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首页> 外文期刊>Journal of materials science >Fabrication, characterization and excellent formaldehyde gas sensing of Tb-doped ln_2O_3 beaded-porous nanotubes
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Fabrication, characterization and excellent formaldehyde gas sensing of Tb-doped ln_2O_3 beaded-porous nanotubes

机译:Tb掺杂ln_2O_3珠状多孔纳米管的制备,表征和优异的甲醛气敏性

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摘要

The pure and Tb-doped In2O3 beaded-porous nanotubes (BPNTs) are fabricated by simple electrospinning method. The crystal phase, morphology and chemical composition of the obtained samples were analyzed by characteristic techniques (XRD, FE-SEM, TEM, EDS, XPS, etc.). The mechanism of forming BPNTs structure was studied, and phase separation plays a key role in the process of formation. A series of sensing tests toward formaldehyde gas showed that 6mol% Tb-doped In2O3 BPNTs exhibited the best sensing performance: high response (75-50ppm), shorter response and recovery times (2s and 12s), low limit of detection (LOD, 1.27-100ppb), good selectivity and long-term stability, etc. The significantly improved gas sensing properties were mainly resulted from their high surface basicity, enriched defects (oxygen vacancies), small crystallite size and complex porous structures.
机译:通过简单的静电纺丝法制备了纯的和掺Tb的In2O3珠状多孔纳米管(BPNTs)。通过特征技术(XRD,FE-SEM,TEM,EDS,XPS等)分析所得样品的晶相,形态和化学组成。研究了BPNTs结构的形成机理,并且相分离在形成过程中起着关键作用。一系列针对甲醛气体的传感测试表明,掺有6mol%Tb的In2O3 BPNT表现出最佳的传感性能:高响应(75-50ppm),更短的响应和恢复时间(2s和12s),低检测限(LOD,1.27) -100ppb),良好的选择性和长期稳定性等。显着改善的气敏特性主要是由于其较高的表面碱度,富集的缺陷(氧空位),小晶粒尺寸和复杂的多孔结构。

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