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多孔单晶 ZnO 纳米带:退火前躯体纳米带法制备及其气敏和光电性能

Porous and single-crystalline ZnO nanobelts: fabrication with annealing precursor nanobelts, and gas-sensing and optoelectronic performance.

机构信息

Nanomaterials and Environmental Detection Laboratory, Institute of Intelligent Machines, Chinese Academy of Sciences, Hefei 230031, People's Republic of China. Department of Chemistry, Anhui Normal University, Wuhu 241000, People's Republic of China.

出版信息

Nanotechnology. 2016 Sep 2;27(35):355702. doi: 10.1088/0957-4484/27/35/355702. Epub 2016 Jul 25.

Abstract

Porous and single-crystalline ZnO nanobelts have been prepared through annealing precursors of ZnSe · 0.5N2H4 well-defined and smooth nanobelts, which have been synthesized via a simple hydrothermal method. The composition and morphology evolutions with the calcination temperatures have been investigated in detail for as-prepared precursor nanobelts, suggesting that they can be easily transformed into ZnO nanobelts by preserving their initial morphology via calcination in air. In contrast, the obtained ZnO nanobelts are densely porous, owing to the thermal decomposition and oxidization of the precursor nanobelts. More importantly, the achieved porous ZnO nanobelts are single-crystalline, different from previously reported ones. Motivated by the intrinsic properties of the porous structure and good electronic transporting ability of single crystals, their gas-sensing performance has been further explored. It is demonstrated that porous ZnO single-crystalline nanobelts exhibit high response and repeatability toward volatile organic compounds, such as ethanol and acetone, with a short response/recovery time. Furthermore, their optoelectronic behaviors indicate that they can be promisingly employed to fabricate photoelectrochemical sensors.

摘要

通过退火 ZnSe·0.5N2H4 前驱体中定义明确且光滑的纳米带,制备了多孔单晶 ZnO 纳米带,该前驱体纳米带是通过简单的水热法合成的。详细研究了所制备的前驱体纳米带的组成和形态演变,表明它们可以通过在空气中煅烧来保持其初始形态,很容易转化为 ZnO 纳米带。相比之下,获得的 ZnO 纳米带由于前驱体纳米带的热分解和氧化而具有密集的多孔结构。更重要的是,所获得的多孔 ZnO 纳米带是单晶的,这与之前报道的不同。受多孔结构的固有性质和单晶良好的电子输运能力的启发,进一步探索了它们的气敏性能。结果表明,多孔 ZnO 单晶纳米带对乙醇和丙酮等挥发性有机化合物表现出高响应和重复性,具有短的响应/恢复时间。此外,它们的光电行为表明它们有望用于制造光电化学传感器。

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