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通过实验设计方法对铜纳米线进行先进的形态控制。

Advanced morphological control over Cu nanowires through a design of experiments approach.

作者信息

Conte Andrea, Rosati Antonella, Fantin Marco, Aliprandi Alessandro, Baron Marco, Bonacchi Sara, Antonello Sabrina

机构信息

Department of Chemical Sciences, University of Padova, Via F. Marzolo 1 35131 Padova Italy

出版信息

Mater Adv. 2024 Sep 30;5(22):8836-8846. doi: 10.1039/d4ma00402g. eCollection 2024 Nov 11.

Abstract

Copper nanowires (CuNWs), featuring anisotropic highly conductive crystalline facets, represent an ideal nanostructure to fabricate on-demand materials as transparent electrodes and efficient electrocatalysts. The development of reliable and robust CuNWs requires achieving a full control over their synthesis and morphology growth, a challenge that continues to puzzle materials scientists. In this study, we systematically investigated the correlation between the critical synthetic parameters and the structural properties of nanowires using a design of experiments (DOE) approach. Multiparametric variation of experimental reaction conditions combined with orthogonal technical analysis allowed us to develop a sound predictive model that provides guidelines for designing CuNWs with controlled morphology and reaction yield. Beyond these synthetic achievements, voltammetric and electrocatalytic experiments were used to correlate the CuNWs morphology and structure to their catalytic activity and selectivity toward CO electroreduction, thus opening new avenues for further intersectoral actions.

摘要

铜纳米线(CuNWs)具有各向异性的高导电晶体面,是制造按需材料(如透明电极和高效电催化剂)的理想纳米结构。开发可靠且坚固的铜纳米线需要完全控制其合成和形态生长,这一挑战一直困扰着材料科学家。在本研究中,我们采用实验设计(DOE)方法系统地研究了关键合成参数与纳米线结构特性之间的相关性。实验反应条件的多参数变化与正交技术分析相结合,使我们能够建立一个可靠的预测模型,为设计具有可控形态和反应产率的铜纳米线提供指导。除了这些合成成果外,还通过伏安法和电催化实验将铜纳米线的形态和结构与其对CO电还原的催化活性和选择性相关联,从而为进一步的跨领域研究开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aed4/11484170/ba8116e5f26c/d4ma00402g-f1.jpg

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