张亚婷,山东巨野人,中共党员,博士,三级教授,博士生导师。现任西安科技大学化学与化工学院院长、自然资源部煤炭资源勘查与综合利用重点实验室副主任、陕西省“煤基功能炭材料”重点科技创新团队负责人。全国石油和化工教育优秀教学管理人员,教育部工程教育专业认证专家组成员,西安科技大学首届“胡杨名师”特聘教授、“化学工程与工艺”国家级一流专业和特色专业负责人、《化工原理》省级一流课程负责人、化学工程与技术一级学科带头人、功能炭材料研究所所长。全国党建工作样板支部书记、全国高校“双带头人”教师党支部书记。
兼任中国化工教育协会理事、中国化工学会工程热化学专业委员会特聘副主任委员、中国化工学会工程伦理教育工作委员会委员、中国煤炭工业技术委员会煤化工与新材料专家委员会委员、煤炭教育“十四五”规划化工专业教材编审委员会副主任、中国石墨烯产业联盟国际标准工作委员会委员、全国煤化工信息总站技术委员、陕西省化工学会理事,《煤化工》、《炭素技术》和《洁净煤技术》期刊编委,New Carbon Mater.、ACS Appl. Mater. Inter.等国内国际知名期刊特约审稿人。
主要研究方向为煤炭清洁高效利用、先进碳基纳米能源与催化材料(锂/钠离子电池正负极材料、CO2催化转化、光电分解水制氢)、化工固废提质分离与高值材料化、化工过程节能与优化等。近年来,主持承担国家自然科学基金联合基金重点项目、面上项目等4项,陕西省重点研发计划、陕西省创新能力支撑计划和西咸新区秦创原春种基金等省部级科研和科技转化项目10余项。荣获中国煤炭工业协会科学技术二等奖1项(第一完成人)、陕西省科学技术二等奖1项(第一完成人)、陕西省科学技术三等奖1项、陕西高等学校科学技术研究优秀成果奖2项、陕西石化科学技术一等奖1项。在国内外高水平学术期刊Carbon、Ind. Eng. Chem. Res.、ACS Sustain. Chem. Eng.、《煤炭学报》、《化工学报》等发表论文100余篇,其中SCI/EI收录80余篇;出版专著和教材6部;授权国家发明专利20余项。研究成果“煤基石墨烯可控制备关键技术开发” 经中国煤炭工业协会鉴定达到国际领先水平。入选2024年度“全球前2%顶尖科学家榜单”。荣获陕西省本科高校课堂教学创新大赛一等奖、西安科技大学“优秀共产党员、教学名师、优秀教师、课堂教学质量一等奖、优秀硕士论文指导教师、大学生创新创业优秀指导教师”等荣誉表彰多次。
一、研究领域及方向:
1、煤炭高效洁净转化基础研究
2、功能炭材料与纳米能源材料制备与应用
3、二氧化碳光电还原和氧还原催化剂研究
4、锂(钠)离子电池和超级电容器电极材料研究
二、 主要获奖:
1、 2024年,中国煤炭工业协会科学技术二等奖(第一完成人);
2、 2024年,中国石油和化学工业联合会科学技术三等奖(第一完成人);
3、 2024年,陕西石化科学技术一等奖(第一完成人);
4、 2023年,陕西高等学校科学技术研究优秀成果一等奖(第一完成人);
5、 2018年,陕西省科学技术二等奖(第一完成人);
6、 2012年,陕西省科学技术三等奖;
三、代表性学术论文:
[1] Keke Li, Yating Zhang*, Jia Jia, et al. 2D/2D Carbon nitride/Zn-doped bismuth vanadium oxide S-scheme heterojunction for enhancing photocatalytic CO2 reduction into methanol[J]. Industrial & Engineering Chemistry Research, 2023, 62(13): 5552-5562. (SCI, IF = 4.326, Q2)
[2] Yating Zhang*, Peng Wang, Juan Yang, et al. Mechanochemical coordination self-assembly for Cobalt-based metal organic framework-derived bifunctional oxygen electrocatalysts[J]. Journal of Colloid and Interface Science, 2022, 613: 733-746. (SCI, IF = 9.965, Q1)
[3] Yating Zhang*, Mengnan Yang, Peng Wang, et al. Co/N-codoped carbon nanotube hollow polyhedron hybrid derived from salt-encapsulated core-shell ZIF-8@ZIF-67 for efficient oxygen reduction reaction[J]. Journal of Alloys and Compounds, 2022, 904: 164083. (SCI, IF = 6.371, Q1)
[4] Yating Zhang*, Nana Zhang, Peng Wang, et al. A novel 3D hybrid carbon-based conductive network constructed by bimetallic MOF-derived CNTs embedded nitrogen-doped carbon framework for oxygen reduction reaction[J]. International Journal of Hydrogen Energy, 2022, 47: 5474-5485. (SCI, IF = 7.139, Q2)
