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张恒

时间:2022-09-19 13:50:45  浏览:


张恒 博士

邮箱: zhangheng@usts.edu.cn; zhangheng_028@163.com

办公地址: 院士楼323

教育

PhD (洁净能源科学) 西南大学,导师:李长明教授2019.9-2022.6

MS (应用化学) 新疆大学,导师:宿新泰教授,2016.9-2019.6

BS (化学工程与工艺) 四川轻化工大学,2012.9-2016.6

工作经历

2022.7-至今 讲师,材料科学与工程学院,苏州科技大学

重要奖项与荣誉 ():

2026Exploration科技期刊学术贡献二等

2025,第五届江苏省大学生节能减排社会实践竞赛一等奖(指导老师R1

2025宏宇环境杯苏州科技大学第七届大学生节能减排社会实践与科技竞赛三等奖(指导老师R1

20242026省级大学生创新创业训练计划项目(指导教师R1

2022,曾苏民卓越科研创新奖

2021,九环新越科研创新奖

担任ExplorationRare MetalsCarbon NeutralizationEnergy MaterialsEnergy&Environmental Materials等国际期刊的青年编委担任Energy Materials的客座编辑,担任Advanced Materials, Advanced Functional Materials, Nano-Micro Letters, ACS Nano, Energy Storage Materials国际期刊的邀请审稿人

承担科研项目 ()

[1] 江苏省自然科学基金青年项目,主持

[2] 中国博士后科学基金面上资助,主持

[3] 乐山西部硅材料光伏新能源产业技术研究院开放课题,主持

[4] 磷酸铁及磷酸锰铁材料的物相分析(横向课题),主持

[5] 苏州科技大学人才引进项目,主持

研究与近三年代表性论文 ():

近几年研究兴趣主要集中在钠离子、钠硫、锂离子电池电极材料和电解液及其界面等方面,并取得了一系列成果,截止目前已发表SCI论文80余篇,其中以第一或通讯作者在MatterACS NanoAdvanced Energy MaterialsAdvanced ScienceNano EnergyAdvanced Functional MaterialsEnergy Storage Materials等期刊发表50篇,h指数29(谷歌学术)

ORCID: https://orcid.org/0000-0003-2734-2193

Researchgate: https://www.researchgate.net/profile/Heng-Zhang-61

[10] H. Wang (本科生), G. Cao, J. Cheng, B. Chen, X. Xia, Y. Bai*, Z. Ye, B. Wang, F. Liu*, Heng Zhang*, Defect-rich molybdenum dioxide cluster coupled hierarchical carbon toward advanced Na-S batteries, Chem. Commun., 2026, 62, 2624-2628.

[9] G. Cao, Y. Bai, J. Cheng, Z. Ye, R. Ma, L. Qiu, Heng Zhang*, W. Sun*, C. M. Li*, Activating high-entropy oxide/carbon via an electron transport layer accelerates polysulfide conversion in Na-S batteries, Nano Energy, 2026, 158, 112345.

[8] X. He, C. Li, L. Jiang, Heng Zhang*, Y. Bai, X. Tan*, Q. Zheng, Y. Huo, S. Smith, D. Lin*, H. Y. Yang*, Regulating interfacial transport regime from diffusion-limited to migration enhanced for stable zinc anodes, Nano Energy, 2026, 148, 111645.

[7] Y. Bai, Heng Zhang*, Y. Gu, X. Zhou, J. Wang, W. Liang*, S. X. Dou, L. Li*, Emerging high-entropy materials for rechargeable batteries, Matter, 2026, 9, 102556.

[6] Heng Zhang, Y. Bai*, W. Sun, X. Yang, R. Ma, L. Dai*, C. M. Li*, Realizing the Synergy of Interface and Dual-Defect Engineering for Molybdenum Disulfide Enables Efficient Sodium-Ion Storage, ACS Nano, 2025, 19, 9081-9095.

[5] Heng Zhang, J. Cheng, L. Qiu, W. Sun, Y. Bai*, H. Y. Yang*, C. M. Li*, A General Interfacial-Tuning Strategy for Synthesis of Delocalized Molybdenum Dioxide-Based Rods Enables Efficient Na+ Storage, Advanced Functional Materials, 2025, 2425947.

[4] Heng Zhang, Y. Bai*, J. Li, J. Liu, G. Cao, J. Cheng, W. Sun, C. M. Li*, Ternary Molybdenum Oxyphosphide Based Hybrid Nanotubes Boosts Sodium-ion Diffusion Kinetics Enabled through Oxygen-deficient Modulation, Nano Energy, 2025, 135, 110625.

[3] T. Song, W. Fan, Y. Hu, Y. Bai*, Heng Zhang*, Research trajectory and horizon of electrolyte additives and separators in room temperature Na-S batteries: A comprehensive review, Energy Storage Materials, 2025, 80, 104401.

[2] Y. Bai, Q. Lv, Z. Wu, W. Sun, W. Liang, Heng Zhang*, R. Ma*, C. M. Li*, Intercalation-Assisted In Situ Exfoliation of Cu2Se Nanosheets as Anode for Ultralong-Life Aqueous “Rocking-Chair” Zinc-Ion Batteries, Advanced Functional Materials, 2025, 35 (14), 2418511.

[1] Heng Zhang, J. Wu, Z. Zou, Y. Bai, C. Wu, Q. Zeng, F. Liu, W. Shen, J. Jiang*, C. M. Li*, Create Rich Oxygen Defects of Unique Tubular Hierarchical Molybdenum Dioxide to Modulate Electron Transfer Rate for Superior High-Energy Metal-Ion Hybrid Capacitor, Energy Environmental Materials, 2023, 6, e1237