头像
郑家广
副教授
能源与动力学院
个人邮箱:
jgzheng@just.edu.cn
办公地点:
长山校区能动楼208
通讯地址:
邮政编码:
传真:

您是第10位访问者

  • 男,副教授, 能动学院教师,动力工程及工程热物理(学硕),能源动力(专硕)专业硕士生导师,1992年生,工学博士。


    “深蓝杰出人才”,两次入选省部级青年人才项目,一入选市厅级青年人才项目主持国家自然科学基金青年基金一项,江苏省基础科研项目(青年基金)一项,南开大学教育部重点实验室课题一项, 科研启动基金一项。获评 2021-2022学年优秀教师称号,获评2021年度能源与动力学院青年教师教学竞赛一等奖,2021年度 青年教师教学竞赛三等奖。


    本人研究方向为轻质金属基固态制储氢材料的放氢与再吸氢性能调控,目前已在国内外知名学术期刊Chemical Engineering Journal, Journal of Magnesium and Alloys, Rare Metals, Journal of Materials Chemistry A, International Journal of Hydrogen Energy等刊物以第一(通讯)作者发表学术论文三十余篇,H-index=24。担任中科院一区期刊《Rare Metals》、二区期刊《International Journal of Minerals,Metallurgy and Materials》青年编委,担任Chemical Engineering Journal, Carbon, Applied Surface Science,International Journal of Hydrogen EnergyMaterials Chemistry and Physics国际知名期刊审稿人。


    欢迎对镁基及轻金属配位氢化物固态储氢、制氢材料感兴趣的同学来本课题组学习!


    代表性学术成果:


    Meiling Lv;JiaguangZheng(Correspnding author); Ao Xia; Qingbo Zhang; Zhenxuan Ma; Chao Su; Lei Ge,Bimetallic Ti2NbC2MXene as an efficient catalyst for reversible hydrogen storage in magnesium hydride,Rare Metals, 2025.(通讯作者,中科院一区期刊,影响因子11.2

    Deyu Tang(undergraduate);JiaguangZheng(Correspnding author); Chengguo Yan; Ao Xia; Wei Kong; Arkadii Proskurin; Xiuzhen Wang,Achieving solid-state room temperature dehydrogenation from sodium borohydride composited with glycolic acid,Journal of Alloys and Compounds, 2025, 178494(通讯作者,中科院二区TOP期刊,影响因子5.8

    Ao Xia;JiaguangZheng(Correspnding author); Qingbo Zhang; Meiling Lv; Zhenxuan Ma; Chao Su, Mxene-supported NbVH nanoparticles as efficient catalysts for reversible hydrogen storage in magnesium borohydride,Chemical Engineering Journal, 2024, 496: 154381(通讯作者,中科院一区TOP期刊,影响因子13.3

    Ao Xia;Jiaguang Zheng(Correspnding author); Qingbo Zhang; Yugang Shu; Chengguo Yan; Liuting Zhang; Zhanliang Tao; Lixin Chen, Facile construction of Mxene-supported niobium hydride nanoparticles toward reversible hydrogen storage in magnesium borohydride,Rare Metals, 2024, 43, 43874400.(通讯作者,中科院一区期刊,影响因子11.2

    Chengguo Yan(undergraduate);Jiaguang Zheng(Correspnding author); Ao Xia; Qingbo Zhang; Meiling Lv; Zhenxuan Ma; Chao Su ; Zhendong Yao, Low-temperature hydrogen release exceeding 7 wt% from LiBH4-mannitol composites,International Journal of Hydrogen Energy, 2024, 79, 346-352.(通讯作者,中科院二区TOP期刊,影响因子8.1

    Yugang Shu;Jiaguang Zheng(Correspnding author); Chengguo Yan; Ao Xia; Meiling Lv; Zhenxuan Ma; Zhendong Yao; Hydrogen release of NaBH4below 60°C with binary eutectic mixture of xylitol and erythritol additive,Chinese Journal of Chemical Engineering, 2024, 71, 225-234.(通讯作者,中科院三区期刊,影响因子3.7

    Qingbo Zhang,Jiaguang Zheng(Corresponding author); Ao Xia; Meiling Lv; Zhenxuan Ma; Meijia Liu; Enhanced reversible hydrogen storage in LiBH4-Mg(BH4)2composite with V2C-Mxene,Chemical Engineering Journal, 2024, 487: 150629(通讯作者,中科院一区TOP期刊,影响因子13.3

    Chengguo Yan(undergraduate); Qinan Wu;Jiaguang Zheng(Corresponding author); Dan Li; Jiaguan He; Yugang Shu; Meijia Liu; Liuting Zhang; Solid-state hydrogen generation from NaBH4using mannitol as a bi-functional additive,International Journal of Hydrogen Energy, 2023, 48(83):32459-32468(通讯作者,中科院二区TOP期刊,影响因子8.1

    Z. Zhang, D. Q. Gao,J. G. Zheng(corresponding author), A. Xia, Q. B. Zhang, L. Wang, L. T. Zhang,Heterostructured VF4@Ti3C2 catalyst improving reversible hydrogen storage properties of Mg(BH4)2,Chemical Engineering Journal, 2023, 460: 141690.

