
姓名:杜浩然
出生年月:1992.12
导师类型:硕士研究生导师
电子邮箱:duhr@hfuu.edu.cn
研究团队:先进电池关键材料与技术平台
办公(实验室)地址:34#N305(53#705)
主要研究方向:新型二次电池储能器件
(1)水系电池(锌离子电池、液流电池等)
(2)锂基电池(锂离子电池、固态电池等)
(3)寒区储能
个人简介:
o 2023.10至今,合肥大学,能源材料与化工学院,讲师。
o 2019.09至2023.05,同济大学,材料科学与工程,博士。
o 2021.09至2023.04,华中科技大学,联合培养(博士生期间)。
o 2015.09至2018.06,安徽师范大学,物理化学,硕士。
多年来一直从事锌基水系电池、锂离子电池、锂金属电池等新型二次电池储能器件方面的研究工作,主持参与了多项新能源及储能领域的国家级/省级项目,累计发表SCI论文30余篇,2篇入选前1% ESI“高被引论文”。在Adv. Mater.、Angew. Chem. Int. Ed.、Adv. Funct. Mater.、Energy Storage Mater.、ACS Nano等高水平期刊以第一作者/通讯作者发表论文14篇。
[1] Rui Li, Jie Ji, Haoran Du*, Shuai Huang, and Long Qie*, Quantitative Design Targets and Practical Pathways for High-Energy-Density Aqueous Zinc-Metal Batteries, ACS Nano, 2026, In press.(特邀综述,中科院一区Top期刊,影响因子16.0,共同通讯作者)
[2] Shuai Huang, Haoran Du*, Xige Li, Rui Li, Yufeng Yang*, and Long Qie*, Nickel-iron batteries: Overcoming traditional barriers and ushering in a new era of energy storage, eScience Energy, 2026, In press.(特邀综述,2025年新期刊,共同通讯作者)
[3] Haoran Du*, Shanjie Zhang, Wenjuan Yang, Kunhong Hu, Lei Hu, Xinfeng Zhang, Yi Zhao, Wei Yang, Xin Liang*, and Long Qie*, Sustained single-textured zinc electrodeposition via organic-inorganic hybrid molecular design for high-capacity aqueous zinc-metal batteries, Nano Research, 2026, In press.(中科院一区Top期刊,影响因子9.0,第一作者/通讯作者)
[4] Haoran Du, Shanjie Zhang, Qing Ban, Kunhong Hu, Wenjuan Yang, Yi Zhao, Xinfeng Zhang, Qiankun Chen, Wei Yang, Xin Liang, Long Qie, Anion-driven polarity reconstruction of electrolyte microenvironment enables long-life zinc-metal batteries at low temperatures, Chinese Chemical Letters, 2026, DOI:10.1016/j.cclet.2026.112654(中科院一区Top期刊,影响因子8.9,第一作者)
[5] Jie Ji, Haoran Du*, Zhenglu Zhu, Xiaoqun Qi, Fei Zhou, Rui Li, Ruining Jiang, Long Qie*, Yunhui Huang, Thin Zinc Electrodes Stabilized with Organobromine-Partnered H2O-Zn-MeOH Cluster Ions for Practical Zinc-Metal Pouch Cells, Angewandte Chemie International Edition, 2025, 64(2): e202414562.(中科院一区Top期刊,影响因子16.9,共同通讯作者)cite:12
[6] Haoran Du#, Yanhao Dong#, Qing-Jie Li#, Ruirui Zhao, Xiaoqun Qi, Wang Hay Kan, Liumin Suo, Long Qie*, Ju Li*, and Yunhui Huang*, A new zinc salt chemistry for aqueous zinc-metal batteries, Advanced Materials, 2023, 35(25): 2210055.(中科院一区Top期刊,影响因子26.8)cite:73
[7] Haoran Du, Ruirui Zhao, Ying Yang, Zhikang Liu, Long Qie*, and Yunhui Huang*, High-capacity and long-life zinc electrodeposition enabled by a self-healable and desolvation shield for aqueous zinc-ion batteries, Angewandte Chemie International Edition, 2022, 61(10): e202114789.(中科院一区Top期刊,影响因子16.9,ESI高被引论文)cite:168
[8] Haoran Du, Ruirui Zhao, Jie Ji, Xiaoqun Qi, Ru Wang, Long Qie*, Yunhui Huang, Design of a permselective interface for highly stable Zn electrodeposition, Energy Storage Materials, 2023, 54: 461-468.(中科院一区Top期刊,影响因子20.2)cite:17
