
一、个人基本资料
姓名:肖勇
性别:男
出生年月:1980.2
籍贯:湖南隆回
职位:教授、硕士生导师
二、联系方式
邮箱:xiaoy@scau.edu.cn
通讯地址:华南农业大学材料与化学工程学院北楼734
邮编:510642
三、个人简述
肖勇,工学博士,教授、硕士生导师。长期从事生物质碳基材料、碳纳米材料及其复合材料的设计制备、结构调控与性能研究,重点围绕农林废弃物高值化利用、电化学储能、环境污染治理和碳点发光材料开展研究,形成了涵盖材料设计、制备、性能评价及应用探索的研究体系。近年来积极推动人工智能与材料科学交叉融合,运用机器学习、贝叶斯优化和量子化学计算开展材料筛选、性能预测与实验设计。主持国家自然科学基金青年及面上项目共4项、省市级项目2项。参与发表SCI收录论文180余篇,其中以第一或通讯作者在ACS Nano、Chemical Engineering Journal、ACS Sustainable Chemistry & Engineering、Journal of Materials Chemistry A、Carbon等期刊发表SCI收录论文50余篇;相关成果累计被引8000余次,H指数46;申请及授权专利共5件。作为主要完成人,获2025年度广东省科技进步二等奖(排名第六)、2021年度广东省自然科学二等奖(排名第三)和2018年度广东省技术发明二等奖(排名第八)。坚持科研与人才培养并重,已培养毕业硕士研究生10名,现指导研究生4名,其中1人获国家奖学金、1人获“85”奖助学金、3人获华南农业大学优秀硕士毕业论文。未来将继续聚焦绿色低碳材料与智能材料设计,为国家“双碳”战略、农业废弃资源高值化利用及绿色可持续发展提供科技支撑。
四、教育背景
2012年9月—2014年12月 华南农业大学 农业生物环境与能源工程 工学博士;
2003年9月—2006年6月 暨南大学 无机化学 理学硕士;
1999年9月—2003年6月 湖南文理学院 化学教育 理学学士
五、工作经历
2026年1月— 至今 华南农业大学材料与化学工程学院工作;
2015年1月— 2025年12月华南农业大学材料与能源学院工作;
2012年2月—2014年12月 华南农业大学理学院工作;
2006年7月—2012年1月 暨南大学化学系工作
六、科研方向
[1] 长期从事生物质碳基材料、碳纳米材料及其复合材料的设计制备、结构调控与性能研究。
[2] 重点围绕农林废弃物高值化利用、电化学储能、环境污染治理和碳点发光材料开展研究,形成了涵盖材料设计、制备、性能评价及应用探索的研究体系。
[3] 近年来积极推动人工智能与材料科学交叉融合,运用机器学习、贝叶斯优化和量子化学计算开展材料筛选、性能预测与实验设计。
七、科研论著
45. He, JY; Huang, Y; Mo, RM; Liang, ZH; Liang, YR; Cui, JH; Xiao, Y*. Defect-driven electron transfer for arsenic detoxification in iron-carbon materials. Environmental Research, 2026, 294, 123789.
44. Xie, MH; Li, FY; Li, YY; Qian, KS; Liang, YR; Lei, BF; Liu, YL; Cui, JH; Xiao, Y*. Iron-doped carbon dots nanozyme scavenged reactive oxygen species system for inhibiting effectively the uptake of arsenic in lettuce. Chemical Engineering Journal, 2025, 506, 159956.
43. Yang, HW; Wang, J; Mo, RM; Hu, PX; Liu, XR; Liu, YL; Cui, JH; Xiao, Y*. An intelligent approach: Integrating ChatGPT for experiment planning in biochar immobilization of soil cadmium. Separation and Purification Technology, 2025, 352, 128170.
