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Preparation of transparent amorphous ZnSnO_3 cubic nanoparticles and light-induced homostructures: Application in UV sensor and room- temperature gas sensor

机译:透明无定形ZnSnO_3立方纳米粒子的制备及其光致均质结构:在紫外传感器和室温气体传感器中的应用

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ZnSn(OH)(6) polycrystalline cubic particles with perovskite structure were synthesized by hydrothermal method with the presence of hexamethylene tetramine (HMTA) as organic functional reagent. Experiments reveal that HMTA can adjust the nucleation rate and growth rate of ZnSn(OH)(6) in the synthesizing system. When the content of HMTA is 4.6 wt%, the nucleation rate of ZnSn(OH)(6) is more than its growth rate. As a result, the particle size of ZnSn(OH)(6) cube obtained at this condition is smallest whereas its average crystalline size is biggest compared with other samples. After dehydration of ZnSn(OH)(6) precursor at high temperature, the above particle and crystalline size characteristics make the resulting amorphous ZnSnO3 display an excellent UV sensitivity and gas-sensing property at room temperature comparable to other UV photo- and gas-sensitive materials. Possible reason of its comprehensive properties were discussed. Moreover, if Zn in the ZnSnO3 molecule is partly replaced by Mg with the formation of Zn(0.9)Mg(0.1)SnoO(3), its UV photoelectric properties can be further enhanced. The ratio of I-light/I-dark of the Zn0.9Mg0.1SnO3 sample is > 10(4), and its response and recovery time are about 4 s and 9 s, respectively.
机译:以六亚甲基四胺(HMTA)为有机功能试剂,通过水热法合成了具有钙钛矿结构的ZnSn(OH)(6)多晶立方颗粒。实验表明,HMTA可以调节合成系统中ZnSn(OH)(6)的成核速率和生长速率。当HMTA的含量为4.6wt%时,ZnSn(OH)(6)的成核速率大于其生长速率。结果,与其他样品相比,在此条件下获得的ZnSn(OH)(6)立方体的粒径最小,而其平均晶体粒径最大。 ZnSn(OH)(6)前体在高温下脱水后,上述颗粒和晶体尺寸特征使所得的无定形ZnSnO3在室温下表现出与其他UV光敏和气体敏感的相当的出色UV敏感性和气敏特性。材料。讨论了其综合性能的可能原因。而且,如果ZnSnO3分子中的Zn被Mg部分取代而形成Zn(0.9)Mg(0.1)SnoO(3),则其紫外线光电性能会进一步增强。 Zn0.9Mg0.1SnO3样品的I-亮/ I-暗之比> 10(4),其响应时间和恢复时间分别约为4 s和9 s。

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