
女,硕士生导师,仲恺青年学者,广州市高层次人才,邮箱:jyuao@connect.ust.hk, yujing@zhku.edu.cn;电话:13527660574
研究方向:新能源材料化学;研究领域包括:锂/钠离子电池,固态电解质。
目前已发表33篇SCI收录论文,其中以第一/共同第一/共同通讯*作者身份在Advanced Materials、Advanced Energy Materials、Advanced Functional Materials、Energy Storage Materials、Small等知名期刊发表论文17篇,是Advanced Functional Materials, Materials Today Chemistry、Chemical Engineering Journal、Journal of Power Sources等期刊的审稿人。
工作经历:
2023~至今 仲恺农业工程学院,化学化工学院,特聘副教授
2021~2022 香港科技大学,工学院,博士后
2010~2014 上海和氏璧化工有限公司,主管
2008~2010 浙江中控技术股份有限公司,化工行业部,工程师
教育经历:
2018~2021 香港科技大学,工学院,博士
2016~2018 香港科技大学,工学院,硕士
2004~2008 南京工业大学,化学化工学院,学士
承担项目情况:
广东省自然科学基金面上项目,项目编号:2024A1515010292,主持
仲恺农业工程学院仲恺青年学者人才项目,项目编号:KA23YY31821,主持
近五年作为一作/共同一作†/共同通讯*的代表性论文:
1. Fast-Charging Solid-State Li Batteries: Materials, Strategies, and Prospects. Advanced Materials, 2024, 2417796. (第一作者)
2. A wrapped and infiltrated ∼20-μm-thick 3D ceramic framework composite enables fast Li+ diffusion and interfacial compatibility for lithium-metal batteries. Composites Part B: Engineering, 2024, 272, 111192. (共同通讯)
3. Manipulating the ionic conductivity and interfacial compatibility of polymer-in-dual-salt electrolytes enables extended-temperature quasi-solid metal batteries. Journal of Colloid and Interface Science, 2024, 666, 189-200. (共同通讯)
4. Multiple Na+ transport pathways and interfacial compatibility enable high-capacity, room-temperature quasi-solid sodium batteries. Journal of Colloid and Interface Science, 2024, 666, 447-456. (共同通讯)
5. Improving room‐temperature Li‐metal battery performance by in situ creation of fast Li+ transport pathways in a polymer‐ceramic electrolyte. Small, 2023, 19, 2302691. (第一作者)
6. Strain engineering of antiperovskite materials for solid-state Li batteries: a computation-guided substitution approach. Journal of Materials Chemistry A, 2023, 11, 18984-18995. (共同一作)
7. In situ fabricated quasi-solid polymer electrolyte for high-energy-density lithium metal battery capable of subzero operation. Advanced Energy Materials, 2022, 12, 2102932. (第一作者)
8. Simultaneously improved surface and bulk participation of evolved perovskite oxide for boosting oxygen evolution reaction activity using a dynamic cation exchange strategy. Small, 2022,18,2204109. (共同通讯)
9. A hybrid dual-salt polymer electrolyte for sodium metal batteries with stable room temperature cycling performance. Energy Storage Materials, 2022, 46, 182. (共同一作)
10. A solid-like dual-salt polymer electrolyte for Li-metal batteries capable of stable operation over an extended temperature range. Energy Storage Materials, 2021, 37, 609. (第一作者)
11. Ultrathin and nonflammable dual-salt polymer electrolyte for high-energy-density lithium-metal battery. Advanced Functional Materials, 2021, 2010261. (共同一作)
专利:
1、一种氮杂环化合物在锂离子电池电解液中的应用、锂离子电池电解液和锂离子电池,2024.06,专利申请号:202410757572.8;
2、 Synchronous process for producing non-flammable quasi-solid-state electrolyte and solid-state batteries using the electrolyte,2022.11,美国专利, US 17721378
3、界面改性组合物及含其锂离子电池,发明专利申请,2021.10.,CN 113517474 A
近五年所获荣誉:
2022年港澳台创新创业大赛优胜奖(广州市科技局)
2022“京津冀-粤港澳”青年创新创业大赛总决赛金奖
2021年度香港科技大学-信和百万创业大賽广发创新奖
2021年度香港科技大学楊詠儀企業家基金奖
2021年度香港科技大学技术转化中心U*Star奖