42. Yang, HW; Ran, Z; Luo, YM; Liu, SY; Xu, WZ; Liu, JK; Cui, JH; Lei, BF; Hu, CF; Zhuang, JL; Liu, YL; Xiao, Y*. Exploration and Design of Carbon Dots-Based Long Afterglow Materials Using Active Machine Learning and Quantum Chemical Simulations, ACS Nano, 2024, 18, 29203-29213.
41. Xie, MH; Lin, HH; Liu, GC; Yang, HW; Hu, H; Dong, HW; Liu, YL; Liu, XR; Xiao, Y*. Nanoarchitectonics of porous carbon materials for supercapacitors using a strategy of direct mixing of biomass. Journal of Energy Storage, 2024, 96, 112670.
40. Yang, HW; Lin, HH; Yang, CL; Hu, H; Dong, HW; Liu, YL; Liu, XR; Cui, JH; Xiao, Y*. Structural regulation of carbon materials through hydrothermal mixing of biomass and its application in supercapacitors. Journal of Energy Storage, 2024, 83, 110688.
39. Yang, JW; Liu, XR; Liu, YL; Cui, JH; Xiao, Y*. Revolutionizing biochar synthesis for enhanced heavy metal adsorption: Harnessing machine learning and Bayesian optimization. Journal of Environmental Chemical Engineering, 2023, 11, 110593.
38. Lin, HH; Yang, JW; Feng, PY; Liu, GC; Liu, YL; Cui, JH; Liu, XR; Xiao, Y*. Structure Regulation and Application of Bagasse-Based Porous Carbon Material Based on H2O2-Assisted Hydrothermal Treatment. Energy & Fuels, 2023, 37, 11342-11354.
37. Liu, GC; Yang, JW; Wang, YT; Lin, HH; Zheng, MT; Hu, H; Dong, HW; Liu, XR; Liu, YL; Xiao, Y*. Green preparation of flake nano porous carbon: For sulfur scaffolds in high-performance lithium sulfur batteries. Journal of Energy Storage, 2023, 67, 107466.
36. Lin, HH; Tan, ZX; Yang, JW; Mo, RM; Liang, YR; Zheng, MT; Hu, H; Dong, HW; Liu, XR; Liu, YL; Xiao, Y*. Highly porous carbon material from polycyclodextrin for high-performance supercapacitor electrode. Journal of Energy Storage, 2022, 53, 105036.
35.Yang, JW; Chen, ZY; Lin, HH; Feng, PY; Xie, YJ; Liang, YR; Zheng, MT; Liu, XR; Liu, YL; Xiao, Y*. Exfoliating Waste Biomass into Porous Carbon with Multi-Structural Levels for Dual Energy Storage. ACS Applied Energy Materials, 2022, 5, 12090-12098.
34. Li, Y; Liang, YS; Liang, YR; Liu, YL; Xiao, Y*. Capillary enhanced hydrophilic block carbon material for binder-free supercapacitor electrode. Journal of Power Sources, 2021, 507, 230289.
33.Tan, ZX; Yang, JW; Liang, YR; Zheng, MT; Hu, H; Dong, HW; Liu, YL; Xiao, Y*. The changing structure by component: Biomass-based porous carbon for high-performance supercapacitors. Journal of Colloid and Interface Science, 2021, 585, 778-786.
32.Yang, JW; Tan, ZX; Chen, X; Liang, YR; Zheng, MT; Hu, H; Dong, HW; Liu, XR; Liu, YL; Xiao, Y*. A mild method to prepare nitrogen-rich interlaced porous carbon nanosheets for high-performance supercapacitors. Journal of Colloid and Interface Science, 2021, 599, 381-389.
31.Huang, JY; Liu, SM; Peng, ZF; Shao, ZX; Zhang, YY; Dong, HW; Zheng, MT; Xiao, Y*; Liu, YL. Rich N/O/S co-doped porous carbon with a high surface area from silkworm cocoons for superior supercapacitors. New Journal of Chemistry,2019, 43, 19372-19378.
