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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg2. 镍钴基多级核壳纳米棒阵列负极材料的结构调控与储钠机理研究,陕西省自然科学基础研究计划_一般项目_面上项目,5万,排名(2/5),2025.01.01-2026.12.31
3. 磷酸基低共熔溶剂的设计及其浸出三元正极材料的机理研究,陕西省自然科学基础研究计划_一般项目_面上项目,5万,排名(2/5),2025.01.01-2026.12.31
4. 高密度复合钒氮合金技术研发,企业横向(20230319),130万,排名(1/11),2023.05.01-2025.12.31
5. 高性能钒基电极材料及液流电池电解液制备关键技术研发,企业横向(20230318),110万,排名(1/11),2023.05.01-2025.12.31
6. 钒电池电堆用材料关键技术研发,企业横向(20230704),40万,排名(2/9),2023.04.21-2025.06.03
7. 电解制氢用钒基多孔阴极制备技术开发,陕西省科技厅区域创新能力引导计划(S2022YDQFY0023),40万,排名(1/6),2022.01-2023.12.
8. 热致相变钒氧化物纳米粉体及薄膜材料制备技术开发,陕西省科技厅区域创新能力引导计划(S2022YDQFY0025),60万,排名(4/9),2022.01-2023.12.
9. NiMo镀层修饰多孔VTi基析氢阴极的催化性及稳定性研究,陕西省自然科学基础研究基金青年人才项目(2020JQ681),3万,排名(2/5),2020.01.01-2021.12.31.
10. NiFe2O4/NanoTiN阳极气泡行为及电化学性能研究,陕西省自然科学基础研究基金青年人才项目(2019JQ761),3万,排名(1/4),2019.01.01-2021.10.14.
11.铝电解槽废旧阴极中难处理杂质反应特性及分离调控机制研究,国家自然科学基金面上项目(51974219),60万,排名(3/10),2020.01.01-2023.12.31
12. NiFe2O4/NanoTiN陶瓷基惰性阳极微结构分形特征及热应力研究,国家自然科学基金青年科学基金项目(51504177),排名(1/8),23.8万,2016.01.01-2019.03.26
13. Cu2ZnSnS4光电功能材料湿法微结构可控沉积及其性能基础研究,国家自然科学基金青年科学基金项目(51504181),排名(3/7),23.7万,2016.01.01-2019.03.26
14. 富Li、K复杂铝电解质熔盐化学及其协同作用下离子界面行为研究,国家自然科学基金面上项目(51574191),排名(2/7),78.6万,2016.01.01-2020.07.07
15. 超顺磁性纳米四氧化三铁颗粒一步还原可控制备及其合成机理研究,国家自然科学基金青年科学基金项目(51404181),排名(3/8),25万,2015.01.01-2017.12.31
16. 电热还原法一步制备VTiCrNi系储氢合金及其杂质控制机制研究,国家自然科学基金青年科学基金项目(51404183),排名(3/8),25万,2015.01.01-2017.12.31
17. 纳米La2O3掺杂NiFe2O4阳极合成机制与电学性能研究,陕西省教育厅专项科研项目(14JK1425),排名(1/4),2万,2014.07.01-2016.10.08
【学术著作】:
[1] NiFe2O4基惰性阳极材料的烧结行为及应用性能, 冶金工业出版社, 2019, 著.
[2] 现代材料分析测试方法与应用, 冶金工业出版社, 2022, 编著.
[3] 有色冶金环保与资源综合利用, 冶金工业出版社, 2017, 编著.
[4] 常用有色金属冶炼方法概论, 冶金工业出版社, 2016, 编著.
【期刊论文】:
[1] Jinjing Du, Jiayi Ma, Xinxin Cui, Xun Liu, et al. Zr and F co-modified Li2TiO3 with obviously enhanced Li+ adsorption performances. Separation and Purification Technology, 392, 2026, 137043.
[2] Jinjing Du, Yu Zhou, Xinhai Liu, Xinxin Cui, et al. Rational design of porous vanadium-based alloys modified with a Ni-Cu-Mocoating for alkaline water electrolysis. Electrochimica Acta, 499, 2024, 144676.
[3] Jinjing Du, Yuehao Guo, JianGuo Zhang,Dongbo Wang, et al. Green transformation of photovoltaic silicon mud to a high-performance P-Si@RGO anode material by magnesium thermal reduction via electrostatic assembly technology. Diamondand Related Materials, 152, 2025, 111947.
