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CO optical sensing properties of nanocrystalline ZnO-Au films: Effect of doping with transition metal ions

机译:纳米ZnO-Au薄膜的CO光学传感特性:过渡金属离子掺杂的影响

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摘要

Zinc oxide nanocrystals, pure and doped with transition metal ions, have been synthesized using colloidal techniques; after purification and concentration protocols, the ZnO solutions are mixed with monodisperse Au colloidal suspensions and used for thin film depositions. The effect of the dopant ions on the structural, morphological and optical properties of the as-synthesized colloids as well as the nanocomposite thin films has been analyzed and discussed. The dopant presence has been found to affect the CO optical sensing properties of the nanocomposite ZnO\u2013Au films: compared to pure ZnO, an increase in sensitivity up to 80 percent and 55 percent has been detected for Co-doped and Mn-doped ZnO respectively, while Ni-doped ZnO films show only minor improvements. This observation has been ascribed to the multiple oxidation states of cobalt and manganese ions that can facilitate electron transfer between the target gas and semiconductive oxide matrix, and also to the lower surface concentration of Ni ions inside ZnO crystals, as compared to Co and Mn. A fast and reversible response after repeated CO exposures has been detected for all tested samples, and a linear response intensity with the order of magnitude of CO concentration has been observed in the 10\u201310,000 ppm range, with a lower detection limit of 1\u20132 ppm.
机译:已使用胶体技术合成了纯净的并掺杂有过渡金属离子的氧化锌纳米晶体。经过纯化和浓缩方案后,将ZnO溶液与单分散的Au胶体悬浮液混合,并用于薄膜沉积。分析和讨论了掺杂离子对合成胶体以及纳米复合薄膜的结构,形态和光学性质的影响。已发现掺杂物的存在会影响纳米复合ZnO \ u2013Au膜的CO光学传感特性:与纯ZnO相比,共掺杂和Mn掺杂的ZnO的灵敏度分别提高了80%和55%。 ,而掺Ni的ZnO膜仅表现出很小的改善。该观察结果归因于钴和锰离子的多种氧化态,它们可以促进目标气体与半导体氧化物基质之间的电子转移,并且还归因于与Co和Mn相比,ZnO晶体内部的Ni离子表面浓度较低。已对所有测试样品检测到重复的CO暴露后的快速和可逆的响应,并且在10 \ u201310,000 ppm范围内观察到了与CO浓度成数量级的线性响应强度,其下限为1 \ u20132 ppm。

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