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铂纸微马达:一种仿海胆纳米杂化催化剂,用于绿色单组元推进剂气泡推进器。

Platinum-paper micromotors: an urchin-like nanohybrid catalyst for green monopropellant bubble-thrusters.

机构信息

Department of Mechanical Engineering, Iowa State University , 2104 Black Engineering, Ames, Iowa 50011, United States.

出版信息

ACS Appl Mater Interfaces. 2014 Oct 22;6(20):17837-47. doi: 10.1021/am504525e. Epub 2014 Sep 30.

Abstract

Platinum nanourchins supported on microfibrilated cellulose films (MFC) were fabricated and evaluated as hydrogen peroxide catalysts for small-scale, autonomous underwater vehicle (AUV) propulsion systems. The catalytic substrate was synthesized through the reduction of chloroplatinic acid to create a thick film of Pt coral-like microstructures coated with Pt urchin-like nanowires that are arrayed in three dimensions on a two-dimensional MFC film. This organic/inorganic nanohybrid displays high catalytic ability (reduced activation energy of 50-63% over conventional materials and 13-19% for similar Pt nanoparticle-based structures) during hydrogen peroxide (H2O2) decomposition as well as sufficient propulsive thrust (>0.5 N) from reagent grade H2O2 (30% w/w) fuel within a small underwater reaction vessel. The results demonstrate that these layered nanohybrid sheets are robust and catalytically effective for green, H2O2-based micro-AUV propulsion where the storage and handling of highly explosive, toxic fuels are prohibitive due to size-requirements, cost limitations, and close person-to-machine contact.

摘要

负载在微纤化纤维素薄膜(MFC)上的铂纳米刺球被制备出来,并被评估为用于小规模自主水下航行器(AUV)推进系统的过氧化氢催化剂。该催化基底是通过还原氯铂酸来合成的,形成了一层厚的 Pt 珊瑚状微结构薄膜,其表面涂覆有 Pt 刺猬状纳米线,这些纳米线以三维方式排列在二维 MFC 薄膜上。这种有机/无机纳米杂化材料在过氧化氢(H2O2)分解过程中表现出高催化活性(与传统材料相比,降低了 50-63%的活化能,与类似的基于 Pt 纳米颗粒的结构相比,降低了 13-19%),并且在小型水下反应容器中使用试剂级 H2O2(30%w/w)燃料时能够产生足够的推进推力(>0.5 N)。结果表明,这些分层纳米杂化片在基于 H2O2 的绿色微型 AUV 推进中具有强大的耐用性和催化效果,由于尺寸要求、成本限制和人机接触紧密等原因,高爆炸、有毒燃料的储存和处理是不可行的。

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