[4] Jinjing Du, Jiayi Ma, Xinxin Cui, Xun Liu, et al. Synthesis and Adsorption Performance of Modified Granular Lithiumlon Sieve. JOM, 78(3), 2026, 2622-2632.
[5] JinjingDu, Yu Zhou, Xinxin Cui, Yuxiang Yangxuan, et al. Preparation and Electrochemical Properties of Nitrogen-Doped MXenes Porous Hydrogen Evolution Cathode Materials by Molten Salt Method. Catalysis Letters, 155, 2025, 202.
[ 6] Jinjing Du, Dongbo Wang, Jiayi Ma, Ruitong Zhai, Haiyang Lin, et al. DBM/Cyanex923 Coextracts Lithium from High-Sodium Lithium-Containing Wastewater. JOM, 2025, https://doi.org/10.1007/s11837-025-07610-w.
[7] Jinjing Du, Ruitong Zhai, Haiyang Lin, Jingtian Liu, et al.Hydrothermal-Assisted Electrophoretic Deposition for Preparing Eu-Doped VO2 Films and Characterization of the Thermochromic and Mechanical Properties, Journal of Materials Engineering and Performance, 35, 2026, 6961-6969.
[8] JinjingDu, Dongbo Wang, JiaYi Ma, et al. Extraction of Lithium fromHigh-Sodium Wastewater Based on DBM/TBP Technology, JOM, 77, 2025, 3015-3027.
[9] Jinjing Du, Haiyang Lin, RuitongZhai, Xun Liu, et al. Preparation of Vanadium Trioxide from Ammonium Metavanadate and Application in Vanadium Redox Flow Battery Electrolyte. JOM, 77,2025, 7737-7747.
[10] Jinjing Du, Xinxin Cui, Yu Zhou, Yuxiang Yangxuan, et al. Codeposition Mechanism and Electrochemical Performance of a Ni-Mo-W/NF Electrocatalyst for Hydrogen Evolution. JOM, 77, 2025, 5716-5725.
[11] Jinjing Du, Haiyang Lin, Ruitong Zhai, et al. Effect of hexanol-based additives on the performance of positive electrolyte for vanadium redox flow battery. Ionics, 31, 2025: 9119-9131.
[12] JinjingDu, Xinxin Cui, Yu Zhou, Yuxiang Yangxuan, et al. Electrodeposition of Ni-Mo-PTernary Alloy Electrocatalyst for Hydrogen Evolution Reactions. JOM, 2025, https://doi.org/10.1007/s11837-025-07619-1.
[13] Jinjing Du, Jingtian Liu, Ye Sun, et al. Preparation and Performance of Ce-Doped V2O5 Thin Films Deposited on FTO Substrates, Journal of Materials Engineering and Performance, 34, 2025, 16318-16326.
[14] Jinjing Du, Ruitong Zhai, Haiyang Lin, Jingtian Liu, et al. Hydrothermal-AssistedElectrophoretic Deposition for Preparing Eu-Doped VO2 Films and Characterization of the Thermochromic and Mechanical Properties. Journal of Materials Engineering and Performance, 2025, https://doi.org/10.1007/s11665-025-12090-9.
[15] 杜金晶, 马嘉艺, 李小鹏等. 磷酸锂体系中D401螯合树脂对Ca2+、Mg2+的吸附机理及行为, 有色金属科学工程, 2025, 16(5), 192-202.
[16] Jinjing Du, Yu Zhou, Xuan Zhang,Dandan Zhao, et al. Preparation and Electrochemical Performance of Ni-Mo-W/NF Electrodes for Alkaline Water Electrolysis. Catalysis Letters,154, 2024, 5323-5336.
[17] 杜金晶, 孙晔, 朱军等. 五氧化二钒薄膜材料制备方法研究进展, 材料导报, 38(5), 2024, 22100297.
[18] Jinjing Du, Yuehao Guo, Bin Wang,et al. Effect of SiO2 Coating on Microstructure and Electrochemical Properties of LiNi0.5Mn1.5O4 Cathode Material,Jourmnal of Electrochemical Energy Conversion and Storage, 21, 2024, 011002.
[19] 杜金晶, 鲍彦如, 王雪等. 提钒尾矿综合回收利用研究现状, 矿冶工程, 44(2), 2024, 153-166.
