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Synthesis of SnO2/In2O3 hetero-nanotubes by coaxial-electrospinning method for enhanced formaldehyde response

机译:同轴电纺丝法合成SnO2 / In2O3杂纳米管增强甲醛响应

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摘要

SnO2/In2O3 hetero-nanotubes (SINs) were successfully produced using a novel coaxial-electrospinning method with pure polyvinylpyrrolidone (PVP) plus Sn/In salt as the outer shell and PVP as the inner component. After the calcination process, these SnO2/In2O3 hetero-nanotubes with diameters of 80-120 nm and lengths of several micrometers were obtained. All the SINs are assembled by plenty of nanoparticles (10-50 nm), bringing about abundant porous structures as well as large surface areas (up to 56 m(2) g(-1)). These SnO2/In2O3 hetero-nanotubes exhibit high response (400 at 500 ppm), low detection limit (down to 250 ppb), fast response (60 s)/recovery (97 s), good retention (94.68% for 30 day) and excellent selectivity toward formaldehyde. Gas sensing mechanism has been discussed by adjusting the amount of the two components. Based on detail investigations, it can be concluded that the enhanced response performance ties in the particle size, porous structure, surface area, and component ratio of the heterostructure.
机译:SnO2 / In2O3杂纳米管(SIN)是使用新型的同轴电纺方法成功生产的,该方法以纯聚乙烯吡咯烷酮(PVP)加Sn / In盐为外壳,PVP为内部组分。在煅烧过程之后,获得了这些具有80-120nm的直径和几微米的长度的SnO 2 / In 2 O 3杂纳米管。所有的SIN都是由大量的纳米粒子(10-50 nm)组装而成的,从而产生了丰富的多孔结构以及较大的表面积(高达56 m(2)g(-1))。这些SnO2 / In2O3异质纳米管显示出高响应(500 ppm时为400),低检测限(低至250 ppb),快速响应(60 s)/恢复(97 s),良好的保留(30天为94.68%)和对甲醛有极好的选择性。已经通过调节两个成分的量来讨论气体感测机制。根据详细的调查,可以得出结论,增强的响应性能与异质结构的粒径,多孔结构,表面积和组分比有关。

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