30.Chen, X; Chi, MZ; Xing, LL; Xie, X; Liu, SM; Liang, YR; Zheng, MT; Hu, H; Dong, HW; Liu, YL; Jiang, SP; Xiao, Y*. Natural Plant Template-Derived Cellular Framework Porous Carbon as a High-Rate and Long-Life Electrode Material for Energy Storage. ACS Sustainable Chemistry Engineering, 2019, 7, 5845-5855.
29.Li, Y; Liu, SM; Liang, YR; Xiao, Y*; Dong, HW; Zheng, MT; Hu, H; Liu, YL. Bark-Based 3D Porous Carbon Nanosheet with Ultrahigh Surface Area for High Performance Supercapacitor Electrode Material. ACS Sustainable Chemistry & Engineering, 2019, 7, 13827-13835.
28.Xing, LL; Chen, X; Tan, ZX; Chi, MZ; Xie, WT; Huang, JY; Liang, YR; Zheng, MT; Hu, H; Dong, HW; Liu, YL; Xiao, Y*. Synthesis of Porous Carbon Material with Suitable Graphitization Strength for High Electrochemical Capacitors. ACS Sustainable Chemistry & Engineering, 2019, 7, 6601-6610.
27.Li, Y; Mou, BS; Liang, YR; Dong, HW; Zheng, MT; Xiao, Y*; Liu, YL*. Component Degradation-Enabled Preparation of Biomass-Based Highly Porous Carbon Materials for Energy Storage. ACS Sustainable Chemistry & Engineering, 2019, 7, 15259-15266.
26. Liu, SM; Liang, YR; Zhou, W; Hu, WQ; Dong, HW; Zheng, MT; Hu, H; Lei, BF; Xiao, Y*; Liu, YL*. Large-scale synthesis of porous carbon via one-step CuCl2 activation of rape pollen for high-performance supercapacitors. Journal of Materials Chemistry A, 2018, 6, 12046-12055.
25. Xiao, Y; Zheng, MT; Chen, X; Feng, HB; Dong, HW; Hu, H; Liang, YR; Jiang, SP*; Liu, YL*. Hierarchical Porous Carbons Derived from Rice Husk for Supercapacitors with High Activity and High Capacitance Retention Capability. ChemistrySelect, 2017, 2, 6438-6445.
24. Liu, SM; Cai, YJ; Zhao, X; Liang, YR; Zheng, MT; Hu, H; Dong, HW; Jiang, SP*; Liu, YL*; Xiao, Y*. Sulfur-doped nanoporous carbon spheres with ultrahigh specific surface area and high electrochemical activity for supercapacitor. Journal of Power Sources, 2017, 360, 373-382.
23. Zhao, X; Li, M; Dong, HW; Liu, YL*; Hu, H; Cai, YJ; Liang, YR; Xiao, Y*; Zheng, MT*. Interconnected 3 D Network of Graphene-Oxide Nanosheets Decorated with Carbon Dots for High-Performance Supercapacitors. ChemSusChem, 2017, 10, 2626-2634.
22. Long, C; Zheng, MT; Xiao, Y*; Lei, BF; Dong, HW; Zhang, HR; Hu, H; Liu, YL*. Amorphous Ni-Co binary oxide with hierarchical porous structure for electrochemical capacitors. ACS Applied Materials & Interfaces, 2015, 7 (44), 24419-24429.
21. He, JL; Lei, BF; Zhang, HR; Zheng, MT; Dong, HW; Zhuang, JL; Xiao, Y*; Liu, YL*. Using hydrogen peroxide to mediate through a one-step hydrothermal method for the fast and green synthesis of N-CDs. RSC Advances, 2015, 5, 95744-95749.
20. Xiao, Y; Dong, HW; Lei, BF; Qiu, HH; Liu, YL*; Zheng, MT*. Ordered mesoporous carbons with fiber- and rod- like morphologies for supercapacitor electrode materials. Materials Letters, 2015,138, 37-40.
