基本信息
王金清 男 博导 中国科学院兰州化学物理研究所
电子邮件: jqwang@licp.cas.cn
通信地址: 兰州市城关区天水中路18号理化楼
邮政编码: 730000
电子邮件: jqwang@licp.cas.cn
通信地址: 兰州市城关区天水中路18号理化楼
邮政编码: 730000
招生信息
招生专业
080502-材料学
070304-物理化学(含:化学物理)
085204-材料工程
070304-物理化学(含:化学物理)
085204-材料工程
招生方向
摩擦化学和物理
功能纳米材料
特种润滑材料
纳米材料
功能纳米材料
特种润滑材料
纳米材料
教育背景
学历
-- 研究生
学位
-- 博士
专利与奖励
专利成果
[1] 刘淑文, 李章朋, 王金清, 杨生荣. 基于MXene传导层的全固态聚合物膜离子选择性电极对不同介质水体中离子的检测方法. CN202210876686.5, 2022-10-14.[2] 王金清, 杨高闯, 杨生荣, 马立民, 李章朋. 一种纯石墨烯气凝胶及其制备方法. CN202210889028.X, 2022-09-26.[3] 李章朋, 刘淑文, 王金清, 杨生荣. MXene无溶剂纳米流体在摩擦学领域的应用. ZL202210703776.4, 2022-09-02.[4] 王金清, 杨生荣, 马立民. 柔性传感器及其设计方法. 202210642842.1, 2022-06-08.[5] 王金清, 陈天弟, 杨生荣, 李章朋, 马立民. 一种高强度共晶凝胶及其制备方法和应用、应变传感器. ZL202210119819.4, 2022-05-10.[6] 王金清, 陈天弟, 杨生荣, 马立民, 李章朋. 一种柔性共晶凝胶及其制备方法和应用、应变传感器. CN: CN114015111A, 2022-02-08.[7] 王金清, 陈天弟, 杨生荣, 李章朋, 马立民. 一种GO/MXene复合气凝胶及其制备方法和多环境传感应用. CN: ZL202111226585.5, 2022-01-28.[8] 王金清. 一种氧化石墨烯包覆的聚四氟乙烯复合材料及其制备方法和应用. ZL202210057866.0, 2022-01-09.[9] 王金清, 杨亚文, 马立民, 贾卫红, 王宏刚, 杨生荣. 一种MXene基复合润滑涂层的制备方法和应用. CN: CN113800519A, 2021-12-17.[10] 王金清, 罗榕, 马立民, 李章朋, 杨生荣. 一种三维石墨烯超弹体及其制备方法和应用、柔性压阻式传感器. CN: ZL202111000795.2, 2021-11-30.[11] 李章朋, 苗晓南, 王金清. 一种MXene/GO复合涂层及其制备方法和应用. CN: CN113355718A, 2021-09-07.[12] 王金清, 吴献章, 杨生荣. 一种三维石墨烯/碳纳米管气凝胶及其制备方法和应用、柔性传感器. CN: CN113233445A, 2021-08-10.[13] 王金清, 陈天弟, 杨生荣. 一种柔性三维石墨烯气凝胶及其制备方法和应用、柔性三维石墨烯基压阻式传感器及其应用. CN: CN113184832A, 2021-07-30.[14] 王宏刚, 王娜, 王金清, 任俊芳, 高贵, 陈生圣, 赵更锐, 刘文广. 聚四氟乙烯基核壳型介孔复合材料及其制备方法、浸油介孔复合材料及应用. CN: CN112961536A, 2021-06-15.[15] 王宏刚, 王娜, 王金清, 任俊芳, 高贵, 陈生圣, 赵更锐, 杨亚文, 王瑾, 沈家骕. 一种聚四氟乙烯基核壳纳米复合材料及其制备方法和应用. CN: CN111286047B, 2021-05-04.[16] 赵更锐, 王宏刚, 陈生圣, 任俊芳, 高贵, 王金清, 杨生荣. 一种基于复合微纳米纤维的柔性力敏传感器及其制备方法. CN: CN111595506B, 2021-04-27.[17] 王宏刚, 王娜, 王金清, 任俊芳, 高贵, 陈生圣, 赵更锐. 一种聚四氟乙烯核壳型复合粒子的制备方法. CN: CN110818844A, 2020-02-21.[18] 王金清, 徐海燕, 杨生荣. 一种磁性无机黏土-石墨烯复合破乳材料的制备及其应用. CN: CN110639240A, 2020-01-03.[19] 王金清, 吴献章, 杨生荣. 一种低温自愈合聚合物弹性体的制备方法. CN: CN110437453A, 2019-11-12.[20] 王金清, 吴献章, 杨生荣. 一种室温快速自愈合聚合物弹性体的制备方法及其应用. CN: CN109912765A, 2019-06-21.