姓 名: 王长洪
民 族: 汉
职称/职务: 校聘教授
学 位: 工学博士
学 科: 软件工程、新一代电子信息
E - mail: chwang@hebtu.edu.cn
个人简介
王长洪,男,汉族,中共党员,河北师范大学“精英二层次”人才,校聘教授,硕士研究生导师。
研究方向:
2022年成立“人工智能+能源催化”课题组,主要从事人工智能、能源催化等多领域的交叉研究。包括大模型的二次开发和应用,基于知识链的多专业跨领域文档挖掘方法的研究,图神经网络等深度学习算法的开发和应用。
主讲课程:
《人工智能数学基础》、《机器学习》、《虚拟现实与数据可视化》。
学术兼职:
中科院一区《Rare Metals》(影响因子9.6)期刊青年编委
中科院一区《Chinese Journal of Catalysis》(影响因子15.7)、《Interdisciplinary Materials》(影响因子24.5)等期刊审稿人
学术成果:
近年来课题组发表SCI收录学术论文50余篇,其中以第一作者、通讯作者(含共同)发表中科院一区(升级版)论文20余篇, 2024年以来河北师范大学为第一单位发表中科院一区论文4篇。
近年来课题组主持省部级项目3项,主持教育部重点实验室开放基金2项,参与国家重点研发计划、国家自然科学基金面上项目3项,主持横向课题4项,获省部级二等奖1项。
近期代表性论文或专著:
主要论文:
[1] Jieyu Liu, Shuoao Wang, Yunyan Tian, Haiqiang Guo, Xing Chen, Weiwei Lei, Yifu Yu*, Changhong Wang*, Screening of Silver-Based Single-Atom Alloy Catalysts for NO Electroreduction to NH3 by DFT Calculations and Machine Learning, Angewandte Chemie-International Edition, 2025, 64, e202414314.(中科院一区,影响因子16.1)
[2] Shuoshuo Guo#, Changhong Wang#, Huizhi Li, Tieliang Li, Cuibo Liu, Ying Gao*, Bo-Hang Zhao*, Bin Zhang*, CeO2 Modification Promotes the Oxidation Kinetics for Adipic Acid Electrosynthesis from KA Oil Oxidation at 200 mA cm−2, Angewandte Chemie-International Edition, 2025, DOI: 10.1002/anie.202423432. (中科院一区,影响因子16.1)
[3] Jieyu Liu, Haiqiang Guo, Yulin Xiong, Xing Chen, Yifu Yu*, Changhong Wang*, Rational design of Pt-anchored single-atom alloy electrocatalysts for NO-to-NH3 conversion by density functional theory and machine learning, Chinese Journal of Catalysis, 2024, 62, 243-253. (中科院一区,影响因子15.7)
[4] Hui-Long Jin, Qian-Nan Li, Yun-Yan Tian, Shuo-Ao Wang, Xing Chen, Jie-Yu Liu*, Chang-Hong Wang*, Machine-Learning-Aided Au-based Single-Atom Alloy Catalysts Discovery for Electrochemical NO Reduction Reaction to NH3, Rare Metals, 2024, 43, 5813-5822. (中科院一区,影响因子9.6)
[5] Jieyu Liu, Junze Zhang, Haigang Deng, Shuoao Wang, Xingxing Jiang, Li Wang, Changhong Wang*, Chinese Chemical Letters, 2025, DOI: 10.1016/j.cclet.2024.110656. (中科院一区,影响因子9.4)
[6] Zi-Wen Fan, Yue Wang, Jieyu Liu, Zi-Tong Cheng, Changhong Wang*, Zheng Niu*, Metal-Organic Framework-Based NF3 Nanotrap for the Separation of NF3 and CF4, ACS Applied Materials & Interfaces, 2024, DOI: 10.1021/acsami.4c11528. (中科院二区,影响因子8.3)
[7] Yue Wang#, Yujie Lai#, Jieyu Liu#, Ziwen Fan, Xueheng Quan, Tong Zhang, Changhong Wang*, Cong Xu, Qi Chen, and Zheng Niu*, A Zn-Cluster-Based MOF for Efficient Separation of C3H8/C2H6/CH4, Chem & Bio Engineering, 2024, 1, 658-663.(新期刊)
[8] Guangzhao Wang*#, Zhaofu Zhang#, Yue-Yu Zhang#, Changhong Wang*, Kezhen Qi*, Photocatalysis and electrocatalysis for energy conversion. Frontiers in Chemistry, 2023, DOI: 10.3389/fchem.2022.1128243. (中科院三区,影响因子3.8)
[9] Ying Gao#, Rong Yang#, Changhong Wang#, Cuibo Liu, Yongmeng Wu, Huizhi Li, Bin Zhang*, Field-induced reagent concentration and sulfur adsorption enable efficient electrocatalytic semihydrogenation of alkynes, Science advances, 2022, 8, eabm9477. (中科院一区,影响因子11.7)
[10] Xi Zhang#, Changhong Wang#, Yamei Guo, Bin Zhang, Yuting Wang*, Yifu Yu*, Cu clusters/TiO2-x with abundant oxygen vacancies for enhanced electrocatalytic nitrate reduction to ammonia, Journal of Materials Chemistry A, 2022, 10, 6488-6453. (中科院二区,影响因子10.7)
[11] Jiangwei Shi#, Changhong Wang#, Rong Yang, Fanpeng Chen, Nannan Meng, Yifu Yu, Bin Zhang*, Promoting nitric oxide electroreduction to ammonia over electron-rich Cu modulated by Ru doping, Science China Chemistry, 2021, 64, 1493-1497. (中科院一区,影响因子10.4)
[12] Yongmeng Wu#, Cuibo Liu#, Changhong Wang#, Yifu Yu, Yanmei Shi, Bin Zhang*, Converting copper sulfide to copper with surface sulfur for electrocatalytic alkyne semi-hydrogenation with water, Nature Communications, 2021, 12, 3881. (中科院一区,影响因子14.7)
