Lai Chun-Yen, Lin Yu-Ting, Hsu Hung-Kun, Wang Ding-Yeong, Wu Wen-Wei, Yeh Ping-Hung
Department of Materials Science and Engineering National Chiao Tung University No. 1001, University Road, East District Hsinchu City 30010 Taiwan.
Department of Physics Tamkang University No. 151, Yingzhuan Road, Tamsui District New Taipei City 25137 Taiwan.
Glob Chall. 2020 Sep 28;4(11):2000041. doi: 10.1002/gch2.202000041. eCollection 2020 Nov.
The development of SnO and TiO polycrystalline nanofiber devices (PNFDs) has been widely researched as a method of protecting humans from household air pollution. PNFDs have three significant advantages. The nanofibers before the annealing process are polymer-rich materials, which can be used as particulate material (PM) filters. The multiporous nanofibers fabricated by the annealing process have numerous defects that can serve as generation-recombination centers for electron-hole pairs, enabling the PNFDs to serve as multiple-wavelength light (from 365 to 940 nm) detectors. Lastly, the numerous surface/interface defects can drastically enhance the toxic gas detection ability. The toxic gas detection range of PNFDs for CO and NO is from 400 to 50 ppm and 400 to 50 ppb, respectively. Quick response times and recovery properties are key parameters for commercial applications. The recovery time of NO detection can be improved from 1 ks to 40 s and the PNFD operating temperature lowered to 50 C. These results indicate that SnO and TiO PNFDs have good potential for commercialization and use as toxic gas and photon sensors in daily lives.
作为一种保护人类免受室内空气污染的方法,氧化锡和二氧化钛多晶纳米纤维器件(PNFDs)的开发已得到广泛研究。PNFDs具有三个显著优点。退火过程之前的纳米纤维是富含聚合物的材料,可用作颗粒物(PM)过滤器。通过退火过程制造的多孔纳米纤维有许多缺陷,可作为电子 - 空穴对的产生 - 复合中心,使PNFDs能够用作多波长光(365至940纳米)探测器。最后,大量的表面/界面缺陷可大幅提高有毒气体检测能力。PNFDs对一氧化碳和一氧化氮的有毒气体检测范围分别为400至50 ppm和400至50 ppb。快速响应时间和恢复特性是商业应用的关键参数。一氧化氮检测的恢复时间可从1 ks提高到40 s,PNFD的工作温度可降至50℃。这些结果表明,氧化锡和二氧化钛PNFDs在商业化以及用作日常生活中的有毒气体和光子传感器方面具有良好潜力。