Zámbó Dániel, Rusch Pascal, Lübkemann Franziska, Bigall Nadja C
Institute of Physical Chemistry and Electrochemistry, Leibniz Universität Hannover, Callinstr. 3A, 30519 Hanover, Germany.
Centre for Energy Research, Institute of Technical Physics and Materials Science, Konkoly-Thege M. str. 29-33, 1121 Budapest, Hungary.
ACS Appl Mater Interfaces. 2021 Dec 8;13(48):57774-57785. doi: 10.1021/acsami.1c16424. Epub 2021 Nov 23.
Noble-metal-based electrocatalysts usually contain small nanoparticle building blocks to ensure a high specific surface area as the scene for the surface processes. Here, we show that relatively large noble-metal nanorods are also promising candidates to build up functional macrostructures with prominent electrocatalytic activity. After optimizing and upscaling the syntheses of gold nanorods and gold bipyramid-templated silver nanorods, cryoaerogels are fabricated on a conductive substrate flash freezing and subsequent freeze drying. The versatile cryoaerogelation technique allows the formation of macrostructures with dendritic, open-pore structure facilitating the increase of the accessible nanorod surfaces. It is demonstrated electrochemical oxidation and stripping test experiments that noble-metal surface sites are electrochemically active in redox reactions. Furthermore, gold nanorod cryoaerogels offer a platform for redox sensing, ethanol oxidation reaction, as well as glucose sensing. Compared to their simply drop-cast and dried counterparts, the noble-metal nanorod cryoaerogels offer enhanced activity due to the open porosity of the fabricated nanostructure while maintaining structural stability.
基于贵金属的电催化剂通常包含小的纳米颗粒构建块,以确保有高的比表面积作为表面过程发生的场所。在此,我们表明相对较大的贵金属纳米棒也是构建具有突出电催化活性的功能宏观结构的有前景的候选材料。在优化并扩大金纳米棒和金双锥模板银纳米棒的合成规模后,通过快速冷冻和随后的冷冻干燥在导电基底上制备出低温气凝胶。这种通用的低温气凝胶化技术能够形成具有树枝状开孔结构的宏观结构,有利于增加可及的纳米棒表面。通过电化学氧化和溶出测试实验证明,贵金属表面位点在氧化还原反应中具有电化学活性。此外,金纳米棒低温气凝胶为氧化还原传感、乙醇氧化反应以及葡萄糖传感提供了一个平台。与简单滴铸和干燥的对应物相比,由于所制备纳米结构的开孔性,贵金属纳米棒低温气凝胶在保持结构稳定性的同时提供了增强的活性。