邵姣婧(无机非)

作者:发布时间:2016-09-12浏览次数:15805

研究生导师信息简表


  姓  名

邵姣婧

性    


出生年月

1988.03

导师类别

博导

硕导

毕业院校

天津大学

学    位

博士

教授

现任职务

副院长

办公电话


电子邮件

shaojiao_jing@163.com

招生学科

方向

学科方向1

材料科学与工程(材料物理与化学)

学科方向2

材料与化工

(材料工程)

导师个人简介

邵姣婧,贵州大学教授、博导20147月入职贵州大学,主要承担《材料物理学》、《纳米材料》等本科生课程,以及《功能材料与智能材料》、《材料科学研究》等研究生课程。近五年,主要从事有关氧化石墨烯、石墨烯、粘土等二维材料的制备、组装及其在电化学储能器件中的应用研究,截止目前,主持国家自然科学基金4项、霍英东青年科学基金1项、贵州省科学技术基金(重点类型)2项、以及其他省部级项目多项。以第一作者/单独通讯作者身份在Nature Communications, Advanced Materials, Energy Storage Materials, Journal of Materials Chemistry ACarbonACS Applied Materials & InterfacesChemical CommunicationsAdvanced Materials Interfaces等期刊上发表SCI论文20余篇,以合作者身份在Nature Chemistry, ASC Nano, Advanced Functional Materials等期刊上发表论文近10篇;获国家授权发明专利9件,专利转让1件。目前担任《无机盐工业》期刊青年编委会委员、《新型炭材料》期刊特约审稿人。

学习与工作经历

一、学习经历

20097月毕业于天津大学获工学学士学位,20146月毕业于天津大学获工学博士学位,博士期间师从杨全红教授,2015年荣获天津大学优秀博士学位论文奖。博士期间获国家留学基金委资助于2012.09-2014.03在美国西北大学材料科学与工程系(MSE)联合培养,联合培养博士导师为西北大学黄嘉兴教授。

二、工作经历

2014.07-2015.07:贵州大学副教授

2015.07-至今:贵州大学教授

2021.07-至今:贵州大学材料与冶金学院副院长

主要研究领域与方向

二维材料的制备及其在电化学储能器件中的应用研究

课题组网址:http://shaojiaojing-gzu.cn/

年来主要承担的科研项目(注明主持或参与、项目来源、项目名称、项目研究起止时间)

国家自然科学基金—面上项目:粘土基二维纳米通道功能化隔膜的可控构筑及高性能锂硫电池的构建,2020.01-2023.12,主持。

贵州省优秀青年科技人才:超级电容器用石墨烯基电极材料的制备及研究,2017.07-2020.06,主持。

贵州省普通高等学校科技拔尖人才支持计划:石墨烯基柔性超级电容器的构建及其电化学储能性能研究,2016.10-2019.10,主持。

霍英东高等院校青年教师基金:石墨烯基纤维电极的制备及其电化学性能研究,2016.03-2019.03,主持。

贵州省留学人员科技创新项目—择优项目:石墨烯基薄膜电极在超级电容器中的应用研究,2016.01-2017.12,主持。

国家自然科学基金—青年科学基金项目:新型二维纳流体通道的构建及其离子传输机制的研究,2016.01-2018.12,主持。

国家自然科学基金—地区科学基金项目:石墨烯/聚苯胺复合纤维的可控组装及全固态柔性超级电容器的构建,2016.01-2019.12,主持。

贵州省科学技术基金重点项目:石墨烯/二氧化锰复合纳米材料的组装及其在超级电容器中的应用研究,2015.08-2019.08,主持。

年来部分学术论著(作者、论文题目、期刊名称、发表时间、期卷页码)

