基本情況
何春,太阳集团1088vip,教授,博士生導師。2003年畢業于太阳集团app首页獲得環境科學博士學位,2003-2004年在香港理工大學土木與結構工程系任研究助理,2004-2006年在日本國立産業技術綜合研究所任日本學術振興會JSPS研究員,2007年在香港理工大學土木與結構工程系任研究助理,2008年在太阳集团1088vip任職。近年來主要從事環境污染控制和資源化等研究領域,先後主持國家自然科學基金、教育部留學回國人員科研基金、教育部高等學校博士學科點基金、中央高校基本科研基金、廣東省自然科學基金重大基礎研究培育項目、廣東省科技計劃等多項項目。在PNAS, Nano Today, Environ. Sci. Technol., Advanced Functional Materials, Adv. Mater., Applied Catalysis B, ACS Catalysis等國際學術刊物發表SCI收錄論文170餘篇,4篇論文入選ESI Top 1%高被引論文。申請中國發明專利17項,其中9項已授權。一些研究工作引起國際同行的重點關注,并作為Advanced Functional Materials、Environ. Sci. Technol.封面論文。應Nova Science出版社邀請參編了“New Topics in Catalysis Research”等7部國外著作。多次應邀在國際學術大會上作學術報告,并且被Environ. Sci. Technol., Appl. Catal. B, Appl. Catal. A, Appl. Mater. Interfaces, J. Hazard. Mater., Chem. Eng. J., Desalination, Environmental Science: Nano等國際學術期刊邀請為論文審稿人。
聯系方式
廣州大學城外環東路132号太阳集团1088vip
電話:+86-20-39332690
E-mail:hechun@mail.sysu.edu.cn
歡迎具有環境工程、化學工程、材料科學、市政工程等學科背景的本科生、碩士、博士、博士後等科研人員加入課題組。歡迎郵件聯系!
教育經曆
2003-2004年在香港理工大學土木與結構工程系任研究助理
2004-2006年在日本國立産業技術研究所任日本學術振興會JSPS研究員
2007年1月至7月在香港理工大學土木與結構工程系任研究助理
工作經曆
2007年10月-2008年11月在華南理工大學化學與化工學院任教
2008年12月-至今在太阳集团1088vip任教
講授課程
2. «環境工程概算»
3. «環境化學»
4. «環境監測與評價»
5. «儀器分析»
6. «工業水處理»
7. «高等水處理技術»
8. «污染控制化學與工程»
科研方向
1. 水污染深度處理與回用技術
2. 大氣污染控制與資源化技術
3. 環境功能材料及環境催化理論和技術
4. 固體廢物資源化
科研項目
1. 國家自然科學基金面上項目(No. 52070195, 2021-2024),項目負責人。
2. 國家自然科學基金面上項目(No. 21876212, 2019-2022),項目負責人。
3. 國家自然科學基金面上項目(No. 51578556, 2016-2019),項目負責人。
4. 國家自然科學基金面上項目(No. 20877025, 2009-2011),項目負責人。
5. 國家自然科學基金項目 (No. 21273085, 2012-2015), 合作方項目負責人。
6. 廣東省自然科學基金重大基礎研究培育項目(2015A030308005, 2016-2019), 項目負責人。
7. 廣東省自然科學基金項目(No. 2023A1515012198, 2023-2025), 項目負責人。
8. 廣東省自然科學基金項目(No. S2013010012927, 2013-2015), 項目負責人。
9. 廣東省自然科學基金項目(No. S2011010001836, 2011-2013),項目負責人。
10. 廣東省自然科學基金項目(No. 04011602, 2004-2007), 項目負責人。
11. 科技部中小企業創新基金(No. 10C26214414753, 2010-2012), 合作方項目負責人。
12. 教育部高等學校博士學科點專項科研基金 (No. 200805611015, 2009-2011),項目負責人。
13. 教育部留學回國人員科研基金項目(2009-2011),項目負責人。
14. 中央高校基本科研業務費環境領域項目群基金 (2013-2015), 項目負責人。
15. 中央高校基本科研業務費重點培育項目(2010-2012), 項目負責人。
16. 日本學術振興會博士後資助項目(No. P04568, 2004-2006), 項目負責人。
17. 廣東省科技計劃項目(No.2014A020216009, 2014-2016),項目負責人。
18. 廣州科技局科學技術項目(No. 2010Z2-C1009, 2010-2012), 合作方項目負責人。
社會兼職和獲獎情況
- 第十三屆廣東省政協委員。
- 第三屆廣州市人民政府應急管理專家。
- 廣東省發展委員和改革委員會戰略專家庫專家。
- 廣州市越秀區環境保護局應急處置專家。
- 巴塞爾公約亞太區域中心化學品和廢物環境管理智庫專家。
- 太阳集团app首页科學道德與學風建設宣講導師。
