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Synthesis and high formaldehyde sensing properties of quasi two-dimensional mesoporous ZnSnO3 nanomaterials

机译:准二维介孔ZnSnO3纳米材料的合成及高甲醛感测性能

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Quasi two-dimensional (2D) mesoporous ZnSnO _(3) nanomaterials (QTMZNS) were synthesized by a simple template-free hydrothermal method. The as-prepared products were characterized by TEM, SEM, XRD, TG/DTA, and FTIR. The results showed that the precursor was a mixture of Zn _(5) (OH) _(6) (CO _(3) ) _(2) and ZnSnO _(3) in the hydrothermal process, and the high purity QTMZNS were obtained by calcination combined with subsequent washing of 20 wt% NH _(4) Cl solutions. A possible growth process and mechanism of the quasi 2D mesoporous structure was proposed. Gas sensing properties of QTMZNS were investigated, and the QTMZNS-based sensors exhibited excellent gas sensing properties. When exposed to 100 ppm formaldehyde vapors, the response sensitivity is 45.8, and the concentration limit can reach as low as 0.2 ppm of formaldehyde. All these results are much better than those reported so far, which will have great potential applications for practical air quality monitoring.
机译:通过简单的无模板水热法合成了准二维(2D)介孔ZnSnO _(3)纳米材料(QTMZNS)。通过TEM,SEM,XRD,TG / DTA和FTIR对所制备的产物进行表征。结果表明,在水热过程中,前体是Zn _(5)(OH)_(6)(CO _(3))_(2)和ZnSnO _(3)的混合物,且高纯度QTMZNS为通过煅烧获得的产物与随后洗涤的20 wt%NH_(4)Cl溶液相结合。提出了一种可能的准二维介孔结构的生长过程和机理。对QTMZNS的气敏特性进行了研究,基于QTMZNS的传感器表现出出色的气敏特性。当暴露于100 ppm的甲醛蒸气中时,响应灵敏度为45.8,且甲醛的浓度极限可低至0.2 ppm。所有这些结果都比迄今为止报道的要好得多,在实际空气质量监测中将具有巨大的潜在应用。

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