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Coaxial electrospinning of WO3 nanotubes functionalized with bio-inspired Pd catalysts and their superior hydrogen sensing performance

机译:同轴电纺的WO3纳米管携带仿生Pd和催化剂上级氢传感性能

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摘要

Macroporous WO3 nanotubes (NTs) functionalized with nanoscale catalysts were fabricated using coaxial electrospinning combined with sacrificial templating and protein-encapsulated catalysts. The macro-porous thin-walled nanotubular structures were obtained by introducing colloidal polystyrene (PS) particles to a shell solution of W precursor and poly(vinylpyrrolidone). After coaxial electrospinning with a core liquid of mineral oil and subsequent calcination, open pores with an average diameter of 173 nm were formed on the surface of WO3 NTs due to decomposition of the PS colloids. In addition, catalytic Pd nanoparticles (NPs) were synthesized using bio-inspired protein cages, i.e., apoferritin, and uniformly dispersed within the shell solution and subsequently on the WO3 NTs. The resulting Pd functionalized macroporous WO3 NTs were demonstrated to be high performance hydrogen (H-2) sensors. In particular, Pd-functionalized macroporous WO3 NTs exhibited a very high H-2 response (Rair/Rgas) of 17.6 at 500 ppm with a short response time. Furthermore, the NTs were shown to be highly selective for H-2 compared to other gases such as carbon monoxide (CO), ammonia (NH3), and methane (CH4). The results demonstrate a new synthetic method to prepare highly porous nanotubular structures with well-dispersed nanoscale catalysts, which can provide improved microstructures for chemical sensing.
机译:大孔WO3纳米管功能化(nt)纳米催化剂的使用同轴电纺的结合牺牲模板和protein-encapsulated催化剂。的macro-porous薄壁nanotubular结构通过引入胶体聚苯乙烯(PS)粒子壳的解决方案W前体和聚(乙烯吡咯烷酮)。同轴电纺的核心液体矿物油和随后的煅烧、开放孔平均直径173纳米表面形成WO3 nt由于分解的PS胶体。纳米粒子催化Pd (NPs)是合成的利用仿生学研究蛋白质的笼子里,即去铁铁蛋白和内均匀分散壳牌的解决方案和随后的WO3 nt。结果Pd功能化大孔WO3nt被证明是高绩效氢气(h2)传感器。Pd-functionalized大孔WO3 nt展出非常高,氢反应(Rair / rga) 17.6 500ppm和短的响应时间。为2元被证明是高度选择性相比其他气体,如一氧化碳(CO)、氨(NH3)和甲烷(CH4)。结果表明一种新的合成方法准备高度多孔nanotubular结构的说法纳米催化剂,它可以为化学提供了改进的微观结构传感。

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