[21] 王金清, 徐海燕, 杨生荣. 一种可磁性回收的硅藻土复合破乳材料的制备方法及应用. CN: CN109794080A, 2019-05-24.[22] 王金清, 强睿斌, 侯凯明, 杨生荣. 一种以石墨烯量子点为添加剂的水润滑剂的制备及其应用. CN: CN109722321A, 2019-05-07.[23] 王金清, 吴献章, 杨生荣. 一种双物理交联自愈合聚合物弹性体的制备方法及其应用. CN: CN109486166A, 2019-03-19.[24] 王金清, 徐海燕, 杨生荣, 贾卫红. 一种可磁性回收的四氧化三铁/多壁碳纳米管复合材料及其应用. CN: CN109260768A, 2019-01-25.[25] 王金清, 杨启毅, 杨生荣, 贾卫红. 一种可磁性分离的四氧化三铁/磷酸化石墨烯复合纳米材料及其应用. CN: CN108837799A, 2018-11-20.[26] 王金清, 吴献章, 杨生荣. 一种三维石墨烯/碳纳米管弹性体及其在柔性压阻式传感器中的应用. CN: CN108760101A, 2018-11-06.[27] 王金清, 杨启毅, 杨生荣, 贾卫红. 一种二维氮化碳的绿色经济制备方法. CN: CN108502856A, 2018-09-07.[28] 王宏刚, 任俊芳, 高贵, 陈生圣, 杨生荣, 王金清. 发动机低摩擦轴瓦及其制备方法. CN: CN106321635A, 2017-01-11.[29] 马立民, 王金清, 杨生荣. 一种疏水亲油油水分离材料的制备方法. CN: CN105617718A, 2016-06-01.[30] 王金清, 侯凯明, 杨生荣, 方治文, 刘超, 张敏. 一种超薄氟化石墨烯复合润滑薄膜的制备方法. CN: CN105602298A, 2016-05-25.[31] 王金清, 叶相元, 杨生荣, 方治文, 刘超, 张敏. 一种具有优异抗磨性能的聚酰亚胺/氟化石墨烯复合耐磨涂层及其制备方法. CN: CN105524547A, 2016-04-27.[32] 王金清, 公培伟, 杨生荣. 水溶性的氟含量可控的氟化石墨烯量子点的制备方法. CN: CN105460920A, 2016-04-06.[33] 王金清, 黄敬霞, 白国英, 杨生荣. 一种石墨烯/氧化锆纳米复合润滑材料的制备方法. CN: CN105219478A, 2016-01-06.[34] 王金清, 林茜茜, 杨生荣, 范增杰, 刘斌. 一种芦荟/海藻酸钠双层水凝胶敷料的制备方法. CN: CN105079863A, 2015-11-25.[35] 王金清, 公培伟, 杨生荣. 一种水溶性双色氟化石墨烯量子点的制备方法. CN: CN104944403A, 2015-09-30.[36] 王金清, 公培伟, 杨生荣. 一种快速高效制备氟含量可调氟化石墨烯的方法. CN: CN104944402A, 2015-09-30.[37] 王宏刚, 慕波, 任俊芳, 杨生荣, 王金清, 高贵, 陈生圣. 一种具有高承载力及自润滑性的水润滑轴承. CN: CN103788623A, 2014-05-14.[38] 王金清, 李章朋, 杨生荣, 刘胜. 由石墨烯和二氧化锰组成的复合电极材料的制备方法. CN: CN102468057A, 2012-05-23.[39] 王金清, 刘胜, 杨生荣. 一种含有石墨烯复合薄膜材料的合成方法. CN: CN102061504A, 2011-05-18.[40] 王金清, 欧军飞, 杨生荣, 周金芳. 铝表面抗腐蚀多层有机复合薄膜的制备方法. CN: CN102061479A, 2011-05-18.[41] 王金清, 刘胜, 陈淼, 李进都, 杨生荣. 一种茂铁偶氮苯肽核酸单体及其制备方法. CN: CN101735281A, 2010-06-16.[42] 杨生荣, 王金清, 刘晓红. 制备ZrO 2 /全氟聚醚复合润滑薄膜的方法. CN: CN1635064A, 2005-07-06.[43] 杨生荣, 王金清, 刘晓红. 制备ZrO 2 /全氟聚醚复合润滑薄膜的方法. 中国: CN1635064, 2005-07-06.[44] 杨生荣, 王金清, 陈淼, 徐洮, 薛群基. 在功能化有机硅烷自组装单层薄膜表面制备氧化锆陶瓷薄膜的方法. CN: CN1424152A, 2003-06-18.[45] 杨生荣, 王金清, 陈淼, 徐洮. 固体薄膜表面脂肪酸自组装单分子超薄润滑膜的制备方法. CN: CN1358804A, 2002-07-17.
