1)张克宇(1/4); 第二届全国高校教师教学创新大赛云南赛区比赛暨第五届云南省高校教师教学大赛三等奖, 云南省教育厅, 其他, 其他, 2022.05.13 (姚耀春; 徐明丽; 梁风; 张克宇) (教学奖励) 2)张克宇(1/1); 2022年度云南省优秀博士学位论文, 云南省教育厅, 其他, 其他, 2023 (张克宇) 3)张克宇(1/2); 中国化工学会会刊高被引论文奖:锂离子电池磷酸铁锂正极材料的研究进展, 中国化工学会, 其他, 其他, 2021 (张克宇; 姚耀春) 4)张克宇(1/7); 中国有色金属学报征稿优秀论文奖, 中国有色金属学会, 其他, 其他, 2021 (张克宇; 崔丁方; 高耕; 张利波; 杨斌; 戴永年; 姚耀春) 5)张克宇(1/1); 2021第一届新威学术论文奖(新威优秀奖), 深圳市新威尔电子有限公司, 其他, 其他, 2020 (张克宇) |
1)张克宇,赵檠,姚耀春,等;一种中空结构草酸亚铁锂离子电池负极材料的制备方法,2024-01-11,中国CN202410042871.3 2)张克宇,姚耀春,崔丁方,等;一种不规则六方纳米片状草酸亚铁锂/钠离子电池负极材料, 2022-10-09, 中国CN202211228856.5. 3)张克宇,姚耀春,崔丁方,等;一种类球状锂/钠离子电池草酸铜及其分解衍生产物负极材料, 2022-10-09, 中国CN202211230006.9. 4)姚耀春,张克宇,杨斌等;一种锂离子电池草酸亚铁复合负极材料及其制备方法, 2020-1-16, 中国, CN202010044867.2. 5)姚耀春; 张克宇; 杨斌等;碳纳米管、金属铜共掺杂草酸亚铁锂电池复合负极材料及其制备方法, 2020-1-16, 中国, CN202010044910.5. |
1)Bo Jin, Keyu Zhang*, Geng Gao, Qing Zhao, Xinyu Jiang, Dingfang Cui, Keqi Chen, Xiang Lin, Liuliu Liu, Rui Yan, Bin Yang, Yaochun Yao*. Active prelithiation strategies for advanced lithium storage systems: A Perspective from electrochemical mechanism to structural design and application[J]. Chemical Engineering Journal, 2024, 152542. 2)Keyu Zhang, Dingfang Cui, Xiaopeng Huang, Feng Liang, Geng Gao, Tingyu Song, Libo Zhang, Yaochun Yao*, Yong Lei*. Insights into the interfacial chemistry and conversion mechanism of iron oxalate toward the reduction by lithium[J]. Chemical Engineering Journal, 2021, 426: 131446. 3)Keyu Zhang, Yin Li, Xuejun Hu, Feng Liang, Li Wang, Ruhui Xu, Yongnian Dai, Yaochun Yao*. Inhibitive role of crystal water on lithium storage for multilayered FeC2O4·xH2O anode materials [J]. Chemical Engineering Journal, 2021, 404:126464. 4)Keyu Zhang, Yin Li, Yunke Wang, Jinyang Zhao, Xiumin Chen, Yongnian Dai, Yaochun Yao*. Enhanced electrochemical properties of iron oxalate with more stable Li+ ions diffusion channels by controlling polymorphic structure [J]. Chemical Engineering Journal, 2020, 384: 123281. 5)Tingyu Song, Geng Gao, Dingfang Cui, Chong Wang, Hui Zhang, Feng Liang, Bin Yang, Keyu Zhang*, Yaochun Yao*. Achieving ultrastability and efficient lithium storage capacity with high-energy iron (II) oxalate anode materials by compositing Ge nano conductive sites[J]. Nanoscale, 2023, 15: 2700-2713. |