[5] Yating Zhang*, Ting Zhang, Jia Jia, et al. Construction of Zn0.2Cd0.8S/g-C3N4 nanosheet array heterojunctions toward enhanced photocatalytic reduction of CO2 in visible light[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 655: 130240. (SCI, IF = 5.518, Q2)
[6] Yating Zhang*, Lisi Zheng, Jia Jia, et al. Construction of 2D-coal-based graphene/2D-bismuth vanadate compound for effective photocatalytic CO2 reduction to CH3OH[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 639: 128321. (SCI, IF = 5.518, Q2)
[7] Yating Zhang*, Zhanrui Zhang, Youyu Zhu, et al. N-doped graphene encapsulated MoS2 nanosphere composite as a high-performance anode for lithium-ion batteries[J]. Nanotechnology, 2022, 33(23): 235703. (SCI, IF = 3.953, Q2)
[8] Yating Zhang*, Nana Zhang, Lei Shen, et al. Ascorbic acid-modified dual-metal-organic-framework derived C-Fe/Fe3O4 loaded on a N-doped graphene framework for enhanced electrocatalytic oxygen reduction[J]. New Journal of Chemistry, 2022, 46(33): 15860-15870. (SCI, IF = 3.925, Q2)
[9] Jia Jia, Lisi Zheng, Yating Zhang*, et al. Two-electron transfer mechanism from 3D/3D nickel selenide/MoS2 heterostructure accelerates photocatalytic hydrogen evolution and tetracycline hydrochloride removal[J]. Chemical Engineering Journal, 2022, 429: 132432. (SCI, IF = 16.744, Q1)
[10] Keke Li, Yating Zhang*, Peng Wang, et al. Core-Shell ZIF-67@ZIF-8-derived multi-dimensional cobalt-nitrogen doped hierarchical carbon nanomaterial for efficient oxygen reduction reaction[J]. Journal of Alloys and Compounds, 2022, 903: 163701. (SCI, IF= 6.371, Q1)
[11] Yingfeng Duan, Lina Wang, Yating Zhang*, et al. The study of C3H6 impact on selective catalytic reduction by ammonia (NH3-SCR) performance over Cu-SAPO-34 catalysts[J]. Catalysts, 2021, 11(11): 1327. (SCI, IF= 4.501, Q2)
[12] Jiangtao Cai, Yunyun Ding, Yating Zhang*, et al. Amorphous CoMoS4 nanoparticles attached to CNTs@PDA as high-performance anode materials for lithium-ion batteries[J]. Energy & Fuels, 2022, 36(7): 3964-3975. (SCI, IF = 4.654, Q2)
[13] Jiangtao Cai, Yunyun Ding, Yating Zhang*, et al. Rational design of CNTs@FeCo2O4 as anode materials for lithium-ion batteries[J]. Journal of Materials Science-Materials in Electronics, 2022, 33(16): 12832-12845. (SCI, IF = 2.779, Q2)
[14] Jianlan Zhang, Youyu Zhu, Yating Zhang*, et al. Copper-catalyzed oxidative amidation for the synthesis of alpha-ketoamides from alpha-diazoketones with amines using oxygen as oxidant[J]. Asian Journal of Organic Chemistry, 2022, 11(8): e202200264. (SCI, IF= 3.116, Q2)
