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Controlled synthesis of pyrochlore Pr2Sn2O7 nanospheres with enhanced gas sensing performance

机译:具有增强的气敏性能的烧绿石Pr2Sn2O7纳米球的受控合成

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摘要

Uniform Pr2Sn2O7 nanospheres were synthesized via a simple solvothermal route with ethylenediamine as the solvent. The as-prepared Pr2Sn2O7 nanospheres with the diameters of 20-50 nm are composed of nanoparticles with a size of 3-5 nm. The introduction of water into the reaction solution results in the formation of smaller Pr2Sn2O7 nanospheres with poor crystallinity or SnO2 particles, indicating that ethylenediamine has a complicated effect on the generation of Pr2Sn2O7 nanospheres. The UV-vis spectrum reveals that the band gap of synthesized Pr2Sn2O7 nanospheres is about 4.19 eV, much higher than the theoretical value calculated by DFT. The enhanced gas sensing performances could be attributed to the unique mesoporous nanosphere structure, which can significantly facilitate gas diffusion and mass transportation in sensing materials.
机译:通过简单的溶剂热途径,以乙二胺为溶剂合成均匀的Pr2Sn2O7纳米球。制备的直径为20-50 nm的Pr2Sn2O7纳米球由尺寸为3-5 nm的纳米颗粒组成。将水引入反应溶液导致形成较小的具有差的结晶度或SnO 2颗粒的Pr 2 Sn 2 O 7纳米球,表明乙二胺对Pr 2 Sn 2 O 7纳米球的产生具有复杂的影响。紫外可见光谱显示合成的Pr2Sn2O7纳米球的带隙约为4.19 eV,远高于DFT计算的理论值。增强的气体传感性能可归因于独特的中孔纳米球结构,该结构可显着促进气体在传感材料中的扩散和质量传输。

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