School of Materials Science and Engineering, Yunnan Key Laboratory for Micro/nano Materials & Technology, Yunnan University, Kunming, 650091, China.
Sci Rep. 2017 May 16;7(1):1960. doi: 10.1038/s41598-017-02150-z.
Air quality around the globe is declining and public health is seriously threatened by indoor air pollution. Typically, indoor air pollutants are composed of a series of volatile organic compounds (VOCs) that are generally harmful to the human body, especially VOCs with low molecular weights (less than 100 Da). Moreover, in some situations, more than one type of VOC is present; thus, a device that can detect one or more VOCs simultaneously would be most beneficial. Here, we synthesized a sensor array with 4 units to detect 4 VOCs: acetone (unit 1), benzene (unit 2), methanol (unit 3) and formaldehyde (unit 4) simultaneously. All units were simultaneously exposed to 2.5 ppm of all four VOCs. The sensitivity of unit 1 was 14.67 for acetone and less than 2.54 for the other VOCs. The sensitivities of units 2, 3 and 4 to benzene, methanol and formaldehyde were 2 18.64, 20.98 and 17.26, respectively, and less than 4.01 for the other VOCs. These results indicated that the sensor array exhibited good selectivity and could be used for the real-time monitoring of indoor air quality. Thus, this device will be useful in situations requiring the simultaneous detection of multiple VOCs.
全球空气质量正在下降,室内空气污染严重威胁着公众健康。通常,室内空气污染物由一系列挥发性有机化合物 (VOCs) 组成,这些化合物通常对人体有害,尤其是分子量较小的 VOCs(小于 100 Da)。此外,在某些情况下,会存在不止一种类型的 VOC;因此,能够同时检测一种或多种 VOC 的设备将是最有益的。在这里,我们合成了一个由 4 个单元组成的传感器阵列,用于同时检测 4 种 VOC:丙酮(单元 1)、苯(单元 2)、甲醇(单元 3)和甲醛(单元 4)。所有单元同时暴露在 2.5 ppm 的所有四种 VOC 中。单元 1 对丙酮的灵敏度为 14.67,对其他 VOC 的灵敏度小于 2.54。单元 2、3 和 4 对苯、甲醇和甲醛的灵敏度分别为 218.64、20.98 和 17.26,对其他 VOC 的灵敏度小于 4.01。这些结果表明,该传感器阵列表现出良好的选择性,可用于室内空气质量的实时监测。因此,该设备将在需要同时检测多种 VOC 的情况下非常有用。