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Structural, optical, photocatalytic, and optoelectronic properties of Zn2SnO4 nanocrystals prepared by hydrothermal method

机译:水热法制备Zn2SnO4纳米晶体的结构,光学,光催化和光电性能

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Zn2SnO4 (ZTO) nanocrystals are extensively studied in various fields. However, size-dependent ZTO nanocrystals are still challenging to understand their structural, optical, photocatalytic, and optoelectronic properties. ZTO nanocrystals are synthesized by a facile hydrothermal reaction method. The structural properties of the synthesized ZTO nanocrystals are studied by x-ray diffraction and transmission electron microscope. The sizes of the ZTO nanocrystals are controlled by the pH values of the precursor and the molar ratios of the Zn:Sn in the starting materials. ZTO nanocrystals with the small size of 6 nm and large size of 270 nm are obtained by our method. The Eu3+ ions are doped into ZTO nanocrystals to probe size-dependent Eu doping sites, which shows significant potential applications in light emitting diode phosphors. Moreover, the photocatalytic activity of ZTO nanocrystals on rhodamine (RhB) decoloration are investigated, and the results show that 6 nm ZTO nanocrystals show better performance in the photocatalytic decoloration of RhB compared to 270 nm nanocrystals. Most importantly, we design and fabricate optoelectronic devices to detect IR light based on our nanocrystals and a self-prepared NIR cyanine dye. The device based on small sized ZTO nanocrystals exhibits better device performance under 808 nm IR light compared to that of the large sized ZTO nanocrystals. We believe this work represents ZTO size-dependent properties in term of structural, optical, photocatalytic, and optoelectronic properties as a multifunctional material.
机译:Zn2SnO4(ZTO)纳米晶在各个领域都得到了广泛的研究。然而,尺寸相关的ZTO纳米晶体仍然很难理解其结构、光学、光催化和光电特性。采用简单的水热反应法合成了ZTO纳米晶。用x射线衍射和透射电镜研究了合成的ZTO纳米晶的结构性质。ZTO纳米晶体的尺寸由前驱体的pH值和起始材料中Zn:Sn的摩尔比控制。通过我们的方法获得了小尺寸为6nm、大尺寸为270nm的ZTO纳米晶体。将Eu3+离子掺杂到ZTO纳米晶体中,探测尺寸相关的Eu掺杂位点,在发光二极管荧光粉中显示出重要的潜在应用。此外,还研究了ZTO纳米晶对罗丹明(RhB)的光催化脱色活性,结果表明,6nm ZTO纳米晶对RhB的光催化脱色性能优于270nm纳米晶。最重要的是,我们基于我们的纳米晶体和自行制备的近红外菁染料,设计并制造了用于检测红外光的光电器件。与大尺寸ZTO纳米晶体相比,基于小尺寸ZTO纳米晶体的器件在808nm红外光下具有更好的器件性能。我们相信这项工作代表了ZTO作为一种多功能材料在结构、光学、光催化和光电性能方面的尺寸依赖性。

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