- 太阳集团app首页校級教學督導。
- 太阳集团app首页太阳集团1088vip教學督導。
- 2024年太阳集团app首页優秀博士學位論文指導教師。
- 2024年太阳集团app首页優秀碩士學位論文指導教師。
- 2024年太阳集团app首页環境學院“我心目中的良師”。
- 2023年太阳集团app首页優秀碩士學位論文指導教師。
- 2023年太阳集团app首页環境學院“我心目中的良師”。
- 2021年度中國環境技術進步獎二等獎。
- 2021年太阳集团app首页環境學院“我心目中的良師”。
- 2020年度廣東省環境技術進步獎一等獎。
- 2020年太阳集团app首页優秀碩士學位論文指導教師。
- 2017-2020年連續四年太阳集团app首页環境學院“我心目中的良師”。
- He, C.*, Gong, Y.B., Li, S.Z., Hu, L.L., Yang, Y.C., Sun, L.P., Shu, D* (2014). Efficient electricity generation and degradation of organic pollutants in wastewater using Ag-BiOI photoactivated fuel cell, Chapter 9 in “Green Catalysts for Energy Transformation and Emission Control”, American Chemical Society, Washington, DC, USA, 149-164, (Book Chapter).
- He, C.*, Zhang, Q., Yang, J. L., Xu, Z.C., Shu, D., Shan, C., Zhu, L.F., Liao, W.C., Xiong, Y. (2012) Visible-light-induced activity of AgI-BiOI composites for removal of organic contaminants from water and wastewater, Chapter in “Green Nanotechnology and the Environment”, American Chemical Society, Washington, DC (Book Chapter).
- He, Z.Y., Hu, Y.M., Huang, Y.J., He, C.*, Tan, X.Q., Hu, L.L., Yang, W.J., Li, H.Y., Xu, J.R., Xia, D.H. and Shu, D.* (2018). Performance of Membrane Filtration Combined Advanced Oxidation Process in Water Treatment and Mitigation of Membrane Fouling, Chapter 1 in “Membrane Bioreactors and Fouling: A Review and Directions for Research”, Nova Science Publishers, Inc., New York, pp. 1-44, ISBN: 978-1-53614-363-8 (Book Chapter).
- Sharma, V.K., Ma, J., He, C., Kim, H., Zboril. R. (2014). Ferrate(VI): A green molecule in odorous gas treatment, Chapter in “Green Catalysts for Energy Transformation and Emission Control”, American Chemical Society, Washington, DC, USA, 277-290 (Book Chapter).
- Abou Asi, M., He C.*, Zhang, Q., Xu, Z.C., Yang, J.L., Zhu, L.F., Huang, Y.L., Xiong, Y., Shu, D. (2013) Photocatalytic reduction of CO2 to hydrocarbons using carbon-based AgBr nanocomposites under visible light, Chapter 10 in “Green CO2: Advances in CO2 Utilization”, Wiley & Sons, Inc., Hoboken, New Jersey, pp. 243-258 (Book Chapter).
- Sharma, V.K., He C. (2013) Recent advances in ferrites as visible light photocatalysts for remediation of contaminants in water, Chapter 4 in “Environmental Chemistry for a Sustainable World (ECSW)”, volume 3. Springer (Book Chapter).