19. Xiao, Y; Dong, HW; Long, C; Zheng, MT; Lei, BF; Zhang, HR; Liu, YL*. Melaleuca bark based porous carbons for hydrogen storage. International Journal of Hydrogen Energy, 2014, 39, 11661-11667.
18. Xiao, Y; Long, C; Zheng, MT; Dong, HW; Lei, BF; Zhang, HR; Liu, YL*. High-capacity porous carbons prepared by KOH activation of activated carbon for supercapacitors. Chinese Chemistry Letters, 2014, 25, 865-868.
17. Xiao, Y; Chen, HB; Zheng, MT; Dong, HW; Lei, BF; Liu, YL*. Porous carbon with ultrahigh specific surface area derived from biomass rice hull. Materials Letters, 2014, 116, 185-187.
16. Xiao, Y; He, WQ; Gao, C; Zheng, MT; Lei, BF; Liu, XT; Liu, YL*. Controllable synthesis of hexagonal ZnO-carbon core-shell microrods and the removal of ZnO to form hexagonal carbon microtubes. Materials Chemistry and Physics, 2013, 140 (1), 350-356.
15. Xiao, Y; Gao, C; Shi, YY; Zheng, MT; Liu, YL*. Synthesis and characterization of porous carbons materials containing quaternary phosphonium salt based on activated carbon. Chinese Journal of Inorganic Chemistry, 2012, 6, 1222-1228.
14. Xiao, Y; Liu, YL*; Yuan, DS. Preparation and characterization of carbon sheets composed of two layer planes. Carbon, 2008, 46(3), 559-561.
13. Xiao, Y; Liu, YL*; Cheng, LQ; Yuan, DS; Zhang, JX; Gu, YL; Sun, GH. Flower-like carbon materials prepared via a simple solvothermal route. Carbon, 2006, 44(8), 1589-1591.
12. Xiao, Y; Liu, YL*; Yuan, DS; Zhang, JX; Mi, YZ. Synthesis of rod-shaped LaNi5 alloy via solid reduction method. Materials Letters, 2006, 60(21-22), 2558-2560.
11. Xiao, Y; Liu, YL*; Mi, YZ; Yuan, DS; Zhang, JX; Cheng, LQ. A simple route to form straw-like carbon microbundles. Chemistry Letters, 2005, 34 (10), 1422-1423.
10. He, CL; Xiao, Y; Dong, HW; Liu, YL*; Zheng, MT; Xiao, K; Liu, XR; Zhang, HR; Lei, BF. Mosaic-structured SnO2@C porous microspheres for high-performance supercapacitor electrode materials. Electrochimica Acta, 2014, 142, 157-166.
9. Chen, YH; Zheng, MT; Xiao, Y; Dong, HW; Zhang, HR; Zhuang, JL; Hu, H; Lei, BF; Liu, YL*. A self-quenching-resistant carbon-dot powder with tunable solid-state fluorescence and construction of dual-fluorescence morphologies for white light-emission. Advanced Materials, 2015, 28, 312-318.
8. Liu, XR; Zheng, MT; Xiao, Y; Yang, YH; Yang, LF; Liu, YL*; Lei, BF; Dong, HW; Zhang, HR; Fu, HG. Microtube Bundle Carbon Derived from Paulownia Sawdust for Hybrid Supercapacitor Electrodes. ACS Applied Materials & Interfaces, 2013, 5, 4667-4677.
7. Zheng, MT; Liu, YL*; Xiao, Y; Dong, HW; Feng, HB; Zhang, HR; Lei, BF. Simple additive-free method to manganese monoxide mesocrystals and their template application for the synthesis of carbon and graphitic hollow octahedrons. ACS Applied Materials & Interfaces, 2013, 5, 12561-12570.
6. Zheng, MT; Liu, YL*; Xiao, Y; Zhu, Y; Guan, Q; Yuan, DS; Zhang, JX. An Easy Catalyst-Free Hydrothermal Method to Prepare Monodisperse Carbon Microspheres on a Large Scale. Journal of Physical Chemistry C, 2009, 113, 8455-8459.