    C. G. Yan(undergraduate), X. Lu,J. G. Zheng(corresponding author), Y. Zhang, Q. N. Wu, F. Y. Wu, L. T. Zhang,Dual-cation K2TaF7 catalyst improves high-capacity hydrogen storage behavior of MgH2,International Journal of Hydrogen Energy, 2023, 48(15):6023-6033.(高被引论文)

    Y. Zhang,J. G. Zheng(corresponding author), Z. Y. Lu, M. C. Song, J. H. He, F. Y. Wu, L. T. Zhang,Boosting the hydrogen storage performance of magnesium hydride with metal organic framework-derived Cobalt@Nickel oxide bimetallic catalyst,Chinese Journal of Chemical Engineering, 2022, 52: 161-171.

    J. G. Zheng, M. J. Liu, F. Y. Wu, L. T.Zhang, Enabling easy and efficient hydrogen release below 80 °C from NaBH4 with multi-hydroxyl xylitol,International Journal of Hydrogen Energy, 2021, 46: 28156-28165.

    J. G. Zheng, X. C. Wang, X. Z. Xiao, H. Cheng, L. T.Zhang, L. X. Chen, Improved reversible dehydrogenation properties of Mg(BH4)2catalyzed by dual-cation transition metal fluorides K2TiF6and K2NbF7,ChemicalEngineering Journal, 2021, 412: 128738.

    J. G. Zheng,Z. D. Yao, X. Z. Xiao, X. C. Wang, J. H. He, M. Chen, H. Cheng, L. T. Zhang, L. X. Chen, Enhanced hydrogen storage properties of high-loading nanoconfined LiBH4-Mg(BH4)2composites with porous hollow carbon nanospheres,International Journal of Hydrogen Energy, 2021, 46(1):852-864.

    J. G. Zheng, H. Cheng, X. C. Wang, M. Chen, X. Z. Xiao and L. X. Chen, LiAlH4as a “Microlighter” on theFluorographiteSurface Triggering the Dehydrogenation of Mg(BH4)2: Toward More than 7wt% Hydrogen Release below 70 °C.ACS Applied Energy Materials, 2020, 3, 3033-3041.

    J. G. Zheng, H. Cheng, X. Z. Xiao, M. Chen and L. X. Chen, Enhanced low temperature hydrogen desorption properties and mechanism of Mg(BH4)2composited with 2DMXene.International Journal of Hydrogen Energy, 2019, 44, 24292-24300.

    J. G. Zheng, X. Z. Xiao, L. T. Zhang, S. Q. Li, H. W. Ge and L. X. Chen, Facile synthesis of bowl-like 3D Mg(BH4)2-NaBH4-fluorographene composite with unexpected superior dehydrogenation performances.Journal of Materials Chemistry A, 2017, 20, 9723-9732.

    J. G. Zheng, X. Z. Xiao, L. T. Zhang, Y. He, S. Q. Li, H. W. Ge and L. X. Chen, Study on the dehydrogenation properties and reversibility of Mg(BH4)2-AlH3composite under moderate conditions.International Journal of Hydrogen Energy, 2017, 42, 8050-8056.

    J. G. Zheng, X. Z. Xiao, Y. He, M. Chen, M. J. Liu, S. Q. Li and L. X. Chen, Enhanced reversible hydrogen desorption properties and mechanism of Mg(BH4)2-AlH3-LiH composite.Journal of Alloys and Compounds, 2018, 762, 548-554.

    H. Cheng,J. G. Zheng(co-author), X. Z. Xiao, X. C. Wang, S. Q. Li and L. X. Chen, Ultra-fast dehydrogenation behavior at low temperature of LiAlH4modified byfluorographite.International Journal of Hydrogen Energy, 2020, in press.

    L. T. Zhang,J. G. Zhengco-author, X. Z. Xiao, X. C. Wang, X. Huang, M. J. Liu, Q. D. Wang and L. X. Chen, A new strategy to remarkably improve the low-temperature reversible hydrogen desorption performances of LiBH4by compositing with fluorographene.International Journal of Hydrogen Energy, 2017, 42, 20046-20055.

    L. T. Zhang,J. G. Zhengco-author, X. Z. Xiao, X. L. Fan, X. Huang, X. L. Yang and L. X. Chen, Enhanced hydrogen storage properties of adualcation(Li+,Mg2+) borohydride and its dehydrogenation mechanism.RSC Advances, 2017, 7, 36852-36859.


  • 轻质高容量固态储氢材料(镁基储氢材料;轻金属硼氢化物、铝氢化物储氢材料)的结构设计、可控制备及其吸放氢性能调控。

  • 现教授课程:

    《氢能科学基础》(新能源科学与工程专业必修专业基础课);

    《专业认识实习》(新能源科学与工程专业必修专业实践课);

    《工程材料基础》新能源科学与工程专业选修专业课)。


    曾教授课程:

    《氢能与燃料电池》(新能源专业选修课);

    《船舶清洁能源技术》(新能源专业选修课);

    《太阳能光伏并网发电及其逆变控制》(新能源专业选修课);

    《光伏逆变器设计》(新能源专业实验课);

    《专业认识实习》(新能源专业必修);

    《机械制造基础》(能源动力、新能源专业选修课)。

Baidu
map