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Water-processable liquid metal nanoparticles by single-step polymer encapsulation

机译:Water-processable液态金属纳米颗粒单步聚合物封装

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摘要

Stabilizing metastable colloids such as gallium-based liquid metal nanoparticles (LM NPs) and using them in complex machining processes is a great challenge due to their simple and sensitive surface chemistry against ligand modification and solution processing. Water, a green solvent, is unfortunately not favored by LM NPs in the entire workflow from synthesis to functionalization and application. This dilemma is relieved herein by presenting a sonochemical polymer deposition technique that can produce a water-dispersible LM@polymer hybrid nanomaterial in one step. Water-soluble polymers such as poly(vinyl pyrrolidone) (PVP) can be directly deposited onto eutectic gallium indium (EGaIn) as a coating shell (up to 20 nm) and prevent their rapid and continuous oxidation in aqueous solutions. EGaIn@PVP NPs are stable after preservation for 30 days in water and 60 days in ethanol, and the polymer coating shows solvent-responsive swelling/shrinking behaviors. The LM@polymer NPs can be stably composited with other materials through complex processing and perform desired functions after composition. For demonstration, EGaIn@PVP NPs are employed as active electrode materials for lithium-ion batteries by compositing with water-soluble binders, and exhibit excellent cycling performances with no obvious decay (capacity retention >95%) in more than 700 cycles at 4 A g(-1). This strategy enriches the toolbox for surface engineering of LMs especially under harsh conditions, which can benefit the applications of LM NPs in various scenarios.
机译:稳定的亚稳胶体等镓基液态金属纳米颗粒(LM NPs)和复杂的加工过程中由于其简单和一个伟大的挑战敏感的表面化学对配体修改和解决方案处理。绿色溶剂,不幸的是不喜欢LMNPs在整个工作流从合成功能化和应用。松了一口气之呈现是声化学的吗聚合物沉积技术,可以产生一个水分散LM@polymer混合纳米材料在一个步骤。聚(乙烯基吡咯烷酮(PVP))可以直接沉积到共晶镓铟(EGaIn)一层壳(20海里),防止他们水迅速和持续的氧化解决方案。在水中保存30天,60天乙醇,聚合物涂层显示solvent-responsive膨胀/收缩行为。可以稳定LM@polymer NPs合成通过复杂的处理和其他材料执行所需的功能组成。演示中,EGaIn@PVP NPs受聘积极为锂离子电极材料电池通过合成水溶性绑定,表现出良好的循环性能没有明显衰减(容量保留> 95%)超过4 700周期g(1)。表面工程的LMs尤其恶劣条件,可以受益的应用LM NPs在各种场景。

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