景德镇陶瓷大学研究生指导教师个人信息表
姓名 |
余石金 |
性别 |
男 |
出生年月 |
1979.11 |
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专业技术职称 |
正高级工程师 |
导师类别 |
硕士生导师 |
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最后学历 (毕业院校) |
研究生(华中科技大学) |
最后学位 (毕业院校) |
博士(华中科技大学) |
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获聘招生学科 |
电子科学与技术 |
研究方向 |
电子材料与元器件 |
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联系电话 |
13979833949 |
yushijin@163.com |
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个人简历 |
2009年博士毕业于华中科技大学集成电路学院,正高级工程师,近年来主持国家自然基金1项、省部级科研项目4项、省级教改项目4项;市厅级项目11项。发表论文90多篇,其中SCI检索60多篇,授权发明专利4项。研究方向:(一)敏感材料及传感器;(二)能量存储与转化技术。 |
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教学科研情况
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担任研究生课程:
半导体物理、敏感材料与传感器技术
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主要科研项目:
1. 国家自然科学基金委员会,62041107,基于纸基金属氧化物微电极阵列的重金属电化学传感器研究,2021-01至2021-12,主持 2. 江西省自然科学基金项目,20181BAB202005,基于纳米电化学的食品合成色素快速检测传感器研究,2018-01至2020-12,主持 3. 江西省自然科学基金项目,20141BDH80028,基于纳米增敏的痕量重金属电化学传感器及应用研究,2014-01至2016-12,主持 4. 江西省教育厅科技项目,相变诱导合成二元金属氧化物异质结构及其应用研究,2023-01至2024-12,主持 5. 江西省教育厅科技项目,酚类污染物电化学敏感材料的原位制备及其传感特性研究,2020-01至2021-12,主持 6. 景德镇科技局,科技项目,双金属氧化物Fe2(MoO4)3异质结构的制备及其储锂性能研究,2024-01至2025-12,主持 7. 景德镇科技局,科技项目,静电纺丝制备中空纳米纤维及其在锂电池中的应用研究,2022-01至2023-12,主持 8. 景德镇科技局,科技项目,非晶氧化物电极的制备及其电化学性能研究,2021-01至2022-12,主持 9. 江西省教育厅科技项目,纳米材料的形貌调控与电化学传感机理研究,2018-01至2019-12,主持 10. 教育省广东部产学研,2010B090400546,基于纳米电化学传感技术快速检测玩具中重金属及设备研究,2010-01至2012-12,主持
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主要获奖:
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学术论文、论著:
[1] S. Zhang, X. Deng, Y. Liu, Y. Wu, Z. Fu, G. Zhan, Y. Zheng, Y. Wei, H. Zhang, C. Li, S. Yu, H. Zhu, Q. Fu, Flower-like Fe2(MoO4)3/MoO3 heterostructure: Synergistic morphology regulation and heterointerface for enhanced performance in lithium-ion batteries, Journal of Energy Storage, 162 (2026) 122125. [2] Y. Wu, H. Zhu, Z. Fu, Q. Zhou, P. Zhang, Q. Shangguan, H. Zhang, H. Jiang, P. Guo, Y. Wang, S. Yu, Hierarchically porous copper-based metal–organic framework for high-performance PEO-based solid-state electrolytes, Journal of Energy Storage, 165 (2026) 122343. [3] Y. Liu, S. Zhang, X. Deng, G. Zhan, L.a. Cao, Y. Wei, C. Li, Z. Zhu, S. Yu, Q. Fu, H. Zhu, Regulating amorphous/microcrystalline heterostructures to synergistically optimize fast charging performance by adjusting phosphating reaction time, Journal of Energy Storage, 174 (2026). [4] X. Deng, S. Zhang, Y. Liu, Y. Wu, Z. Fu, G. Zhan, Y. Wei, H. Xu, C. Li, S. Yu, H. Zhu, Q. Fu, Boosting NO sensing performance of CuO by Li-Doping: Synergistic regulation of oxygen vacancies and microstructure, Ceramics International, 52 (2026) 14192-14203. [5] H. Zhang, S. Yu, C. Li, H. Gao, H. Zhu, Designing of hollow spindle Fe3O4@SiO2@C composites as high-performance anode for lithium-ion battery, Journal of Power Sources, 658 (2025) 238242. [6] Y. Xiong, H. Zhang, Y. Qian, Y. Wu, Z. Fu, P. Guo, H. Jiang, J. Li, Y.-x. Wang, S. Yu, H. Zhu, Amorphous MnO2 modulates the electrochemical performance of Si@AMOA lithium-ion battery anode materials, Journal of Energy Storage, 108 (2025) 115201. [7] Y. Wu, G. Xu, H. Zhang, Z. Fu, H. Jiang, P. Guo, Y. Wang, S. Yu, H. Zhu, A high ionic conductivity composite polymer solid electrolyte based on UiO-66 modified with -NH2, Electrochimica Acta, 541 (2025) 147355. [8] Y. Qian, H. Zhang, Y. Xiong, Y. Wu, Z. Fu, P. Guo, H. Jiang, J. Li, Y. Wang, S. Yu, H. Zhu, Enhanced low-temperature sensitivity of H2S gas sensing via oxygen vacancy-rich NiO-SnO2 heterojunction