基本信息
邮箱:D201880336@hust.edu.cn
教育与研究经历
2014.09-2018.06:华中科技大学 材料成型及控制工程 工学学士
2018.09-2023.06:华中科技大学 材料加工工程 博士学位
研究方向
锂离子电池制造工程
代表性成果
[1] Ruoyu Xiong, Mengyuan Zhou, Longhui Li, Jia Xu, Maoyuan Li, Bo yan, Dequn Li, Yun Zhang, Huamin Zhou. Decoupled measurement and modeling of interface reaction kinetics of ion-intercalation battery electrodes. Energy Storage Materials, 2022, 54: 836-844.
[2] Ruoyu Xiong, Yun Zhang, Yunming Wang, Lan Song, Maoyuan Li, Hui Yang, Zhigao Huang, Dequn Li, Huamin Zhou. Scalable manufacture of highperformance battery electrodes enabled by a template-free method. Small Methods, 2021, 5(6): 2100280.
[3] Ruoyu Xiong, Yue Yu, Shuyi Chen, Maoyuan Li, Longhui Li, Mengyuan Zhou, Wen Zhang, Bo yan, Dequn Li, Hui Yang, Yun Zhang, Huamin Zhou. Overpotential decomposition enabled decoupling of complex kinetic processes in battery electrodes. Journal of Power Sources, 2023, 533: 232296
[4] Ruoyu Xiong, Tengfang Zhang, Tianlun Huang, Maoyuan Li, Yun Zhang, Huamin Zhou. Improvement of electrochemical homogeneity for lithium-ion batteries enabled by a conjoined-electrode structure. Applied Energy, 2020, 270: 115109.
[5] Ruoyu Xiong, Yue Yu, Taolin Lv, Mengyuan Zhou, Longhui Li, Maoyuan Li, Jingying Xie, Yun Zhang, Huamin Zhou. Revealing the onset condition of Li plating on graphite electrodes under fast charging. Electrochimica Acta, 2022,Under Review
[6] Shuping Li, Ruoyu Xiong, Zhilong Han, Renjie He, Siwu Li, Huamin Zhou, Chuang Yu, Shijie Cheng, Jia Xie. Unveiling low-tortuous effect on electrochemical performance toward ultrathick LiFePO4 electrode with 100 mg cm−2 area loading. Journal of Power Sources, 2021, 515: 230588.
[7] Zhilong Han, Shuping Li, Ruoyu Xiong, Zhipeng Jiang, Mengjun Sun, Wei Hu, Linfeng Peng, Renjie He, Huamin Zhou, Chuang Yu, Shijie Cheng, Jia Xie. Low tortuosity and reinforced concrete type ultra-thick electrode for practical lithiumsulfur batteries. Advanced Functional Materials, 2022, 32(12): 2108669.
[8] Shuping Li, Gangling Tian, Ruoyu Xiong, Renjie He, Shaoqing Chen, Huamin Zhou, Yuanke Wu, Zhilong Han, Chuang Yu, Shijie Cheng, Jia Xie. Enhanced homogeneity of electrochemical reaction via low tortuosity enabling high-voltage nickel-rich layered oxide thick-electrode. Energy Storage Materials, 2022, 46: 443-451.
[9] Mengyuan Zhou, Chen Feng, Ruoyu Xiong, Longhui Li, Tianlun Huang, Maoyuan Li, Yun Zhang, Huamin Zhou. Molecular insights into the structure and property variation of the pressure-induced solid electrolyte interphase on a lithium metal anode. ACS Applied Materials & Interfaces, 2022, 14, 21: 24875-24885.
[10] Longhui Li, Ruoyu Xiong, Xuyang Wang, Mengyuan Zhou, Shuang Sun, Guancheng Shen, Lan Song, Yun Zhang, Huamin Zhou. Sulfonated poly (ether ether ketone) separators with excellent thermal stability and electrolyte wettability for lithium-ion battery. Journal of Materials Science, 2022, 57: 18980-18992.
[11] Tianyu Jiang, Ruoyu Xiong, Tianlun Huang, Maoyuan Li, Yun Zhang, Huamin Zhou. Thermal conductivity of the popgraphene monolayer tailored by strain and defect: A molecular dynamics study. Diamond and Related Materials, 2022, 130:109409.
[12] 宋岚, 熊若愚, 宋华雄, 谭鹏辉, 张云, 周华民. 锂离子电池多尺度非均匀性概述. 储能科学与技术, 2021, 11(2): 487-502.
[13] 周华民,熊若愚,张云,王云明,黄志高,李茂源,张腾方,宋岚. 具有垂直孔道结构的锂离子电池极片的制备方法及产品. 中国, 发明专利, ZL201911239819.2[P], 2019 (第一学生发明人)
[14] 张云,熊若愚,周华民,黄天仑,谭鹏辉,黄志高,李德群,王云明. 一种锂离子电池极片及其制造方法. 中国, 发明专利, ZL201811148948.6[P], 2018(第一学生发明人)
[15] Huamin Zhou, Yun Zhang, Yunming Wang, Maoyuan Li, Ruoyu Xiong. Preparation method and product of lithium-ion battery electrode sheet with vertical vent structures. US, 11183677[P], 2021 (第一学生发明人)
[16] 周华民,熊若愚,张云,陈逸夫,严波,李茂源,杨辉,李德群. 一种锂离子电池电极多相多尺度建模方法及系统. 中国, 发明专利, 202111433503.4[P], 2021 (第一学生发明人)
[17] 张云,熊若愚,周华民,陈舒怡,李茂源,李龙辉,周孟源,李德群. 一种用于电化学分析的单层颗粒电极以及电化学分析方法. 中国, 发明专利,202210380596.7[P], 2022 (第一学生发明人)
[18] 周华民,张云,宋岚,宋华雄,谭鹏辉,黄天仑,熊若愚. 一种锂离子电池极片及其制备方法. 中国, 发明专利, ZL202010814763.5[P], 2020
[19] 周华民,谭鹏辉,张云,黄天仑,王云明,黄志高,张腾方,熊若愚. 一种用于锂离子电池极片的涂布干燥方法和装置. 中国, 发明专利, ZL201910534083.5[P], 2019
荣誉奖励,
[1] 熊若愚, 陈逸夫, 李佳琪, 陈舒怡, 张诗雨. 锂离子电池多尺度仿真设计软件. “宁德时代杯”新能源创新大赛全国金奖, 2022
[2] 熊若愚. 锂离子电池电极厚度方向电极工程机理分析. ATL 首届学术创新挑战赛全国一等奖, 2020
[3] 熊若愚. 具有规模化潜力的高性能厚电极制造技术. 第二届 BTR 新能源科技竞赛全国决赛优秀奖, 2022
[4] 熊若愚, 符岳, 陈丹, 徐佳, 宋岚.多尺度锂离子电池工业仿真软件. “杰瑞杯”第八届中国研究生能源装备创新设计大赛校三等奖, 2021
[5] 熊若愚, 张梦华, 张雅倩, 张伟华. 锂离子电池二阶 RC 模型动态仿真的 Simulink实现. “宁德时代杯”电池建模大赛校第三名, 2019