5. Feng, HB; Zheng, MT; Dong, HW; Xiao, Y; Hu, H; Sun, ZX; Long, C; Cai, YJ; Zhao, X; Zhang, HR; Lei, BF; Liu, YL*. Three-dimensional honeycomb-like hierarchically structured carbon for high-performance supercapacitors derived from high-ash-content sewage sludge. Journal of Materials Chemistry A, 2015, 3, 15225-15234.
4. Liu, XR; Zheng, MT; Xiao, K; Xiao, Y; He, CL; Dong, HW; Lei, BF; Liu, YL*. Simple, green and high-yield production of single- or few-layer graphene by hydrothermal exfoliation of graphite. Nanoscale, 2014, 6, 4598-4603.
3. Chen, HB; Wang, HB; Xue, ZP; Yang, LF; Xiao, Y; Zheng, MT; Lei, BF; Liu, YL*; Sun, LX*. High hydrogen storage capacity of rice hull based porous carbon, International Journal of Hydrogen Energy, 2012, 37, 18888-18894.
2. Zheng, MT; Liu, YL*; Zhao, S; He, WQ; Xiao, Y. Simple shape-controlled synthesis of well-defined carbon hollow structures, Inorganic Chemistry, 2010, 49, 8674-8683.
1. Yang, YH; Cui, JH; Zheng, MT; Hu, CF; Tan, SZ; Xiao, Y; Yang, Q; Liu, YL*. One step synthesis amino-functionalized fluorescent carbon nanoparticles by hydrothermal carbonization chitosan, Chemical Communications, 2012, 48, 380-382.
八、科研项目
[1] 国家自然科学基金面上项目,电容性生物炭介导稻田硝酸盐异化还原产铵过程的界面电子传递调控机制,42577046,2026.01-2029.12,49万,在研,主持
[2] 国家自然科学基金面上项目,基于甘蔗渣为原料的多级孔碳材料的制备、结构调控及电化学储能研究,21671069,2017.01-2020.12,65万,结题,主持
[3] 国家自然科学基金面上项目,碳材料纳米结构的可控制备和性能研究,21371061,2014.01-2017.12,85万,结题,主持
[4] 国家自然科学基金青年项目,季鏻阳离子化多孔碳材料的结构及表面性能研究,20906037,2010.01-2012.12,19万,结题,主持
[5] 国家自然科学基金面上项目,碳点/氧化物复合长余辉材料多发射中心形成机制及性能调控研究,52472160,2025.01-2028.12,48万,在研,参与
[6] 国家自然科学联合基金项目,杂化孔碳材料的构建和吸附储能及其机理究究,U1501242,2016.01-2019.12,294万,结题,参与
[7] 国家自然科学基金青年项目,农业废弃生物质炭-金属氢化物复合体系的结构调控和储氢机制探索,21401057,2015.01-2017.12,25万,结题,参与
[8] 国家自然科学基金面上项目,溶剂热方法调控长余辉发光材料纳米结构,51372091,2014.01-2017.12,80万,结题,参与
九、获奖情况
[1] 林业剩余物低温成炭及其储能材料制备关键技术,广东省科技进步二等奖,排名第六,2025;
[2] 新型碳材料微纳结构调控和性能研究,广东省自然科学二等奖,排名第三,2021;
[3] 长余辉发光材料新体系的研发、纳米化、表面修饰和应用,广东省技术发明二等奖,排名第八,2018年;
[4]新型长余辉发光材料的探索、性能及机理,广东省科学技术二等奖,排名第五,2008;
[5] 基于实验素养提升的线上线下协同式基础化学实验教学平台的建设与实践,华南农业大学教学成果二等奖,排名第四,2021;
[6] 主持校级一流课程《基础化学实验II》建设,副主编教材《基础化学实验》,主持教改项目5项;
十、写给学生的话
天道酬勤,付出必有收获!