- He, C., Xiong, Y. and Zhu, X. H. (2007). Dependent-preparation characteristics and catalytic activity of two platinized TiO2 films towards the oxidation of organic pollutants, Chapter 2 in “New Topics in Catalysis Research”, Nova Science Publishers, Inc., New York, pp. 33-49, 2007 (Book Chapter).
代表性論文(* 通訊聯系人)
- Qu, W., Tang, Z.Y., Tang, S., Zhong, T., Zhao, H.N., Tian, S.H., Shu, D., He, C*. Precisely constructing orbital coupling-modulated iron dinuclear site for enhanced catalytic ozonation performance, PNAS, 2024, 121: e2319119121.
- Zhen, X.Y. #, Zhong, T. #, Zhao, H.N.*, Huang, F., Huang, W.B., Hu, L.L., Dehua Xia, Tian, S.H., Shu, D., He, C*. MnO2-based capacitive system enhances ozone inactivation of bacteria by disrupting cell membrane, Water Research, 2024, 256: 121608.
- Qu, W., Tang, S., Tang, Z.Y., Zhong, T., Zhao, H.N., Tian, S.H.*, Shu, D.*, He, C*. Refining asymmetric low-coordinated Fe-N3 motif to boost catalytic ozonation activity. Adv. Funct. Mater. 2024, 2314187.
- Zhong, T., Long, X.H., Luo, M.H., Tang, S., Huang, W.B., Zhao, H.N.*, Hu, L.L., Tian, S.H., Shu, D., He, C*. Local microenvironment modulation of Pt0/Pt2+ nano-clusters inducing synchronous mass transfer effect to boost catalytic ozonation, Applied Catalysis B: Environmental, 2024, 355: 124162.
- Zhang, H.J.#, Chen, C. #*, Lin, M.K., Zhou, L.Z., Wen, H.L., Zhong, T., Zhao, H.N., Tian, S.H., He, C.*. Boron-doped porous carbon boosts electron transport efficiency for enhancing Fenton-like oxidation capacity: High-speed driving of Fe(III) reduction, Applied Catalysis B: Environmental, 2024, 343: 123535.
- Zhong, T., Tang, S., Huang, W.B., Liu, W., Zhao, H.N.*, Hu, L.L., Tian, S.H., He, C.*. Cu Nanocrystals coupled with poly (heptazine imide) for synergistically enhanced photocatalytic CH3SH elimination: facet engineering strengthened electron pump effect, Applied Catalysis B: Environmental, 2024, 343: 123476.
- Qu, W., Tang, Z.Y., Wen, H.L., Tang, S., Lian, Q.Y., Zhao, H.N., Tian, S.H., Shu, D.*, He, C.*. Optimization of carbon-defect engineering to boost catalytic ozonation efficiency of single Fe-N4 coordination motif, Small, 2024, 2311879.
- Long, X.H., Huang, F., Yao, Z.N., Li, P., Zhong, T., Zhao, H.N.*, Tian, S.H.*, Shu, D., He, C.*. Advancements in electrocatalytic nitrogen reduction: A comprehensive review of single-atom catalysts for sustainable ammonia synthesis, Small, 2024, 2400551.
- Zhao, H.N. #, Zhong, T. #, Huang, W.B., Guo, X.X., Ma, P., Wu, T.L., He, J.*, Hu, L.L., Xia, D.H., He, C*. Designing multi-functional MoS2/rGO piezocatalysts based on bacteria-catalyst topological interactions and electron pumping effects for efficient water disinfection, Journal of Cleaner Production, 2024, 461: 142597.
- Qu, W., Luo, M.H., Tang, Z.Y., Zhong, T., Zhao, H.N., Hu, L.L.*, Xia, D.H., Tian, S.H., Shu, D.*, He, C*. Accelerated Catalytic Ozonation in Mesoporous Carbon-Supported Atomic Fe-N4 Sites Nanoreactor: Confinement Effect and Resistance to Poisoning, Environ. Sci. Technol. 2023, 57: 13205-13216 (封面論文).