[15] Yating Zhang*, Peng Wang, Juan Yang, et al. Decorating ZIF-67-derived cobalt-nitrogen doped carbon nanocapsules on 3D carbon frameworks for efficient oxygen reduction and oxygen evolution[J]. Carbon, 2021, 177: 344-356. (SCI, IF = 11.307, Q1)
[16] Yating Zhang*, Zhanrui Zhang, Yongling Zhang, et al. Preparation of a sulfur-doped graphene-wrapped FeS2 microsphere composite material for lithium-ion batteries[J]. Energy & Fuels, 2021, 35: 20330-20338. (SCI, IF = 4.654, Q2)
[17] Yating Zhang*, Wei Liu, Youyu Zhu, et al. Facile self-assembly solvothermal preparation of CuO/Cu2O/coal-based reduced graphene oxide nanosheet composites as an anode for high-performance lithium-ion batteries[J]. Energy & Fuels, 2021, 34(10): 8961-8969. (SCI, IF = 4.654, Q2)
[18] Rui Guo, Yating Zhang*, Zhibin Lei*, et al. Filling Ti3C2Tx nanosheets into melamine foam towards a highly compressible all-in-one supercapacitor[J]. Nano Research, 2021. (SCI, IF = 10.269, Q1)
[19] Youyu Zhu, Mingyue Wang, Yating Zhang*, et al. Nitrogen/oxygen dual-doped hierarchically porous carbon/graphene composite as high-performance anode for potassium storage[J]. Electrochimica Acta, 2021, 377: 138093. (SCI, IF = 7.336, Q1)
[20] Xinfu He, Xueying Long, Yating Zhang*, et al. Interconnected 3D Fe3O4/rGO as highly durable electrocatalyst for oxygen reduction reaction[J]. Journal of Alloys and Compounds, 2021, 855: 157422. (SCI, IF = 6.371, Q1)
[21] Meng Li, Doudou Lou, Yating Zhang*, et al. Deep dive on the proteome of salivary extracellular vesicles: comparison between ultracentrifugation and polymer-based precipitation isolation[J]. Analytical and Bioanalytical Chemistry, 2021, 413: 365-375. (SCI, IF= 4.478, Q2)
[22] Keke Li, Guoyang Liu, Yating Zhang*, et al. Coal-derived carbon nanomaterials for sustainable energy storage applications [J], New Carbon Materials, 2021, 36(1): 133-154. (SCI, IF= 3.7)
[23] 张亚婷, 李可可, 任绍昭, 等. 煤基石墨烯/Fe2O3自支撑电极的制备及其储锂性能[J]. 煤炭学报, 2021, 46(4): 1173-1181. (EI收录,T1类期刊)
[24] 党永强, 李博妮, 张亚婷*, 等. 铁基催化剂光催化还原CO2研究进展[J]. 化工学报, 2021, 72(10): 5016-5027. (EI收录, Top期刊)
[25] Yating Zhang*, Peng Wang, Juan Yang, et al. Fabrication of core-shell nanohybrid derived from iron-based metal-organic framework grappled on nitrogen-doped graphene for oxygen reduction reaction[J]. Chemical Engineering Journal, 2020, 401: 126001. (SCI, IF = 16.744, Q1)
[26] Yating Zhang*, Yongling Zhang, Kaibo Zhang, et al. Nitrogen-doped graphene nanosheets coated nano-spherical Fe3O4 from zeolitic imidazolate frameworks template as anode of lithium-ion batteries[J]. Energy & Fuels, 2020, 34(11): 14986-14994. (SCI, IF = 4.654, Q2)
