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Fast synthesis, morphology transformation, structural and optical properties of ZnO nanorods grown by seed-free hydrothermal method

机译:无籽水热法生长ZnO纳米棒的快速合成,形貌转变,结构和光学性质

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摘要

A fast and low cost seed-free hydrothermal synthesis method to synthesize zinc oxide (ZnO) nanorods with controllable morphology, size and structure has been developed. Ammonia is used to react with water to tailor the ammonium hydroxide concentration, which provides a continuous source of OH− for hydrolysis and precipitation of the final products. Hence, allowing ZnO nanorods to growth on large areas of metal (Au and Ag coated glass), p-type Si and organic flexible (PEDOT: PSS) substrates. Increasing the growth time, the morphology transforms from pencil-like to hexagonal shape rod-like morphology. Within one hour the length of the ZnO nanorods has reached almost 1 µm. The optical characteristics has shown that the grown ZnO nanorods are dominated by two emission peaks, one is in the UV range centered at 381 nm and other one with relatively high intensity appears in the visible range and centered at 630 nm. While the growth duration was increased from 2 h to 6 h, the optical band gap was observed to increase from 2.8 eV to 3.24 eV, respectively. This fast and low cost method is suitable for LEDs, UV-photodetector, sensing, photocatalytic, multifunctional devices and other optoelectronic devices, which can be fabricated on any substrates, including flexible and foldable substrates.
机译:开发了一种快速,低成本的无籽水热合成方法,合成了形态,大小和结构可控的氧化锌纳米棒。氨用于与水反应以调整氢氧化铵的浓度,从而为水解和沉淀最终产品提供了连续的OH-源。因此,允许ZnO纳米棒在大面积的金属(Au和Ag涂层玻璃),p型Si和有机柔性(PEDOT:PSS)衬底上生长。随着生长时间的增加,其形态从铅笔状转变为六角形的杆状形态。在一小时内,ZnO纳米棒的长度已达到近1µm。光学特性表明,生长的ZnO纳米棒以两个发射峰为主,一个在381 nm处的UV范围内,另一个在可见光范围内并以630 nm处出现的强度较高的峰。当生长持续时间从2 h增加到6 h时,光学带隙分别从2.8 fromeV增加到3.24 eV。这种快速且低成本的方法适用于LED,紫外线光电检测器,传感,光催化,多功能设备和其他光电设备,它们可以在任何基板上制造,包括柔性和可折叠基板。

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