- Wang, Y.Y., Ma, B., Zhao, J., Tang, Z.Y., Li, W.X., He, C.*, Xia, D.H., Linden, K.G., Yin, R.*. Rapid inactivation of fungal spores in drinking water by far-UVC photolysis of free chlorine, Environ. Sci. Technol. 2023, 57, 21876-21887.
- Qu, W., Tang, Z.Y.,Tang, S., Wen, H.L., Fang, J.Y.*, Lian, Q.Y., Shu, D.*, He, C.*. Cation substitution induced d-band center modulation on cobalt-based spinel oxides for catalytic ozonation, Advanced Functional Materials 2023, 2301677.
- Wang, Y.Y., Ma, B., He, C.*, Xia, D.H., Yin, R.*. Nitrate protects microorganisms and promotes formation of toxic nitrogenous byproducts during water disinfection by Far-UVC radiation, Environ. Sci. Technol. 2023, 57, 9064–9074.
- Qu, W., Tang, Z.Y., Wen, H.L., Luo, M.H.,Zhong, T., Lian, Q.Y., Hu, L.L.*, Tian, S.H., He, C*, Shu, D.* Electron Transfer trade-offs in MOF-derived cobalt embedded nitrogen-doped carbon nanotubes boosts catalytic ozonation for gaseous sulfur-containing VOCs elimination. ACS catalysis, 2023, 13: 692−705.
- Chen, C., Wang, Y.Y., Huang, Y.J., Hua, J., Qu, W., Xia, D.H.*, He, C.*, Sharma, V.K.*, Shu, D. Overlooked self-catalytic mechanism in phenolic moiety-mediated Fenton-like system: Formation of Fe(III) hydroperoxide complex and co-treatment of refractory pollutants, Applied Catalysis B: Environmental, 2023, 321: 122062.
- Qu, W., Chen, C., Tang, Z.Y., Wen, H.L., Hu, L.L.*, Xia, D.H., Tian, S.H., Zhao, H.N., He, C*, Shu, D.* Progress in metal-organic-framework-based single-atom catalysts for environmental remediation, Coordination Chemistry Reviews, 2023, 474: 214855.
- Qu, W., Liu, W., Wen, H.L., Qu, X.R., Guo, Y.F., Tang, Z.Y., Hu, L.L.*, Tian, S.H.*, He, C*., Shu, D. Boosting Fenton-like catalysis via electron tunneling-based C–Co charge-transfer bridge in nitrogen-doped cobalt@carbon nanotube-grafted carbon polyhedron, ACS ES&T Engineering, 2023, 3: 213-225.
- Chen, C., Zhou, L.z., Zhang, H.J., Yang, Y.L., Lin, M.K., Xu, X.*, Qu, W., Zhao, H.N., Xia, D.H., He, C*. Eco-friendly lignin-based N/C cocatalyst for ultrafast cyclic Fenton-like reactions in water purification via graphitic n-mediated interfacial electron transfer, ACS ES&T Engineering, 2023, 3: 248-259.
- Wen, H.L., Qu, W., Lin, M.K., Zhou, L.Z., Guo, X.X., Ma, P., Wu, T.L., Zhao, H.N.*, Zhong, T., He, C.*, Nitrogen-coordinated cobalt embedded in hollow carbon polyhedron for catalytic ozonation of odor CH3SH at ambient temperature, Chemical Engineering Journal, 2023, 471, 144567.
- Wang, G.Y., Gao, A.M., Zhao, T.T., Meng, T., Yi, F.Y., Liu, C.*, Ling, Zhou, J.Z., He, C.*, Shu, D.*. Micropore-facilitated surface-dominated pseudocapacitive storage in MOF-derived hollow nano-cuboids enabled by in-situ Zn-sacrificed strategy, Chemical Engineering Journal, 2023, 143852: 469.
- Ma, D.R., Lian, Q.Y., Zhang Y.X., Huang, Y.J., Guan, X.Y., Liang Q.W., He, C., Xia, D.H.*, Liu, S.W.*, Yu, J.G.* Catalytic ozonation mechanism over M1-N3C1 active sites, Nature Communications, 2023, 14: 7011.
