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首页> 外文期刊>The journal of physics and chemistry of solids >Fabrication and electrical properties of ordered two-dimensional hollow ZnO shells' arrays
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Fabrication and electrical properties of ordered two-dimensional hollow ZnO shells' arrays

机译:有序二维ZnO空心壳阵列的制备及电学性能

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摘要

Colloidal templating and pulsed laser deposition (PLD) have been combined to fabricate arrays of ordered two-dimensional hollow ZnO cells. Based on a spin-coating method, a facile method has been developed to distribute colloidal bead in an ordered two-dimensional fashion between the fingers of inter-digital transducers. The underlying principle involved in the spin-coating method has been analyzed by obtaining Fourier transformation patterns from the arrangements of beads. The surfaces of oxide shells consist of protruding nano-crystallites, which have a würtzite structure of ZnO. Their electrical properties were measured as a function of annealing temperature. The change in the electrical properties upon grain growth has been attributed to alteration in the fraction site availability for defect formation at the grain boundaries.
机译:胶体模板和脉冲激光沉积(PLD)已被组合以制造有序二维中空ZnO电池阵列。基于旋涂法,已经开发了一种简便的方法以在指间换能器的手指之间以有序的二维方式分布胶体珠。通过从珠粒的排列中获得傅立叶变换图案,分析了旋涂方法中涉及的基本原理。氧化物壳的表面由突出的纳米微晶组成,纳米微晶具有ZnO纤锌矿结构。测量它们的电性能作为退火温度的函数。晶粒生长时电性能的变化归因于晶粒边界处缺陷形成的部位可用度的变化。

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