[9] Haoran Du, Xiaoqun Qi, Long Qie*, and Yunhui Huang, A nonflammable organic electrolyte with a weak association state for zinc batteries operated at −78.5 °C, Advanced Functional Materials, 2023, 33(33): 2302546.(中科院一区Top期刊,影响因子19.0)cite:35
[10] Yaqin Ji#, Haoran Du#, Kang Wang, jian Ma, Wenjuan Yang, Xulai Yang, Zhenzhen Liu, Xing Liang*, Huaxia Deng*, and Hongfa Xiang*, Self-purification and surface-coordination dual-polymer/Li6.4La3Zr1.4Ta0.6O12 interphase achieves Li+-transport-enhanced composite solid-state electrolyte, Journal of Power Sources, 2025, 646, 237289.(中科院三区期刊,影响因子7.9,共同第一作者)cite:1
[11] Haoran Du, Kuangfu Huang, Min Li, Yuanyuan Xia, Yixuan Sun, Mengkang Yu, and Baoyou Geng, Gas template-assisted spray pyrolysis: A facile strategy to produce porous hollow Co3O4 with tunable porosity for high-performance lithium-ion battery anode materials, Nano Research, 2018, 11(3): 1490-1499.(中科院一区期刊Top期刊,影响因子9.0)cite:55
[12] Haoran Du, Chao Yuan, Kuangfu Huang, Wenhai Wang, Kai Zhang, and Baoyou Geng*, A novel gelatin-guided mesoporous bowknot-like Co3O4 anode material for high-performance lithium-ion batteries, Journal of Materials Chemistry A, 2017, 5(11): 5342-5350.(中科院二区,影响因子9.5)cite:99
[13] Haoran Du, Kuangfu Huang, Wei Dong, and Baoyou Geng, A general gelatin-assisted strategy to hierarchical porous transition metal oxides with excellent lithium-ion storage,Electrochimica Acta, 2018, 279, 66-73.(中科院二区期刊,影响因子5.6)cite:20
[14] Haoran Du, Zheng Liu, Kuangfu Huang, Mengkang Yu, Hongxia Sun, and Baoyou Geng, Solubility-dependent gelatination toward N-doped SnOx/C deriving from commercial SnO2 for the ultrastable lithium storage, Journal of Power Sources, 2019, 441, 227172.(中科院三区期刊,影响因子7.9)cite: 14
科研项目
[1] 2024年国家自然科学基金青年项目,高离域性两亲锌盐实现水系锌离子电池中锌负极的稳定循环(22409049),2025.01-2027.12,30万,主持。
[2] 2024年安徽省高等学校科学研究项目(重点项目),金属有机盐对水系锌电池锌负极电化学行为的调控研究(2024AH051520),2024.09-2026.08,10万,主持。
[3] 2024年合肥大学人才科研基金项目,电解液缔合态调控构建长循环稳定的水系锌电池(24RC37),2024.12.01-2027.11.30,12万,主持。
[4] 安徽省科技创新攻坚计划项目,高能量密度全固态电池研发及产业化,子课题“全固态电池界面设计及失效分析”(202423h08050005),2024.07-2027.07,20万,参与。
[1] 杜浩然,张善杰,陈乾坤,磺酸锌盐及其制备方法与应用、水系锌离子电池电解液(2026年受理)
[2] 杜浩然,伽龙,张善杰,基于酰亚胺的两亲性双功能水系电解液添加剂、制备方法及应用,申请号:CN202510276327.X(2025年实审)
[3] 伽龙,杜浩然,一种两亲性有机锌盐及其制备方法与应用,2025.05.09,授权公告号:CN116143669B(已授权)
[4] 耿保友,杜浩然,多孔球形四氧化三钴电极材料及其制备方法和应用,2018.09.18,授权公布号:CN106335930B(已授权)
出版专著/教研论文
[1] 《电化学原理与测试技术》,北京:机械工业出版社,2024,ISBN:978-7-111-76259-1(副主编)
[2] 杜浩然,刘伶俐,梁鑫.新能源产业需求导向的综合实验设计——以电解液低温离子传输性能测试为例[J].长春师范大学学报, 2025, 44(12): 79-84.
获奖情况
[1] 2025年安徽省大学生创新大赛,《低温不“锌”寒-基于阴离子桥连效应的超低凝固点抗冻电解液》,校赛银奖,指导老师:杜浩然、杨文娟、梁鑫
[2] 2024年安徽省大学生创新大赛,《“双机”合作—助力实现锂硫电池高性能》,省赛金奖,指导老师:梁鑫、杨文娟、杜浩然
[3] 2025年安徽省大学生创新大赛,《双机双护,有机无机复合膜协同固硫稳锂新策略》,校赛银奖,指导老师:梁鑫、杨文娟、杜浩然