- Lian, Q.Y., Weiqi Liu, Ma, D.R., Liang, Z.C., Tang, Z.Y., Cao, J., He, C., Xia, D.H.*. Precisely orientating atomic array in one-dimension Tellurium microneedles enhances intrinsic piezoelectricity for an efficient piezo-catalytic sterilization, ACS Nano 2023, 17(9): 8755–8766.
- Ma, D.R., Yin, R., Liang, Z.C., Liang, Q.W., Xu, G.Z., Lian, Q.Y., Wong, P.K., He, C., Xia, D.H.*, Lu, H.*. Photo-sterilization of groundwater by tellurium and enhancement by micro/nano bubbles, Water Research, 2023, 33: 119781.
- Ma, D.R., Cao, J., Liu, K.R., Zhang, Y.X., Liang, Q.W., Huang, Y.J., Guan, X.Y., Hu, L.L., He, C., Xia, D.H.*. Interstitial carbon-platinum electronic metal-support interaction structure bost synergistic removal of O3 and CH3SH via surface atomic oxygen, Applied Catalysis B: Environmental, 2023, 329:122578.
- Tang, Z.Y., Qu, W., Lin, Z.H., Li, J.J., Wu, P.Z., Lian, Q.Y., He, C., Yin, R.*., Wong, P.K., Xia, D.H.*. Rapid and complete inactivation of pathogenic microorganisms by solar-assisted in-situ H2O2 generation using a polypyrrole-supported copper sulfide system. Applied Catalysis B: Environmental, 2023, 338: 123047.
- Lian, Q.Y., Liang, Q.W., X Guan, X.Y., Tang, Z.Y., Zhang, R.M., Yang, B.Y., Wu, Y.X., Zhao, H.N., He, C., Xia, D.H.*. High-coordinated BiV/BiIV regulates photocatalytic selective activation of structural oxygen and self-generated H2O2 dominating an efficient synergistic sterilization, Applied Catalysis B: Environmental, 2023, 331: 122724.
- Zhan, S.J., Huang, H.T., He, C., Xiong, Y., Li, P.*, Tian, S.H.* Controllable synthesis of substitutional and interstitial nitrogen-doped ceria: The effects of doping sites on enhanced catalytic ozonation of organic pollutants, Applied Catalysis B: Environmental, 2023, 321: 122040.
- Yang, J.L., He, S.M., Liu, H.W., Jaatinen, E., Waclawik, E., Quan, J.M., Sarina, S., He, C., Huang, S.C., Zhu*, H.Y., Wu, M.M.*. Enhancing visible-light photocatalytic performance of Au/TiO2, catalysts through light reflection-promoted optical absorption with oriented anatase mesocrystals, J. Mater. Chem. A, 2023,11: 4751-4757.
- Qu, W., Tang, Z.Y., Liu, W., Liao, Y.H., Huang, Y.J., Xia, D.H.*, Lian, Q.Y., Tian, S.H., He, C.*, Shu, D. Self-Accelerating Interfacial Catalytic Elimination of Gaseous S-VOCs as Microbubbles in Facet-Engineered 3D-BiOCl Sponge Fenton-like Process, Environ. Sci. Technol. 2022, 56, 11657−11669 (封面論文).
- Wang, Y.Y., Yin, R.*, Tang, Z.Y., Liu, W.Q., He, C.*, Xia, D.H.*. Reactive Nitrogen Species Mediated Inactivation of Pathogenic Microorganisms during UVA Photolysis of Nitrite at Surface Water Levels, Environ. Sci. Technol. 2022, 56, 17, 12542-12552.
- Lian, Q.Y.#, Hu, L.L.#, Ma, D.R., Jiao, Y.M., Xia, D.H.*, Huang, Y.J., Tang, Z.Y., Qu, W., Zhao, H.N., He, C.*, Gang, D.D. Interstitial atomic Bi charge-alternating processor boosts twofold molecular oxygen activation enabling rapid catalytic oxidation reactions at room temperature. Adv. Funct. Mater. 2022, 32 (38): 2205054.
