Zhu Pengli, Sun Rong. Preparation of monodisperse polystyrene/silver composite microspheres and their catalytic properties. COLLOID AND POLYMER SCIENCE[J]. 2012, 290(5): 401-409, https://www.webofscience.com/wos/woscc/full-record/WOS:000303510500002.
[60] 胡友根, 周志平, 盛维琛. 多孔苯乙烯-二乙烯基苯共聚物微球的磺化及其对牛血清蛋白的吸附. 离子交换与吸附[J]. 2010, 26(4): 334-343, http://lib.cqvip.com/Qikan/Article/Detail?id=35139553.
[61] 胡友根, 周志平, 盛维琛. 多孔苯乙烯-二乙烯基苯共聚物的制备与孔结构. 高分子材料科学与工程[J]. 2010, 26(11): 71-74, http://lib.cqvip.com/Qikan/Article/Detail?id=35935027.

科研活动

   
科研项目
( 1 ) 基于自组装微阵列结构的高灵敏度柔性压力传感器研究, 负责人, 国家任务, 2018-01--2020-12
( 2 ) 基于自组装微阵列牺牲模板技术制备高灵敏度柔性压力传感器及其性能研究, 负责人, 地方任务, 2018-03--2020-03
( 3 ) 基于微纳阵列结构PDMS柔性压力传感器的制作与性能研究, 负责人, 研究所自选, 2016-12--2018-12
( 4 ) 先进碳纳米管材料联合实验室项目, 负责人, 企业委托, 2019-08--2022-08
( 5 ) 多功能电磁屏蔽材料开发, 负责人, 企业委托, 2018-12--2020-05
( 6 ) 面向芯片的高性能电磁屏蔽导热弹性材料的制备及其协同机制研究, 负责人, 国家任务, 2021-01--2024-12
( 7 ) 内壁金属化研究, 负责人, 企业委托, 2021-05--2021-12
( 8 ) 电磁屏蔽膜开发, 负责人, 企业委托, 2021-05--2022-05
( 9 ) 工业和信息化部2021年国家新材料生产应用示范平台课题, 负责人, 国家任务, 2021-09--2024-08
( 10 ) xxx机制研究(军委科技委), 负责人, 国家任务, 2021-10--2024-10
( 11 ) PCB三维共形屏蔽散热膜关键技术研发, 负责人, 地方任务, 2022-03--2022-03
( 12 ) 各向异性电磁屏蔽导热一体化材料的制备、结构调控及其对力-热-电磁影响机制研究, 负责人, 地方任务, 2021-11--2024-10
参与会议
(1)Lightweight carbon-based foams made from bacterial cellulose for electromagnetic interference (EMI) shielding   2019-08-11
(2)Three Dimensional Copper Foam-Filled Elastic Conductive Composites with Simultaneously Enhanced Mechanical, Electrical, Thermal and Electromagnetic Interference (EMI) Shielding Properties   2019-06-01
(3)Stretchable and Printable Medical Dry Electrode Arrays on Textile for Electrophysiological Monitoring   2019-06-01
(4)Cost-Efficient Formation of Flexible Pressure Sensor with Micropillar Arrays by Metal-Assisted Chemical Etching for Wearable Electronic Skin   2018-05-29
(5)A Printable and Flexible Conductive Polymer Composite with Sandwich Structure for Stretchable Conductor and Strain Sensor Applications   2017-08-16
(6)A Printable and Stretchable Strain Sensor Based on Highly Conductive Elastic Composite for Human Motion Monitoring   2017-06-29
(7)Water-dispersible graphene paste for flexible conductive patterns and films   2016-08-16
(8)Printable and stretchable elastic composites with highly electrical conductivity based on core-shell fillers   2016-03-13
(9)P(St-AA)/Ag nano-composite particles as electrical conductive filler for conductive ink in printed electronics   2015-08-11

指导学生

已指导学生

熊耀旭  硕士研究生  085204-材料工程  

张浩睿  硕士研究生  085204-材料工程  

现指导学生

李智朋  硕士研究生  085600-材料与化工  

李经天  硕士研究生  085600-材料与化工