nanostructures, Microchemical Journal, 212 (2025) 113177. [9] K. Cao, Y. Wu, D. Gao, J. Xie, T. Dong, L. Chen, H. Zhu, W. Hu, W. Dong, S. Yu, Q. Fu, Giant dielectric performance in La/Ta co-doped BaSnO3: Role of defect dipole clusters and doping level effects, Ceramics International, 51 (2025) 27006-27011. [10] S. Yu, T. Chen, X. He, Z. Zhu, L. Xiao, D. Shi, K. Cao, K. Hu, Y. Wei, C. Li, H. Zhu, L. Kong, Q. Fu, Tuning the pH value of electrospinning precursor to synthesize Fe2O3/MoO2/Fe2(MoO4)3 as anode for lithium-ion batteries to boost the reaction kinetics and energy/power density performance, Electrochimica Acta, 474 (2024) 143572. [11] J. Yin, H. Zhang, Z. Zeng, G. Xu, P. Guo, H. Jiang, J. Li, Y.-x. Wang, S. Yu, H. Zhu, Preparation and electrochemical properties of a ceramic solid electrolyte with high ionic conductivity, Li1.3Al0.3Ti1.7(PO4)3, Journal of Alloys and Compounds, 988 (2024) 174346. [12] G. Xu, T. Chen, H. Zhang, J. Yin, Y. Qian, Y. Xiong, K. Hu, H. Gao, H. Jiang, P. Guo, J. Li, Y. Wang, S. Yu, H. Zhu, Enhancing the electrochemical properties of polyethylene oxide solid-state electrolytes based on a small nano-sized UiO-66 metal-organic framework, Journal of Power Sources, 623 (2024) 235512. [13] T. Chen, Y. Wu, H. Zhang, X. He, Z. Zhu, Y. Wei, C. Li, H. Zhu, S. Yu, W. Dong, Synergistic Regulation of Built-In Electric Field and Interface Effect to Enhance the Reaction Kinetics and Stability of Lithium-Ion Batteries, ACS Sustainable Chemistry & Engineering, 12 (2024) 9078-9090. [14] S. Yu, J. Tong, Y. Wei, T. Chen, X. He, H. Sui, C. Li, H. Zhu, Q. Fu, L. Kong, Tuning the annealing temperature to achieve heterostructured nanofibers for high performance lithium-ion batteries, New Journal of Chemistry, 47 (2023) 167-178. [15] S. Yu, X. He, Z. Zhu, T. Chen, L. Xiao, H. Sui, K. Hu, Y. Wei, C. Li, H. Zhu, Z. Xiao, Dendritic Fe2O3 single crystal for high performance lithium-ion batteries by turning the concentration of the iron source, Journal of Electroanalytical Chemistry, 943 (2023) 117624. [16] Q.-y. Wei, H. Zhu, S.-j. Yu, G.-q. Xu, J.-h. Yin, J.-h. Tong, T.-r. Chen, X.-n. He, P.-c. Guo, H.-d. Jiang, J.-k. Li, Y.-x. Wang, High-performance lithium-ion batteries with different hollow-degree Fe3O4@C hollow nanostructures, Applied Surface Science, 608 (2023) 155093. [17] H. Zhu, T.-h. Zhang, Q.-y. Wei, S.-j. Yu, H. Gao, P.-c. Guo, J.-k. Li, Y.-x. Wang, Preparation of TiO2 electron transport layer by magnetron sputtering and its effect on the properties of perovskite solar cells, Energy Reports, 8 (2022) 3166-3175. [18] H. Zhu, Q. Wei, S. Yu, P. Guo, J. Li, Y. Wang, Synthesis of Hollow Nanostructures Based on Iron Oxides and Their Applications in Lithium-Ion Batteries, Journal of Electronic Materials, 51 (2022) 4207-4223. [19] S. Yu, W. Zhu, Y. Wei, J. Tong, Q. Wei, T. Chen, X. He, D. Hu, C. Li, H. Zhu, Facile Synthesis of Multi-Channel Surface-Modified Amorphous Iron Oxide Nanospheres as High-Performance Anode Materials for Lithium-Ion Batteries, Energies, 15 (2022) 5974. [20] H. Zhu, H. Zhang, T.-h. Zhang, S.-j. Yu, P.-c. Guo, Y.-x. Wang, Z.-s. Yang, Optical and electrical properties of ITO film on flexible fluorphlogopite substrate, Ceramics International, 47 (2021) 16980-16985. [21] H. Zhang, H. Zhu, T.-h. Zhang, S.-j. Yu, P.-c. Guo, Y.-x. Wang, Z.