- Xia, D.H., Chen, Q., Jiao, Y.M., Lian, Q.Y., Sun, M.Z., He, C.*, Shang, J.*, Wang, T.Q.*, A modified flower pollen-based photothermocatalytic process for enhanced solar water disinfection: photoelectric effect and bactericidal mechanisms, Water Research, 2022, 217: 118423.
- Qu, W., Chen, C., Tang, Z.Y., Xia, D.H.*, Ma, D.R., Huang, Y.J., He, C.*, Shu, D., Bin Han. Electron-rich/poor reaction sites enable ultrafast confining Fenton-like processes in facet-engineered BiOI membranes for reclaimed water purification, Applied Catalysis B: Environmental, 2022, 304: 120970.
- He, C., Liao, Y.H., Chen, C., Xia, D.H.*, Wang, Y.Y., Tian, S.H., Yang, J.L.*, Shu, D. Realizing a redox-robust Ag/MnO2 catalyst for efficient wet catalytic ozonation of S-VOCs: Promotional role of Ag(0)/Ag(I)-Mn based redox shuttle, Applied Catalysis B: Environmental, 2022, 303: 120881.
- Zhao, H.N., Qu, W., Hu, L.L., Tang, Z.Y., Zhang, F., He, H.J.W., Xia, D.H.*, Wu, T.L., Li, X., Lian, Q.Y., Wong, P.K., He, C*. Coupling facet Cu (111)/(100) functionalized graphene aerogel for remarkable air disinfection filter: extracellular electron transfer and sharp-edge membrane penetration effect, ACS ES&T Engineering, 2022, 2, 2220−2233.
- Zhao, H.N., Guan, X.Y., Zhang, F., Huang, Y.J., Xia, D.H.*, Hu, L.L., Ji, X.Y., Yin, R.*, He, C*. Rational design of a bismuth oxyiodide (Bi/BiO1-xI) catalyst for synergistic photothermal and photocatalytic inactivation of pathogenic bacteria in water, Journal of Materials Science & Technology, 2022, 100: 110-119.
- Qu, W., Wen, H.L., Qu, X.R., Guo, Y.F., Hu, L.L.*, Liu, W., Tian, S.H., He, C.*, Shu, D. Enhanced Fenton-like catalysis for pollutants removal via MOF-derived CoxFe3−xO4 membrane: Oxygen vacancy-mediated mechanism, Chemosphere, 2022, 303: 135301.
- Yang, J.L., Ma, D.R., Liu, W.Q., Liao, Y.H.,Xia, D.H.*, He, C. Efficient catalytic elimination of CH3SH by a wet-piezotronics system over Ag cluster-deposited BaTiO3 with electronic metal-support interaction, ACS ES&T Engineering, 2022, 2(7): 1179–1187.
- Tang, Z.Y., Ma, D.R., Qi Chen, Wang, Y.Y., Sun, M.Z., Lian, Q.Y., Shang, J., Wong, P.K., He, C, Xia, D.H.*, Wang, T.Q.*. Nanomaterial-enabled photothermal-based solar water disinfection processes: Fundamentals, recent advances, and mechanisms. J. Hazard. Mater. 2022, 437: 129373.
- Tang, Z.Y., Yin, R., Qu, W., Liu, H.D., Luo, H.J., Xia, D.H.*, Huang, Y.J., Shu, L.F., He, C. Flower pollen-based photosensitization process for enhanced solar disinfection of drinking water: reactor design and inactivation mechanisms. ACS ES&T Engineering, 2022, 2: 629−641.
- Ma, D.R., Liu, W.Q., Huang, Y.J., Xia, D.H.*, Lian, Q.Y., He, C. Enhanced catalytic ozonation for eliminating CH3SH via stable and circular electronic metal-support interactions of Si-O-Mn bonds with low Mn loading. Environmental science & Technology 2022, 56 (6): 3678-3688.
- Huang, Y.J., Ma, D.R., Liu, W.Q., Xia, D.H.*, Hu, L.L., Yang, J.L., Liao, P., He, C. Enhanced catalytic ozonation for eliminating CH3SH via graphene-supported positively charged atomic Pt undergoing Pt2+/Pt4+ redox cycle. Environ. Sci. Technol. 2021, 55, 16723-16734.
