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Platinum Nanoparticle Decorated SiO2 Microfibers as Catalysts for Micro Unmanned Underwater Vehicle Propulsion

机译:铂纳米粒子修饰的SiO2超细纤维作为微型无人水下航行器推进的催化剂

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摘要

Micro unmanned underwater vehicles (UUVs) need to house propulsion mechanisms that are small in size but sufficiently powerful to deliver on-demand acceleration for tight radius turns, burst-driven docking maneuvers, and low-speed course corrections. Recently, small-scale hydrogen peroxide (H2O2) propulsion mechanisms have shown great promise in delivering pulsatile thrust for such acceleration needs. However, the need for robust, high surface area nanocatalysts that can be manufactured on a large scale for integration into micro UUV reaction chambers is still needed. In this report, a thermal/electrical insulator, silicon oxide (SiO2) microfibers, is used as a support for platinum nanoparticle (PtNP) catalysts. The mercapto-silanization of the SiO2 microfibers enables strong covalent attachment with PtNPs, and the resultant PtNP–SiO2 fibers act as a robust, high surface area catalyst for H2O2 decomposition. The PtNP–SiO2 catalysts are fitted inside a micro UUV reaction chamber for vehicular propulsion; the catalysts can propel a micro UUV for 5.9 m at a velocity of 1.18 m/s with 50 mL of 50% (w/w) H2O2. The concomitance of facile fabrication, economic and scalable processing, and high performance—including a reduction in H2O2 decomposition activation energy of 40–50% over conventional material catalysts—paves the way for using these nanostructured microfibers in modern, small-scale underwater vehicle propulsion systems.
机译:微型无人水下航行器(UUV)需要容纳小型的推进机构,但要有足够的能力以提供按需加速,以实现急转弯,爆破驱动的对接操纵和低速航向校正。近来,小规模的过氧化氢(H2O2)推进机制在提供脉动推力以满足此类加速需求方面显示出了巨大的希望。然而,仍然需要能够大规模生产以集成到微型UUV反应室中的坚固,高表面积的纳米催化剂。在此报告中,热/电绝缘体氧化硅(SiO2)超细纤维被用作铂纳米粒子(PtNP)催化剂的载体。 SiO2超细纤维的巯基硅烷化可实现与PtNP的牢固共价结合,所得的PtNP-SiO2纤维可作为坚固的高表面积H2O2分解催化剂。 PtNP-SiO2催化剂安装在微型UUV反应室内,用于车辆推进。催化剂可以以1.18 m / s的速度和50 mL的50%(w / w)H2O2将微型UUV推进5.9 m。易于制造,经济和可扩展处理以及高性能(包括与传统材料催化剂相比,H2O2分解活化能降低40–50%)的结合,为在现代小型水下航行器推进中使用这些纳米结构超细纤维铺平了道路系统。

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