一、通讯作者论文

[1]  Xiang Long, Zhi-Hong Luo, Wen-Hua Zhou, Shao-Kuan Zhu, Ya Song, Huan Li, Chuan-Nan Geng, Bin Shi, Zhi-Yuan Han, Guang-Min Zhou, Wei Lv, Jiao-Jing Shao*,“Two-dimensional montmorillonite-based heterostructure for high-rate and long-life lithium-sulfur batteriesEnergy Storage Materials2022,52, 120-129.(SCI,一区)

[2]  Ya Song  , Xiang Long  , Zhihong Luo  , Chong Guo  , Chuan-Nan Geng  , Quan-Sheng Ouyang  , Zhiyuan Han  Guangmin Zhou  , Jiao-Jing Shao *, “Solid Carbon Spheres with Interconnected Open Pore Channels Enabling High-Efficient Polysulfide Conversion for High-Rate Lithium–Sulfur Batteries” , ACS Applied Materials & Interfaces , 2022 , 14, 32183-32195.(SCI,一区)

[3]   Xiang Long, Shao-kuan Zhu, Ya Song, Min Zheng, Bin Shi, Jiao-jing Shao*, “Engineering the interface between separators and cathodes to suppress polysulfide shuttling in lithium-sulfur batteriesNew Carbon Materials 2022373):527-543.(SCI)

[4]  Mei-li Liu , Xiang Long , Hai-yan Tang , Xin-hang Fan , Chao-yi Chen , Jiao-jing Shao*,“The formation of uniform graphene-polyaniline hybrids using a completely miscible cosolvent that have an excellent electrochemical performanceNew Carbon Materials202237(2):381-390.(SCI)

[5]  Cation Vacancy Boosted Lewis Acid-Base Interaction in Polymer Electrolyte for High Performance Lithium Metal Batteries, 2021, ACS Applied Materials & Interfaces, Accepted, https://doi.org/10.1021/acsami.1c17002. (SCI, 一区)

[6]  TANG Xiao-ning, ZHU Shao-kuan, NING Jian, YANG Xing-fu, HU Min-yi, SHAO Jiao-jing*,“Charge storage mechanisms of manganese dioxide-based supercapacitors”, New Carbon Materials, 2021, 36(4): 702-710. (SCI)

[7]  Dao-Yi Wu, Jiao-Jing Shao*, Graphene-based Flexible All-Solid-State Supercapacitors, Materials Chemistry Frontiers, 2021, 5, 557-583. (SCI,一区)

[8]  Dao-Yi Wu, Wen-Hua Zhou, Lin-Yi He, Hai-Yan Tang, Xiao-Hui Xu, Quan-Sheng Ouyang, and Jiao-Jing Shao*, “Micro-Corrugated Graphene Sheet Enabled High-Performance All-Solid-State Film Supercapacitor”, Carbon, 2020, 160, 156-163. (SCI, 一区)

[9]  Xiao-Ning Tang, Chen-Zhe Liu, Xiang-Rong Chen, Ya-Qian Deng, Xiao-Hu Chen, Jiao-Jing Shao* and Quan-Hong Yang, “Graphene aerogel derived by purification-free graphite oxide for high performance supercapacitor electrodes”, Carbon, 2019, 146, 147−154. (SCI, 一区)

[10]  Mei-Li Liu, Meng Huang, Lian-Yu Tian, Li-Hong Zhao, Bin Ding, De-Bin Kong, Quan-Hong Yang and Jiao-Jing Shao*, “Two-Dimensional Nanochannel Arrays Based on Flexible Montmorillonite Membranes”, ACS Applied Materials & Interfaces, 2018, 10, 44915−44923. (SCI, 一区)

[11]  Xiangrong Chen, Ting Xiang, Zhengjie Li, Yanlin Wu, Hailong Wu, Zhaofa Cheng, Jiao-Jing Shao*, Quan-Hong Yang, “A Planar Graphene-based Film Supercapacitor Formed by Liquid-Air Interfacial Assembly”, Advanced Materials Interfaces, 2017, 4(9), 1601127. (SCI,二区)