出版信息
发表论文
[1] Chemical Engineering Journal. 2023, [2] Jinshan He, Limin Ma, Yawen Yang, Weihong Jia, Qi Zhou, Shengrong Yang, Jinqing Wang. Tribological properties of physically modified fluorinated graphene and soluble starch hybrid as water-based lubricating additive system. TRIBOLOGY INTERNATIONAL. 2023, 183: http://dx.doi.org/10.1016/j.triboint.2023.108412.[3] Yan, Mengting, Jia, Weihong, Yang, Yawen, Zhou, Qi, Ma, Limin, Wang, Jinqing. Preparation and Heat Dissipation Performance of Vertical Graphene Nanosheets/Carbon Fibers Composite Film. COATINGS[J]. 2023, 13(2): http://dx.doi.org/10.3390/coatings13020407.[4] Yu, Shengfang, Yang, Yawen, Zhu, Jinyu, Ma, Limin, Jia, Weihong, Zhou, Qi, Wang, Jinqing. Wear and anticorrosive properties of graphene oxide-cellulose nanofiber composite coatings. MATERIALS CHEMISTRY AND PHYSICS[J]. 2023, 305: http://dx.doi.org/10.1016/j.matchemphys.2023.128002.[5] Jing Tang, Shuwen Liu, Wen Liu, Yaochen Wang, Long Li, Zhangpeng Li, Jinqing Wang. Comparative study on tribological performance and mechanism of eco-friendly solvent-free covalent MXene nanofluids in glycerin and polyethylene glycol. TRIBOLOGY INTERNATIONAL. 2023, 190: http://dx.doi.org/10.1016/j.triboint.2023.109051.[6] Applied Surface Science. 2023, [7] Gao, Qiulong, Liu, Shuwen, Hou, Kaiming, Miao, Xiaonan, Li, Zhangpeng, Wang, Jinqing. Tribological properties of MoSx/rGO nanohybrids as additives in deep eutectic solvent. TRIBOLOGY INTERNATIONAL[J]. 2023, 186: http://dx.doi.org/10.1016/j.triboint.2023.108652.[8] Zhang, Xiao, Liu, Liangyun, Zhao, Tingting, Chen, Xidong, Lin, Shangrong, Wang, Jinqing, Mi, Jun, Liu, Wendi. GWL_FCS30: a global 30 m wetland map with a fine classificationsystem using multi-sourced and time-series remote sensing imagery in 2020. EARTH SYSTEM SCIENCE DATA[J]. 2023, 15(1): 265-293, [9] Nano Research. 2023, [10] Wang, Mengjiao, Li, Zhangpeng, Wang, Jinqing, Yang, Shengrong. Iron ions induced self-assembly of graphene oxide lubricating coating with self-adapting low friction characteristics. CARBON[J]. 2023, 201: 1151-1159, http://dx.doi.org/10.1016/j.carbon.2022.10.013.[11] Shengfang Yu, Yawen Yang, Limin Ma, Weihong Jia, Qi Zhou, Jinyu Zhu, Jinqing Wang. SiC nanowires enhanced graphene composite coatings with excellent tribological and anticorrosive properties. TRIBOLOGY INTERNATIONAL. 2023, 188: http://dx.doi.org/10.1016/j.triboint.2023.108894.[12] Zhao, Tingting, Zhang, Xiao, Gao, Yuan, Mi, Jun, Liu, Wendi, Wang, Jinqing, Jiang, Mihang, Liu, Liangyun. Assessing the Accuracy and Consistency of Six Fine-Resolution Global Land Cover Products Using a Novel Stratified Random Sampling Validation Dataset. REMOTE SENSING[J]. 2023, 15(9): http://dx.doi.org/10.3390/rs15092285.[13] 王保民, 李义云, 陈天弟, 汪秉吉, 刘雨富, 马立民, 杨生荣, 高欣, 王金清. 石墨烯气凝胶全柔性触觉传感器的设计、组装及性能. 中国科学:技术科学[J]. 2023, 53(4): 499-508, http://lib.cqvip.com/Qikan/Article/Detail?id=7109615678.[14] Hu, Xunxiang, Tan, Lingling, Wu, Xianzhang, Wang, Jinqing. Interlayer engineering in 3D graphene skeleton realizing tunable electronic properties at a highly controllable level for piezoresistive sensors. NANO RESEARCH[J]. 