- Qu, W., Zhao, H.N., Zhang, Q., Xia, D.H.*, Tang, Z.Y., Chen,Q., He, C.*, Shu, D. Multifunctional Au/Ti3C2 photothermal membrane with antibacterial ability for stable and efficient solar water purification under the full spectrum, ACS Sustainable Chemistry & Engineering, 2021, 9(34): 11372–11387.
- Huang, Y.J., Luo, M.H., Li, S.Z., Xia, D.H.*, Tang, Z.Y., Hu, S.Y., Ye, S.T., Sun, M.J., He, C.*, Shu, D. Efficient catalytic activity and bromate minimization over lattice oxygen-rich MnOOH nanorods in catalytic ozonation of bromide-containing organic pollutants: Lattice oxygen-directed redox cycle and bromate reduction, J. Hazard. Mater. 2021, 410: 124545.
- Chen, X.X., Zhan, S.J, Chen, D.S., He, C., Tian, S.H.*, Xiong, Y. Grey Fe-CeO2-σ for boosting photocatalytic ozonation of refractory pollutants: Roles of surface and bulk oxygen vacancies, Applied Catalysis B: Environmental 2021, 286: 119928.
- Yang, J.L., Huang, Y.J., Yun-Wen Chen, Xia, D.H.*, Mou, C.Y. Hu, L.L., Zeng, J.W., He, C.*, Wong, P.K., Zhu, H.Y. Active site-directed tandem catalysis on CuO/VO-MnO2 for efficient and stable catalytic ozonation of S-VOCs under mild condition, Nano Today, 2020, 35: 100944.
- He, C., Wang, Y.C., Li, Z.Y., Huang, Y.J., Liao, Y.H., Xia, D.H.*, Lee, S.C. Facet engineered α-MnO2 for efficient catalytic ozonation of odor CH3SH: Oxygen vacancy-induced active centers and catalytic mechanism,Environ. Sci. Technol. 2020, 2020, 54, 12771-12783.
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- Zhou, X.P., Chen, H.Y., Shu, D.*, He, C.*, Study on the electrochemical behavior of vanadium nitride as a promising supercapacitor material, J. Phys. Chem. Solids, 2009, 70: 495-500.
- Zhang, Y.Y., He, C., Deng, J.H., Xiong, Y., Photo-Fenton-like catalytic activity of nano-lamellar Fe2V4O13 in the degradation of organic pollutants. Res. Chem. Intermed. 2009, 35: 727-737.
- He C., Sasaki T., Shimizu Y., and Koshizaki N. Synthesis of ZnO nanoparticles by pulsed laser ablation in aqueous media and their self-assembly towards spindle-like ZnO aggregates. Appl. Surf. Sci. 2008, 254: 2196-2202.
- He, C., Sasaki, T., Zhou, Y., Shimizu, Y., and Koshizaki, N. Surfactant-assisted preparation of a novel layered silver bromide-based inorganic/organic nanosheet by pulsed laser ablation in aqueous media. Adv. Funct. Mater. 2007, 17, 3554-3561.
- Zhou, Y., Kogiso, M., He, C., Shimizu, Y., Koshizaki, N. and Shimizu, T. Fluorescent Nanotubes Consisting of CdS-Embedded Bilayer Membranes of a Peptide Lipid, Adv. Mater. 2007, 19: 1055-1058.
- He, C., Sasaki, T., Shimizu, Y., and Koshizaki, N. Fabrication of ZnO nanoparticles by pulsed laser ablation in aqueous media and pH-dependent particle size: An approach to study the mechanism of enhanced green photoluminescence, J. Photochem. Photobiol. A, 2007, 191: 66-73.
- He C., Li X.Z., Graham N., and Wang Y. Preparation of TiO2/ITO and TiO2/Ti Photoelectrodes by Magnetron Sputtering for Photocatalytic Application, Appl. Catal. A, 2006, 305, 54-63.
