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Organic Materials and Organic/Inorganic Heterostructures in Atom Probe Tomography

机译:原子探针层析成像中的有机材料和有机/无机异质结构

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摘要

Nano-scale organic/inorganic interfaces are key to a wide range of materials. In many biominerals, for instance bone or teeth, outstanding fracture toughness and wear resistance can be attributed to buried organic/inorganic interfaces. Organic/inorganic interfaces at very small length scales are becoming increasingly important also in nano and electronic materials. For example, functionalized inorganic nanomaterials have great potential in biomedicine or sensing applications. Thin organic films are used to increase the conductivity of LiFePO4 electrodes in lithium ion batteries, and solid electrode interphases (SEI) form by uncontrolled electrolyte decomposition. Organics play a key role in dye-sensitized solar cells, organic photovoltaics, and nano-dielectrics for organic field-effect transistors. The interface between oxide semiconductors and polymer substrates is critical in emergent applications, for example, flexible displays.
机译:纳米级有机/无机界面是多种材料的关键。在许多生物矿物中,例如骨骼或牙齿,出色的断裂韧性和耐磨性可归因于有机/无机界面的掩埋。在纳米和电子材料中,非常小的长度尺度的有机/无机界面也变得越来越重要。例如,功能化的无机纳米材料在生物医学或传感应用中具有巨大的潜力。薄有机膜用于增加锂离子电池中LiFePO4电极的电导率,并且由于不受控制的电解质分解而形成了固态电极相(SEI)。有机物在染料敏化太阳能电池,有机光伏电池和用于有机场效应晶体管的纳米电介质中起关键作用。氧化物半导体和聚合物基板之间的界面在紧急应用(例​​如柔性显示器)中至关重要。

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