2023, 16(7): 8512-8521, http://lib.cqvip.com/Qikan/Article/Detail?id=7110124799.[15] He, Xiu, Li, Zhide, Zeng, Fan, Hu, Xunxiang, Zhang, Xinyue, Zhu, Yuan, Wu, Xianzhang, Wang, Jinqing, Yang, Shengrong. Unraveling the role of ionic bonding interactions in electronic properties of graphene composite aerogels to enhance piezoresistive performance. COMPOSITES PART B-ENGINEERING[J]. 2023, 258: http://dx.doi.org/10.1016/j.compositesb.2023.110695.[16] Chemical Engineering Journal. 2023, [17] Chemical Engineering Journal. 2023, [18] Xiaonan Miao, Zhangpeng Li, Shuwen Liu, Jinqing Wang, Shengrong Yang. MXenes in tribology: Current status and perspectives. ADVANCED POWDER MATERIALS[J]. 2023, 2(2): 100092, http://dx.doi.org/10.1016/j.apmate.2022.100092.[19] Yang, Gaochuang, Qin, Xiaoli, Chen, Tiandi, Wang, Jinqing, Ma, Limin, Yang, Shengrong. Ultralight, superelastic pure graphene aerogel for piezoresistive sensing application. JOURNAL OF MATERIALS SCIENCE. 2023, [20] 王金清. Biodegradable and biocompatible alginate/gelatin/MXene composite membrane with efficient osteogenic activity and its application in guided bone regeneration. Journal of Biomaterial Science, Polymer Edition[J]. 2023, [21] Zhu, Jinyu, Yang, Yawen, Ma, Limin, Jia, Weihong, Hou, Kaiming, Li, Zhangpeng, Wang, Jinqing, Yang, Shengrong. Wear-resistance enhancement of graphene oxide/zirconia nanosheets composite coatings based on 2D-2D interlayer sliding structure. SURFACE & COATINGS TECHNOLOGY[J]. 2023, 453: http://dx.doi.org/10.1016/j.surfcoat.2022.129151.[22] Tribology International. 2023, [23] Tribology International. 2023, [24] ACS Sustainable Chemistry and Engineering. 2023, [25] 中国科学·技术科学. 2023, [26] Materials Today Communications. 2023, [27] Composites Part B: Engineering. 2023, [28] Luo, Rong, He, Yan, Liu, Hong, Wang, Jinqing, Yang, Shengrong. "Particle-on-plane" hybrid of ZnO-reduced graphene oxide: Roles on mechanical and tribological performances of thermosetting polyimide. POLYMER ENGINEERING AND SCIENCE[J]. 2022, 62(7): 2312-2321, http://dx.doi.org/10.1002/pen.26011.[29] Li, Zhangpeng, Wang, Jinqing, Yang, Yawen, Zhu, Jinyu, Hou, Kaiming, Ma, Limin, Jia, Weihong, Wang, Honggang, Yang, Shengrong. Friction-induced construction of PTFE-anchored MXene heterogeneous lubricating coating and its in-situ tribological transfer mechanism. CHEMICAL ENGINEERING JOURNAL[J]. 2022, 442: http://dx.doi.org/10.1016/j.cej.2022.136238.[30] Chen, Tiandi, Yang, Gaochuang, Li, Yiyun, Li, Zhangpeng, Ma, Limin, Yang, Shengrong, Wang, Jinqing. Temperature-adaptable pressure sensors based on MXene-coated GO hierarchical aerogels with superb detection capability. CARBON[J]. 2022, 200: 47-55, http://dx.doi.org/10.1016/j.carbon.2022.08.002.[31] Ma, Limin, Jia, Weihong, Hou, Kaiming, Yang, Yawen, Li, Zhangpeng, Yang, Shengrong, Wang, Jinqing. Similar chemical composition with different tribological properties: Influences of C-F bond strength and carbon-skeleton structure on fluorinated graphene and PTFE. TRIBOLOGY INTERNATIONAL[J]. 