[27] Yating Zhang*, Kaibo Zhang, Kaili Jia, et al. Facile synthesis 2D hierarchical structure of ultrahigh nitrogen-doped porous carbon graphene nanosheets as high-efficiency lithium-ion battery anodes[J]. Materials Chemistry and Physics, 2020, 251: 123043. (SCI, IF = 4.778, Q2)
[28] Juan Yang, Kaili Jia, Yating Zhang*, et al. Fabrication of nitrogen-doped porous graphene hybrid nanosheets from metal-organic frameworks for lithium-ion batteries[J]. Nanotechnology, 2020, 31(14): 145402. (SCI, IF = 3.953, Q2)
[29] 张亚婷, 张博超, 张建兰, 等. “自下而上”化学合成纳米石墨烯的研究进展[J]. 化工学报, 2020, 71(6): 2628-2642. (EI收录, Top期刊)
[30] Yating Zhang*, Keke Li, Shaozhao Ren, et al. Coal-derived graphene quantum dots produced by ultrasonic physical tailoring and their capacity for Cu(II) detection[J], ACS Sustainable Chemistry & Engineering, 2019,7(11): 9793-9799. (SCI, IF = 9.224, Q1)
[31] Yating Zhang*, Kaibo Zhang, Shaozhao Ren, et al. Preparation of coal-based graphene quantum dots/α-Fe2O3 nanocomposites and their lithium-ion storage properties[J], Fuel, 2019, 241: 646-652. (SCI, IF = 8.035, Q1)
[32] Yating Zhang*, Kaibo Zhang, Kaili Jia, et al. 3D nanoflower-like composite anode of α-Fe2O3/coal-based graphene for lithium-ion batteries[J]. Journal of Alloys and Compounds, 2019, 792: 828-834. (SCI, IF = 6.371, Q1)
[33] 张亚婷, 张凯博, 贾凯丽, 等. 柔性自支撑PDDA-Si/G纳米复合薄膜的制备及储锂性能[J]. 化工学报, 2018, 70(3): 1144-1151. (EI收录, Top期刊)
[34] 张亚婷, 贾凯丽, 刘国阳, 等. 煤热解气CVD法制备石墨烯的研究[J]. 炭素技术, 2018, 37(6): 30-34.
[35] 张亚婷, 任绍昭, 李景凯, 等. PANI/煤基石墨烯宏观体复合材料的制备及其电化学性能[J]. 化工学报, 2017, 68(11): 4316-4322. (EI收录, Top期刊, 封面论文)
[36] 张亚婷, 任绍昭, 党永强, 等. 煤基三维石墨烯基电极在不同电解液中的电化学性能[J]. 材料导报, 2017, 31(16): 1-5. (EI收录)
[37] Yongqiang Dang, Shaozhao Ren, Yating Zhang*, et al. Electrochemical and capacitive properties of carbon dots/reduced graphene oxide supercapacitors[J]. Nanomaterials, 2016, 6(11): 212. (SCI, IF = 5.719, Q2)
[38] 张亚婷, 李景凯, 刘国阳, 等. MnO2/煤基石墨烯纳米复合材料的制备及其电化学性能[J]. 新型炭材料, 2016, 5(31): 545-549. (SCI收录, 封面论文)
[39] 张亚婷, 付世启, 蔡江涛, 等. 煤基石墨烯/炭纳米纤维复合材料的制备及其电化学性能[J]. 炭素技术, 2016, 6(35): 12-16.
[40] 张亚婷, 李可可, 刘国阳, 等. 煤基石墨烯宏观体的制备及其在CO2光催化还原过程中的应用[J]. 新型炭材料, 2015, 6(30): 539-544. (SCI收录, 封面论文)
[41] 张亚婷, 张晓欠, 刘国阳, 等. 神府煤制备超细石墨粉[J]. 化工学报, 2015, 4(66): 1514-1520. (EI收录, Top期刊)
[42] 张亚婷, 李景凯, 周安宁, 等. Fe2O3煤基石墨烯纳米复合材料制备及其电化学性能研究[J]. 化工新型材料, 2015, 6(43): 104-107.
[43] 张亚婷, 周安宁, 张晓欠, 等. 以太西无烟煤为前驱体制备煤基石墨烯的研究[J]. 煤炭转化, 2013, 36(4): 57-61.
四、授权国家专利:
[1] 张亚婷, 李可可, 任绍昭, 等. 一种柔性自支撑锂离子电池负极材料及其制备方法:中国, ZL 201811224520.5[P], 20210420.
[2] 张亚婷, 张凯博, 贾凯丽, 等. 一种手套箱中组装扣式电池的辅助平台装置, ZL 201821088170.X[P], 20190329.
