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Hybrid nanocapsules forin situTEM imaging of gas evolution reactions in confined liquids

机译:混合nanocapsules forin situTEM成像的气体进化反应限制液体

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Liquid cell transmission electron microscopy (TEM) enables the direct observation of dynamic physical and chemical processes in liquids at the nanoscale. Quantitative investigations into reactions with fast kinetics and/or multiple reagents will benefit from further advances in liquid cell design that facilitate rapidin situmixing and precise control over reagent volumes and concentrations. This work reports the development of inorganic-organic nanocapsules for high-resolution TEM imaging of nanoscale reactions in liquids with well-defined zeptoliter volumes. These hybrid nanocapsules, with 48 nm average diameter, consist of a thin layer of gold coating a lipid vesicle. As a model reaction, the nucleation, growth, and diffusion of nanobubbles generated by the radiolysis of water is investigated inside the nanocapsules. When the nanobubbles are sufficiently small (10-25 nm diameter), they are mobile in the nanocapsules, but their movement deviates from Brownian motion, which may result from geometric confinement by the nanocapsules. Gases and fluids can be transported between two nanocapsules when they fuse, demonstratingin situmixing without using complex microfluidic schemes. The ability to synthesize nanocapsules with controlled sizes and to monitor dynamics simultaneously inside multiple nanocapsules provides opportunities to investigate nanoscale processes such as single nanoparticle synthesis in confined volumes and biological processes such as biomineralization and membrane dynamics.
机译:液体细胞透射电子显微镜(TEM)支持动态的直接观察在液体的物理和化学过程纳米级。与快速反应动力学和/或多个试剂将受益于进一步的发展液体细胞设计促进rapidinsitumixing和精确控制试剂数量和浓度。发展无机nanocapsules纳米级的高分辨率透射电镜成像反应与明确的zeptoliter液体卷。平均直径,由一层薄薄的金膜脂质囊泡。nanobubbles的成核、生长和扩散水辐解产生的nanocapsules内部调查。nanobubbles足够小(10到25海里nanocapsules直径),他们是可移动的,但他们的运动偏离了布朗运动,这可能源于几何约束nanocapsules。两个nanocapsules当他们之间的运输保险丝,demonstratingin situmixing不使用复杂的微流控方案。合成nanocapsules与大小和控制同时监控动态里面多个nanocapsules提供了机会研究纳米尺度的过程,如单在限制数量和纳米颗粒的合成生物矿化等生物学过程和膜动力学。

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