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在“双碳”目标与能源转型战略背景下,围绕当前电化学储能领域面临的两大核心瓶颈——高能量密度与长循环寿命难以兼顾、活性材料与集流体界面稳定性差,长期致力于前沿储能技术(包括水系锌基电池、钠/锂离子电池等)的基础与应用研究,以“界面化学-电化学性能-材料结构”多尺度协同调控为核心进行研究。
国家自然科学基金青年基金项目一项(No. 22305183)
陕西省教育厅重点实验室项目一项(24JS029)
1、Enabling targeted zinc growthvia interface regulation toward binder free and high areal capacity zinc metalanode. Advanced Materials 2025, 37, 2503516.
2、Trace metal diatomic interphasevia microwave pyrolysis enables zinc binder-free anode. Chemical EngineeringJournal 2025, 520, 166334.
3、Targeting inerratic depositionbehaviour via interface regulation toward dendrite-free zinc metal anodes.Chemical Engineering Journal 2024, 498, 155815.
4、Rational design and regulationof tremella-like selenium-doped MoS2 for highly reversible sodium storage.Journal of Materials Chemistry A 2023,11, 1954-1965.
5、Orienting dendrite resistantbehaviour via heteroatom regulation toward high areal capacity zinc metalanode. Journal of Colloid and Interface Science 2025, 700, 138491.
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