[13] Shuyan Han#, Changhong Wang#, Yanmei Shi, Cuibo Liu*, Yifu Yu, Siyu Lu, Bin Zhang*, Membrane-free selective oxidation of thioethers with water over a nickel phosphide nanocube electrode, Cell Reports Physical Science, 2021, 2, 100462. (中科院二区,影响因子7.9)
[14] Yanmei Huang#, Changhong Wang#, Yifu Yu*, Yu Yu, Weichao Wang, Bin Zhang, Atomically Dispersed Ru-Decorated TiO2 Nanosheets for Thermally Assisted Solar-Driven Nitrogen Oxidation into Nitric Oxide, CCS Chemistry, 2021, 4, 1208-1216. (中科院一区,影响因子9.4)
[15] Changhong Wang#, Wei Zhou#, Zhaojun Sun, Yuting Wang, Bin Zhang, Yifu Yu*, Integrated Selective Nitrite Reduction to Ammonia with Tetrahydroisoquinolines Semi-dehydrogenation over a Vacancy-Rich Ni Bifunctional Electrode, Journal of Materials Chemistry A, 2021, 9, 239-243. (中科院二区,影响因子10.7)
[16] Shuhe Han#, Changhong Wang#, Yuting Wang, Yifu Yu*, Bin Zhang*, Electrosynthesis of Nitrate via the Oxidation of Nitrogen on Tensile Strained Palladium Porous Nanosheets, Angewandte Chemie-International Edition, 2021, 60, 4474-4478. (中科院一区,影响因子16.1)
[17] Yige Zhao#, Cuibo Liu#, Changhong Wang#, Xiao Dan Chong, Bin Zhang*, Sulfur Vacancy-Promoted Highly Selective Electrosynthesis of Functionalized Aminoarenes via Transfer Hydrogenation of Nitroarenes with H2O over a Co3S4−x Nanosheet Cathode, CCS Chemistry, 2021, 3, 507-515. (中科院一区,影响因子9.4)
[18] Yu Yu#, Changhong Wang#, Yifu Yu*, Yanmei Huang, Cuibo Liu, Siyu Lu, Bin Zhang*, A nitrogen fixation strategy to synthesize NO via the thermally-assisted photocatalytic conversion of air, Journal of Materials Chemistry A, 2020, 8, 19623-19630. (中科院二区,影响因子10.7)
[19] Wenli Sun, Yu Liang, Changhong Wang*, Xia Feng*, Wei Zhou*, Bin Zhang, Computational Design of Copper doped Indium for Electrocatalytic Reduction of CO2 to Formic Acid, ChemCatChem, 2020, 12, 5632-5636. (中科院三区,影响因子3.8)
[20] Yu Yu#, Changhong Wang#, Yifu Yu*, Yuting Wang, Bin Zhang, Promoting selective electroreduction of nitrates to ammonia over electron-deficient Co modulated by rectifying Schottky contacts, Science China Chemistry, 2020, 63, 1469-1476. (中科院一区,影响因子10.4)
[21] Ranran Jia#, Yuting Wang#, Changhong Wang#, Yangfang Ling, Yifu Yu, Bin Zhang*, Boosting Selective Nitrate Electroreduction to Ammonium by Constructing Oxygen Vacancies in TiO2, ACS Catalysis, 2020, 10, 6, 3533-3540. (中科院一区,影响因子11.3)
[22] Tingli Zhou#, Changhong Wang*#, Yanmei Shi*, Yu Liang, Yifu Yu, Bin Zhang*, Temperature-Regulated Reversible Transformation of Spinel-to-Oxyhydroxide Active Species for Electrocatalytic Water Oxidation, Journal of Materials Chemistry A, 2020, 8, 1631-1635. (中科院二区,影响因子10.7)
[23] Dali Liu#, Changhong Wang#, Yifu Yu, Bohang Zhao, Weichao Wang*, Yonghua Du, Bin Zhang*, Understanding the Nature of Ammonia Treatment to Synthesize Oxygen Vacancy-Enriched Transition Metal Oxides, Chem, 2019, 5, 376-389. (中科院一区,影响因子19.1)
[24] Zhi-Lei Wu#, Chang-Hong Wang#, Bin Zhao*, Jie Dong, Feng Lu, Wei-Hua Wang, Wei-Chao Wang*, Guang-Jun Wu, Jian-Zhong Cui, Peng Cheng, A Semi-Conductive Copper–Organic Framework with Two Types of Photocatalytic Activity. Angewandte Chemie-International Edition, 2016, 55, 4938-4942. (中科院一区,影响因子16.1)
[25] Changhong Wang, Wei-Hua Wang, Feng Lu, Yahui Cheng, Liru Ren, Weichao Wang*, and Hui Liu*, Pure and Oxidized Ag Substrate Influence on the Phase Transformation and Semiconducting Behaviors of Layered ZnO: A First-Principles Study. Journal of Physical Chemistry C, 2015, 119, 9, 4891-4897. (中科院三区,影响因子3.3)