- He, C., Shu, D., Xiong, Y., Zhu, X. H. and Li X.Z. Comparison of catalytic activity of two platinised TiO2 films towards the oxidation of organic pollutants. Chemosphere, 2006, 63,183-191.
- He, C., Xiong, Y., Shu, D., Zhu, X. H. and Li X.Z. Preparation and photoelectrocatalytic activity of Pt (TiO2)-TiO2 hybrid films. Thin Solid Films, 2006, 503: 1-7.
- Shu, D., Zhang, J.H., He, C., Meng, Y.Z., Chen, H.Y., Zhang, Y.S., Zheng, M.P., Improved Electrochemical Redox Performance of 2,5-Dimercapto-1,3,4-Thiadiazole by Poly(3-Methoxythiophene). J. Appl. Electrochem., 2006, 36: 1427-1431.
- He C, Li X.Z., Xiong Y., Zhu XH and Liu SR, The Enhanced PC and PEC Oxidation of Formic Acid in Aqueous Solution Using a Cu-TiO2/ITO Film, Chemosphere, 2005, 58(4): 381-389.
- Li, X.Z. He, C. Photoelectrocatalytic Degradation of Bisphenol A in Aqueous Solution Using an Au-TiO2/ITO Photoelectrode, J. Appl. Electrochem. 2005, 35: 741-750.
- He, C., Xiong, Y., Zhu, X. H and Li X.Z. A platinised TiO2 film with both chemical-catalytic and photocatalytic activities towards formic acid degradation. Appl. Catal. A, 2004, 275: 55-60.
- Shu, D., He, C., Xiong, Y. and Zhu, X. H. Preparation, characterization and photoelectrochemical activities of platinum-deposited titanium dioxide film electrode, Bulletin of Electrochemistry, 2004, 20 (6): 283-288.
- He, C., Xiong, Y., Chen, J. and Zhu, X. H. Photoelectrochemical performance of Ag-TiO2/ITO film and photoelectrocatalytic activity towards the oxidation of organic pollutants. J. Photochem. Photobiol. A: Chem., 2003,157 (1): 71-79.
- He, C., Xiong, Y. and Zhu, X. H. Improving photocatalytic activity of Cu-loaded TiO2 using a pulse anodic bias. Catal. Commun. 2003. 4 (4): 183-187.
- He, C., Xiong, Y., Zha C. H. and Zhu, X. H. Approach to a pulse photoelectrocatalytic process for the degradation of organic pollutants. J. Chem. Tech. Biotech., 2003, 78 (6): 717-723.
- He, C., Xiong, Y. and Zhu, X. H. Towards understanding the TiO2-mediated photoelectroredox process of Cu (II)-formic acid solution. J. Environ. Sci. Health. A, 2003, 38(5): 949-963.
- He, C. Xiong, Y., Shu, D. and Zhu, X. H. Enhanced photocatalytic efficiency of TiO2 by combining the modification of Ag nanoparticles with the application of anodic bias. Chinese Chem. Lett., 2003, 14(5): 539-542.
發明專利
申請中國發明專利17項,其中9項發明專利已授權。
人才培養
長期從事本科和研究生教學工作,主持高教教改項目8項,積極推進教育教學改革創新。指導本科生張煥晶、溫海琳、何卓彥分别以第一作者在Applied Catalysis B: Environmental、 Chemical Engineering Journal、Journal of Hazardous Materials學術期刊上發表學術論文,指導20餘名本科生高質量完成國家大學生創新訓練項目、廣東省大學生科技創新培育專向基金(攀登計劃)等立項項目,指導多名本科生獲優秀畢業論文、優秀畢業生等多項榮譽。指導20餘名碩士/博士生榮獲“研究生國家獎學金”、“中滔環保獎學金”、太阳集团app首页“優秀碩士論文”、太阳集团app首页“優秀博士畢業生”、 太阳集团app首页“優秀碩士畢業生”、全國“唐孝炎院士環境科學創新獎”、 “錢易環境獎”、高廷耀環保科技發展基金會“青年博士生人才獎”等獎項。