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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Basic materials physics of transparent conducting oxides
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Basic materials physics of transparent conducting oxides

机译:透明导电氧化物的基本材料物理学

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Materials displaying the remarkable combination of high electrical conductivity and optical transparency already from the basis of many important technological applications, including flat panel displays, solar energy capture and other opto-electronic devices. Here we present the basic materials physics of these important materials centred on the nature of the doping process to generate n-type conductivity in transparent conducting oxides, the associated transition to the metallic (conducting) state and the detailed properties of the degenerate itinerant electron gas. The aim is to fully understand the origins of the basic performance limits of known materials and to set the scene for new or improved materials which will breach those limits for new-generation transparent conducting materials, either oxides, or beyond oxides.
机译:在许多重要的技术应用(包括平板显示器,太阳能捕获和其他光电设备)的基础上,已经显示出高电导率和光学透明度显着组合的材料。在这里,我们介绍了这些重要材料的基本材料物理,这些物理材料的重点是在透明导电氧化物中生成n型电导率的掺杂过程的性质,与之相关的过渡到金属(导电)状态以及简并的巡回电子气的详细特性。目的是充分了解已知材料的基本性能极限的根源,并为新的或改良的材料做好准备,这将突破对氧化物或氧化物以外的新一代透明导电材料的限制。

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