-s. Yang, Effect of sputtering pressure on the optical and electrical properties of ITO film on fluorphlogopite substrate, Applied Surface Science, 559 (2021) 149968. [22] S. Yu, W. Xu, H. Zhu, W. Qiu, Q. Fu, L. Kong, Effect of sputtering power on structure and properties of ZTO films, Journal of Alloys and Compounds, 883 (2021) 160622. [23] S.R. Zhuohao Xiao,Shijin Yu, Yueming Li, LingBing Kong, Qing Huang, Zhengren Huang, Kun Zhou, Haibin Su, Zhengjun Yao, Wenxiu Que, Yin Liu, Tianshu Zhang, Jun Wang, Peng Liu, Deyuan Shen, Mathieu Allix, Jian Zhang, Dingyuan Tang, Materials development and potential applications of transparent ceramics: A review, Materials Science and Engineering: R: Reports, 139 (2020) 100518. [24] G. Wang, Q. Fu, P. Guo, F. Tian, H. Wang, M. Hu, S. Yu, Z. Zheng, W. Luo, A/B-site cosubstituted Ba4Pr28/3Ti18O54 microwave dielectric ceramics with temperature stable and high Q in a wide range, Ceramics International, 46 (2020) 11474-11483. [25] G. Wang, Q. Fu, P. Guo, M. Hu, H. Wang, S. Yu, Z. Zheng, W. Luo, Crystal structure, spectra analysis and dielectric characteristics of Ba4M28/3Ti18O54 (M= La, Pr, Nd, and Sm) microwave ceramics, Ceramics International, (2020). [26] Z. Rao, J. Meng, J. Wu, S. Yu, Q. Fu, Y. Huang, A Multifunctional Inorganic Composite Separator for Stable High-Safety Lithium–Sulfur Batteries, ACS Applied Energy Materials, 3 (2020) 10139-10146. [27] J. Cui, H. Zhang, Y. Liu, S. Li, W. He, J. Hu, J. Sun, Facile, economical and environment-friendly synthesis process of porous N-doped carbon/SiOx composite from rice husks as high-property anode for Li-ion batteries, Electrochimica Acta, 334 (2020) 135619. [28] T. Xie, F. Wang, C. Xie, S. Lei, S. Yu, J. Liu, D. Huang, Mechanical Properties of Natural Rubber Filled with Foundry Waste Derived Fillers, Materials, 12 (2019) 1863. [29] G. Wang, Q. Fu, H. Shi, F. Tian, P. Guo, L. Yan, S. Yu, Z. Zheng, W. Luo, Novel thermally stable, high quality factor Ba-4(Pr0.4Sm0.6)(28/3)Ti18-yGa4y/3O54 microwave dielectric ceramics, Journal of the American Ceramic Society, 103 (2019) 2520-2527. [30] S.Y. Ling Bing Kong, Zhuohao Xiao, Xiuying Li, Wenxiu Que, Yin Liu, Tianshu Zhang, Kun Zhou, Hongfang Zhang, Functional ceramics through mechanochemical activation, IOP Publishing, Bristol, UK, 2019. [31] X.L. Zhuohao Xiaoa, Xinyuan Sun, Shijin Yu, Yi Jiang, Xiuying Li, Hong Jiang, Wenyan Luo, Chuanhu Wang, Tianshu Zhang, Sean Li, Ling Bing Kong, Phase formation and microstructure evolution in mullite ceramics synthesized from mechanochemically activated oxide powders doped with Cr2O3, Journal of Physics and Chemistry of Solids, 123 (2018) 198-205. [32] S. Yu, V.M. Hong Ng, F. Wang, Z. Xiao, C. Li, L.B. Kong, W. Que, K. Zhou, Synthesis and application of iron-based nanomaterials as anodes of lithium-ion batteries and supercapacitors, Journal of Materials Chemistry A, 6 (2018) 9332-9367. [33] Z. Xiao, L.B. Kong, S. Ruan, X. Li, S. Yu, X. Li, Y. Jiang, Z. Yao, S. Ye, C. Wang, T. Zhang, K. Zhou, S. Li, Recent development in nanocarbon materials for gas sensor applications, Sensors and Actuators B: Chemical, 274 (2018) 235-267. [34] C. Li, X. Chen, K. Wu, S. Yu, Signal enhancement of cetyltrimethylammonium bromide as a highly-sensitive sensing strategy for tetrabromobisphenol A, Journal of Electroanalytical Chemistry, 770 (2016) 39-43. [35] L. Ji, Y. Zhang, S. Yu, S. Hu, K. Wu, Morphology-tuned preparation of nanostructured resorcinol-formaldehyde carbonized polymers as highly sensitive electrochemical sensor for amaranth, Journal of Electroanalytical Chemistry, 779 (2016) 169-175. [36] F.W. Hao Tian, Sijie Ge, Junfei Ou, Wen Lia , Shijin Yu, A simple and effective way to fabricate mechanical robust superhydrophobic surfaces, RSC Advances, 6 (2016) 28563–28569.
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