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Li-doped ZnO nanorods with single-crystal quality - non-classical crystallization and self-assembly into mesoporous materials

机译:具有单晶质量的掺锂ZnO纳米棒-非经典结晶并自组装为介孔材料

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摘要

The benefits and promise of nanoscale dimensions for the properties of (ceramic) semiconductors are widely known. 1-D nanostructures in particular have proven to be of extraordinary relevance due to their applicability in future electronic and optoelectronic devices. Key to successful technological implementation of semiconductor nanostructures is the control of their electronic properties via doping. Despite its tremendous importance, precise chemical doping of defined nano-objects has been addressed rarely so far. Frequent problems are the creation of secondary defects and related undesired property changes by incorporation of hetero-elements, and the difficulty in ensuring a uniform and precise positioning of the dopant in the nanocrystal lattice. Here, we present the synthesis of Li-doped zinc oxide nanorods, which possess excellent (single-crystal) quality. The method is based on a novel non-classical crystallization mechanism, comprising an unusually oriented disassembly step. Afterwards, the nanorods are incorporated into mesoporous layers using colloidal self-assembly. Proof-of-principle gas sensing measurements with these novel materials demonstrate the beneficial role of Li-doping, indicating not only better conductivity but also the occurrence of catalytic effects.
机译:纳米级尺寸对于(陶瓷)半导体的特性的益处和希望是众所周知的。一维纳米结构因其在未来的电子和光电设备中的适用性而特别具有重要意义。半导体纳米结构成功实施技术的关键是通过掺杂控制其电子性能。尽管其非常重要,但迄今为止,很少解决定义的纳米物体的精确化学掺杂问题。常见的问题是通过引入异质元素而产生次要缺陷和相关的不希望的性能变化,以及难以确保掺杂剂在纳米晶格中均匀且精确地定位。在这里,我们提出了具有优异(单晶)质量的掺锂氧化锌纳米棒的合成。该方法基于新颖的非经典结晶机理,包括异常取向的拆卸步骤。然后,使用胶体自组装将纳米棒掺入介孔层中。用这些新型材料进行的原理性气体传感测量证明了掺杂锂的有益作用,不仅表明电导率更高,而且还表明了催化作用的发生。

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