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Synthesis of N-Type Plasmonic Oxide Nanocrystals and the Optical and Electrical Characterization of their Transparent Conducting Films

机译:N型等离子氧化物纳米晶体的合成及其透明导电膜的光电特性

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摘要

We present a general synthesis for a family of n-type transparent conducting oxide nanocrystals through doping with aliovalent cations. These monodisperse nanocrystals exhibit localized surface plasmon resonances tunable in the mid- and near-infrared with increasing dopant concentration. We employ a battery of electrical measurements to demonstrate that the plasmonic resonance in isolated particles is consistent with the electronic properties of oxide nanocrystal thin films. Hall and Seebeck measurements show that the particles form degenerately doped n- type solids with free electron concentrations in the range of 10 to 10~(21) cm~(-3). These heavily doped oxide nanocrystals are used as the building blocks of conductive, n-type thin films with high visible light transparency.
机译:我们介绍了通过掺杂铝价阳离子对n型透明导电氧化物纳米晶体家族的一般合成。这些单分散纳米晶体表现出局部表面等离子体共振,可随着掺杂剂浓度的增加而在中红外和近红外范围内调节。我们采用了一系列的电学测量方法来证明隔离颗粒中的等离子体共振与氧化物纳米晶体薄膜的电子特性一致。霍尔和塞贝克的测量表明,这些粒子形成了简并掺杂的n型固体,其自由电子浓度在10至10〜(21)cm〜(-3)范围内。这些重掺杂的氧化物纳米晶体被用作具有高可见光透明性的导电n型薄膜的组成部分。

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