[12]  邵姣婧*, 郑德一李政杰杨全红, “二维纳米材料的自上而下制备:可控液相剥离”新型炭材料, 2016, 31(2), 97-114. (SCI, IF=1.322) (荣获《新型炭材料》2016年度优秀论文奖)

[13]  李娟,赵安婷*,邵姣婧*,唐晓宁,卢丽平,“Cu/还原氧化石墨烯光催化复合材料的制备及其光催化性能”,复合材料学报,2018, 35,9, 2551-2557. (EI, 中文核心)

[14]  Le Yang, Wei Wang, Mingxiang Hu, Jiaojing Shao*, Ruitao Lv*, “Ultrahigh rate binder-free Na3V2(PO4)3/carbon cathode for sodium ion battery”, Journal of Energy Chemistry, 2018, 27, 1439-1445. (SCI)

[15]  Juan Li, Anting Zhao*, Jiaojing Shao*, Liping Lu, “Preparation and Catalytic Properties of Copper/Graphene Composites”, Chinese Journal of Inorganic Chemistry, 2017, 33(7): 1231-1235. (SCI)

二、第一作者论文

[1]Jiao-Jing Shao, Kalyan Raidongia, Andrew R. Koltonow and Jiaxing Huang*, “Self-assembled Two-dimensional Nanofluidic Proton Channels with High Thermal Stability”, Nature Communications, 2015, 6, 7602.

[2]Jiao-Jing Shao, Wei Lv and Quan-Hong Yang*, “Self-assembly of graphene oxide at interfaces”, Advanced Materials, 2014, 26, 5586-5612.

[3]Jiao-Jing Shao, Zheng-Jie Li, Chen Zhang, Li-Fang Zhang and Quan-Hong Yang*, “A Wavy Graphene/Platinum hybrid with Increased Electroactivity for the Methanol oxidation Reaction”, Journal of Materials Chemistry A, 2014, 2, 1940-1946.

[4] Jiao-Jing Shao, Wei Lv, Quangui Guo, Chen Zhang, Qiang Xu, Quan-Hong Yang* and Feiyu Kang, “Hybridization of graphene oxide and carbon nanotubes at the liquid/air interface”, Chemical Communications, 2012, 48 (31), 3706-3708.

[5]Lifang Zhang, Jiao-Jing Shao (共同第一作者), Weiguo Zhang, Chen Zhang, Xiaoyu Zheng, Hongda Du, Quan-Hong Yang*, “Graphene-Based Porous Catalyst with High Stability and Activity for the Methanol Oxidation Reaction”, Journal of Physical Chemistry C, 2014, 118 (45), 25918–25923.

三、合作者论文

[1]Che-Ning Yeh, Kalyan Raidongia, Jiaojing Shao, Quan-Hong Yang, and Jiaxing Huang*, “On the origin of the stability of graphene-oxide membranes in water”, Nature Chemistry, 2015, 7, 166-170.  (SCI, IF= 25.325)

[2]Deepti Krishnan, Kalyan Raidongia, Jiaojing Shao, and Jiaxing Huang*, “Graphene Oxide Assisted Hydrothermal Carbonization of Carbon Hydrates”, ACS Nano, 2014, 8, 449-457. (SCI, IF= 12.881)

[3]Wei Lv, Zhengjie Li, Guangmin Zhou, Jiao-Jing Shao, Debin Kong, Xiaoyu Zheng, Baohua Li, Feng Li, Feiyu Kang, Quan-Hong Yang*, “Tailoring Microstructure of Graphene-Based Membrane by Controlled Removal of Trapped Water Inspired by the Phase Diagram”, Advanced Functional Materials, 2014, 24, 3456–3463. (SCI, IF= 11.805)

[4]Xiaoyu Zheng, Wei Lv, Ying Tao, Jiao-Jing Shao, Chen Zhang, Donghai Liu, Jiayan Luo, Da-Wei Wang, Quan-Hong Yang*, “Oriented and Interlinked Porous Carbon Nanosheets with an Extraordinary Capacitive Performance”, Chemistry of Materials, 2014, 26 (23), 6896–6903. (SCI, IF= 8.354)