[3] 张亚婷, 任绍昭, 党永强, 等. 一种煤基石墨烯量子点的制备方法:中国, ZL 201710115960.6[P], 20190205.
[4] 张亚婷, 李可可, 刘国阳, 等. 石墨烯宏观材料光催化还原CO2制备甲醇的设备及方法:中国, ZL 201510852300.7[P], 20170905.
[5] 张亚婷, 李可可, 刘国阳, 等. 一种光催化还原CO2固定床反应装置:中国, ZL 201520970043.2[P], 20160413.
[6] 张亚婷, 张晓欠, 周安宁, 等. 一种烟煤及其煤岩组分的石墨化处理方法:中国, ZL 201410209453.5[P], 20160824.
[7] 张亚婷, 周安宁, 司云鹏, 等. 一种利用低阶煤制备石墨烯薄膜的装置及方法:中国, ZL 201510079962.5[P], 20160824.
[8] 张亚婷, 周安宁, 司云鹏, 等. 一种采用固体碳源制备石墨烯的化学气相沉积装置:中国, ZL 201520108560.9[P], 20150715.
[9] 张亚婷, 周安宁, 魏建国, 等. 一种紫外光/煤炭协同作用下CO2转化为甲醇的方法:中国, ZL 201210385369X[P], 20140702.
[10] 刘国阳, 张亚婷, 周安宁, 等. 一种粉煤分质转化耦合直接碳燃料电池的装置及方法:中国, ZL 201511024331X[P], 20180202.
[11] 刘国阳, 张亚婷, 谢之达, 等. 一种粉煤分质转化装置:中国, ZL 2015211327303[P], 20160615.
[12] 刘国阳, 张亚婷, 周安宁, 等. 一种实验室用固体氧化物燃料电池:中国, ZL 2015210526066[P], 20160525.
[13] 张建兰, 张亚婷, 蔡江涛, 等. 一种α-羰基酰胺化合物的制备方法:中国, ZL 2021105870720[P], 20220927.
[14] 张亚刚, 周安宁, 张亚婷, 等. 一种含有邻苯二酚、氨基和羧基的两种磷酰胆碱涂层的制备方法:中国, ZL 2020107040109[P], 20220121.
[15] 张建兰, 张亚婷, 张博超, 等. 一种利用煤焦油中多环芳烃菲构建六苯并蔻的制备方法, 201911333831X, 20191223.
五、主持科研项目
[1] 北京低碳清洁能源研究院合作项目:低碳院半自动化实验平台设计及导热膜服务的研究开发,2021/08-2022/12,45万元,主持。
[2] 西咸新区秦创原春种基金项目:煤基石墨烯改性防腐涂料关键技术及应用,2021/10-2023/10,50万元,主持。
[3] NSFC-山西煤基低碳联合基金项目(U1810113):煤基三维石墨烯宏观体的设计构筑及其光催化转化CO2的性能研究,2019/01-2021/12,61万元,主持。
[4] 陕西省自然科学基础研究计划-陕煤联合基金项目(2019JLP-12):煤基石墨烯规模制备及其高能量密度超级电容器基础研究,2019/01-2021/12,50万元,子课题负责人。
[5] NSFC-新疆联合基金重点支持项目(U1703251):新疆煤基碳纤维的结构、组成设计与应用基础研究,2018/01-2021/12,271万元,子课题负责人。
[6] 陕西省创新能力支撑计划项目(2019-TD-021):煤基功能炭材料创新团队,2019/08-2022/06,60万元,主持。
[7] 国家自然科学基金面上项目(21276207):煤基石墨烯的制备及其结构性能研究,2013/01-2016/12,78万元,主持。
[8] NSFC-新疆联合基金重点支持项目(U1203292):新疆煤基先进功能炭材料及其复合材料的制备与性能研究,2013/01-2016/12,265万元,子课题负责人。
[9] 陕西省2017年重点研发计划项目(2017DZCXL-GY-10-01-02):侏罗纪低变质煤超分子结构及其催化转化制高品质燃料和化学品新技术研究,2017/01-2019/12,105万元,子课题负责人。