2022, 165: http://dx.doi.org/10.1016/j.triboint.2021.107250.[32] Xiaonan Miao, Shuwen Liu, Limin Ma, Yawen Wang, Jinyu Zhu, Zhangpeng Li, Jinqing Wang. Ti3C2-graphene oxide nanocomposite films for lubrication and wear resistance. Tribology International[J]. 2022, 167: 107361, [33] Wang, Tingting, Wang, Jinqing, Li, Zhangpeng, Yue, Mingqiang, Qing, Xiaoli, Zhang, Pengxia, Liao, Xiaozhu, Fan, Zengjie, Yang, Shengrong. PVA/SA/MXene dual-network conductive hydrogel for wearable sensor to monitor human motions. JOURNAL OF APPLIED POLYMER SCIENCE[J]. 2022, 139(7): [34] 王金清. A feasible construction strategy of GO-based hetero-film with long service life at multi-environments: effective friction transfer application. Tribology International[J]. 2022, 169: 107485, [35] Tiandi Chen, Xiaoxue Mai, Limin Ma, Zhangpeng Li, Jinqing Wang, Shengrong Yang. Poly(vinyl alcohol)/Gelatin-Based Eutectogels for the Sensitive Strain Sensor with Recyclability and Multienvironmental Suitability. ACS Applied Polymer Materials[J]. 2022, 4(5): 3982-3993, [36] Rong Luo, Zhangpeng Li, Xianzhang Wu, Hong Hu, Limin Ma, Jianyu Wu, Ganlin Qin, Jinqing Wang, Shengrong Yang. Super durable graphene aerogel inspired by deep-sea glass sponge skeleton. Carbon[J]. 2022, 191: 153-3, [37] Wu, Xianzhang, Pi, Wenjian, Hu, Xunxiang, He, Xiu, Zhu, Yuan, Wang, Jinqing, Yang, Shengrong. Heat- and freeze-tolerant organohydrogel with enhanced ionic conductivity over a wide temperature range for highly mechanoresponsive smart paint. JOURNAL OF COLLOID AND INTERFACE SCIENCE[J]. 2022, 608: 2158-2168, http://dx.doi.org/10.1016/j.jcis.2021.10.097.[38] 王金清. Graphene/MXene Composite Aerogels Reinforced by Polyimide for Pressure Sensing. ACS APPLIED NANO MATERIALS[J]. 2022, [39] 王金清. A novel water-based lubricating additive of GO@PTFE: superior tribological performances from the synergistic effect. 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NEW JOURNAL OF CHEMISTRY[J]. 2021, 45(10): 4647-4657, http://dx.doi.org/10.1039/d0nj05880g.[43] Chen, Tiandi, Wang, Jinqing, Wu, Xianzhang, Li, Zhangpeng, Yang, Shengrong. Ethanediamine induced self-assembly of long-range ordered GO/MXene composite aerogel and its piezoresistive sensing performances. APPLIED SURFACE SCIENCE[J]. 2021, 566(-): http://dx.doi.org/10.1016/j.apsusc.2021.150719.[44] 王婷婷, 王金清, 岳铭强, 范增杰, 杨生荣. 负载纳米银/石墨烯复合物的海藻酸钠水凝胶薄膜的制备及应用. 复合材料学报[J]. 2021, 38(9): 3008-3017, [45] Chen, Tiandi, Yang, Gaochuang, Wang, Jinqing, Ma, Limin, Yang, Shengrong. Surfactant stabilized GO liquid crystal for constructing double-walled honeycomb-like GO aerogel with super-sensitivity for fingertip pulse monitoring. CARBON[J]. 2021, 184(-): 53-63, http://dx.doi.org/10.1016/j.carbon.2021.08.010.[46] Qiang, Ruibin, Sun, Weiming, Hou, Kaiming, Li, Zhangpeng, Zhang, Jinyun, Ding, Yong, Wang, Jinqing, Yang, Shengrong. 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指导学生
现指导学生
密永娟 硕士研究生 070304-物理化学
公培伟 硕士研究生 070304-物理化学