[5]Li-Fang Zhang, Wei Wei, Wei Lu, Jiao-Jing Shao, Hong-Da Du and Quan-Hong Yang*, “Graphene-based macroform: Preparation, properties and applications”, New Carbon Materials, 2013, 28(3), 161-171. (SCI, IF= 0.979)

[6]Hui Wu,Wei Lv, Jiao-Jing Shao, Chen Zhang, Ming-bo Wu, Bao-hua Li, Quan-Hong Yang*, “pH-dependent size, surface chemistry and electrochemical properties of graphene oxide”, New Carbon Materials, 2013, 28(5), 327-335. (SCI, IF= 0.979)

[7]Li, Z.; Lv, W.; Zhang, C.; Qin, J.; Wei, W.; Shao, J.; Wang, D.; Li, B.; Kang, F.; Yang, Q.-H.* Nanospace-confined formation of flattened Sn sheets in pre-seeded graphenes for lithium ion batteries, Nanoscale, 2014, 6, 9554-9558. (SCI, IF= 7.394)

年来获得发明专利、科研(教学)成果奖及成果推广情况

一、获奖情况

2013年度天津市自然科学奖一等奖,项目名称:石墨烯基碳纳米材料的宏量制备、界面组装和应用(8/9

二、授权专利

[1]邵姣婧,陈祥荣,吴海龙,伍欢羽,一种柔性超级电容器的构建方法,专利号ZL 201610250044.9,授权时间20180421

[2]邵姣婧,陈祥荣,罗顺,一种石墨烯基电极材料的制备及电容器的构建方法,专利号ZL 201610248510.X,授权时间20180413

[3]邵姣婧,向婷,吴嫣琳,伍欢羽,吴海龙,一种石墨烯基薄膜柔性超级电容器的构建方法,专利号ZL 201610250256.7 ,授权时间20180320

[4]邵姣婧,向婷,吴嫣琳,伍欢羽,吴海龙,一种石墨烯/聚苯胺复合薄膜电极的制备方法,专利号ZL 201610250115.5,授权时间20180413

[5]邵姣婧,杨乐,赵丽红,丁彬,刘美丽,田连玉,一种粘土纤维的制备方法,专利号ZL 201610882979.9,授权时间20191203

[6]邵姣婧,吴道义,田连玉,赵丽红,刘美丽,叶伟彬,一种基于二维纳米粘土片层的阻燃纸的制备方法,专利号ZL 201711001150.4,授权时间20200214日(IPC分类号:D21H27/00 ; D21F11/00 ; D21H17/69 ; D21H17/68

[7]邵姣婧,刘美丽,龙翔,一种石墨烯和聚苯胺复合纤维电极材料的制备方法,专利号ZL 202010715404.4,授权时间 20211207日(IPC分类号:H01G11/26 ; H01G11/36 ; H01G11/40 ; H01G11/48 ; H01G11/86

[8]邵姣婧,唐晓宁,一种手撕面包状的疏松层状石墨烯气凝胶的制备方法,专利号ZL 201810105083.9,授权时间20210325日。(IPC分类号:C01B32/184

[9]邵姣婧,周文华,一种基于二维纳米粘土的锂硫电池隔膜阻挡层的制备方法,专利号ZL 202010383547.X,授权时间20220517日(IPC分类号:H01M2/14(2006.01); H01M2/16(2006.01); H01M10/052(2010.01)

学术兼职及荣誉称号

贵州省百层次创新型人才、贵州省巾帼建功标兵、贵州省青年科技奖、贵州省优秀青年科技人才、2015年天津大学优秀博士学位论文奖、2015年度贵州大学卓越基金青年教师类 “一等奖、贵州大学国华奖。



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