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Size-controlled synthesis of SnO2 quantum dots and their gas-sensing performance

机译:SnO2量子点的尺寸控制合成及其气敏性能

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Tin dioxide quantum dots (TQDs) with controllable size were synthesized by changing the amount of alkaline reagent in the hydrothermal process. The gas-sensing properties were investigated by operating chemoresistor type sensor. The morphology and structure were characterized by X-ray diffraction, scanning/transmission electron microscopy, UV-vis and Raman spectrometry. The as-synthesized SnO2 shows the characteristics of quantum dots and the narrowest size distribution is about 2-3 nm. The gas-sensing results indicate that the responses are strongly dependent on the size of quantum dots. TQDs with different sizes exhibit different sensitivities and selectivities to volatile toxic chemicals such as aldehyde, acetone, methanol, ethanol and amine. Especially, when the sensors are exposed to 100 ppm triethylamine (TEA), the sensing response value of TQDs with small size is two times higher than that of the large-size TQDs. The maximum response values of TQDs to 1 ppm and 100 ppm TEA are 15 and 153, respectively. The response time is 1 s and the recovery time is 47 s upon exposure to 1 ppm TEA. The results suggest that it is an effective method by regulating the size of SnO2 quantum dots to detect low-concentration hazardous volatile compounds. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过改变水热过程中碱性试剂的量,合成了尺寸可控的二氧化锡量子点(TQDs)。通过操作化学电阻型传感器研究了气敏特性。通过X射线衍射,扫描/透射电子显微镜,UV-vis和拉曼光谱法表征了形态和结构。合成后的SnO2具有量子点的特性,最窄的尺寸分布约为2-3 nm。气敏结果表明,响应强烈依赖于量子点的大小。不同尺寸的TQD对挥发性有毒化学物质(例如醛,丙酮,甲醇,乙醇和胺)的敏感性和选择性不同。特别是,当传感器暴露于100 ppm三乙胺(TEA)时,小尺寸TQD的传感响应值是大尺寸TQD的两倍。 TQD对1 ppm TEA和100​​ ppm TEA的最大响应值分别为15和153。暴露于1 ppm TEA时,响应时间为1 s,恢复时间为47 s。结果表明,通过调节SnO2量子点的大小来检测低浓度有害挥发性化合物是一种有效的方法。 (C)2015 Elsevier B.V.保留所有权利。

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