[20] Bin Wang, Yuehao Guo, Jinjing Du*, QianLi, et al. Green utilization of silicon slime: recovery of Si and synergeticpreparation of porous silicon as lithium-ion battery anode materials. Ionics, 29,2023, 5099-5110.
[21] 杜金晶, 孙晔, 朱军等. 电沉积辅助溶胶-凝胶法制备V2O5薄膜及其性能研究, 矿冶工程, 43(5), 2023, 164-168.
[22] 杜金晶, 刘心海, 王斌等. 电沉积制备CuNiMo三元电极及其析氢性能, 表面技术, 52(8), 2022, 380-386. EI.
[23] Jinjing Du, Meng Zhou, Xingliang Zhang, et al. ComparativeStudy on the Morphology and Electrochemical Performance of Self-made and Commercial LiNi0.5Mn1.5O4 Electrode. International Journal of Electrochemical Science, 16(6), 2021, 210653.
[24] Bin Wang, Jinjing Du*, Shoukun Gao, Meng Zhou, Erhu Li, Linbo Li. Sintering Behavior and Fracture Morphology of NiFe2O4/NanoTiN Ceramics Synthesized under Argon Atmosphere,Journal of Materials Engineering and Performance, 16, 2020, 7971-7980.
[25] Bin Wang, Jinjing Du*, ShoukunGao, Zhao Fang, Jun Zhu, Linbo Li. Effect of Sintering Atmosphere on the SynthesisProcess, Electrical and Mechanical Properties of NiFe2O4/NanoTiN Ceramics, Journal of Materials Engineering and Performance, 28, 2019,423-430.
[26] Bin Wang, Jinjing Du*, YihanLiu, Zhao Fang, Ping Hu. Effect of TiO2 addition on grain growth, anodicbubble evolution and anodic overvoltage of NiFe2O4 based compositeinert anodes, Journal of Materials Engineering and Performance, 26, 2017, 5610-5619.
[27] Bin Wang, Jinjing Du*, YihanLiu, Guangchun Yao. Effect of TiO2 doping on the sintering process, mechanicaland magnetic properties of NiFe2O4 ferrite ceramics, International Journal of Applied Ceramic Technology, 12(3), 2015, 658-664.
[28] Jinjing Du, Yihan Liu, GuangchunYao, et al. Microstructure, pyroconductivity and mechanical properties of NiFe2O4composite reinforced with ZrO2 fibers, Journal of Materials Engineeringand Performance, 22(6), 2013, 1776-1782.
【专利】
申请专利20余项,其中代表性授权专利:
[1] 一种二氧化钒薄膜及其制备方法和应用, ZL202310356766.2, 授权发明专利, 2025.
[2] 一种TiFe基多孔析氢阴极材料、制备方法及应用, ZL201910645662.7, 授权发明专利, 2021.
[3] 一种熔盐电解制备金属锌的方法, ZL201810387065.4, 授权发明专利, 2021.
[4] 一种V-Ti-Ni基多孔析氢阴极材料、制备方法及应用, ZL201910645199.6, 授权发明专利, 2021
[5] 一种Ti-Mn基多孔析氢阴极材料、制备方法及应用, ZL201910645206.2, 授权发明专利, 2021.
[6] 一种NiFe2O4导电材料及其制备方法, ZL201710861283.2, 授权发明专利, 2020.
[7] 一种制备氮化钒的方法, ZL201711030484.4, 授权发明专利, 2020.
[8] 一种V-Ti-Fe储氢合金粉的液相反应制备方法, ZL201710463553.4, 授权发明专利, 2019.
[9] 一种V-Ti-Fe储氢合金粉的气相反应制备方法, ZL201710463345.4, 授权发明专利, 2019.
[10] 一种钒铝合金的电解制备方法, ZL201610140170.9, 授权发明专利, 2018.
[11] 一种V-Ti基储氢合金的制备方法, ZL201510783896.X, 授权发明专利, 2017.
[12] 电热还原法制备V-Ti-Fe系储氢合金, ZL201510338166.9, 授权发明专利, 2017.
[13] 一种低温电解铝装置, ZL201521135910.7, 授权实用新型专利, 2016.
1. 新型钒氮合金推板窑工艺与装备研究及产业化,中国有色金属工业科学技术奖,一等奖, 2018.

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