Chen Yuexing, Amirav Lilac
Schulich Faculty of Chemistry, Technion - Israel Institute of Technology Haifa 32000 Israel
Chem Sci. 2023 Jun 5;14(27):7512-7523. doi: 10.1039/d3sc00677h. eCollection 2023 Jul 12.
The significant role of metal particle geometry in dictating catalytic activity, selectivity, and stability is well established in heterocatalysis. However, this topic is rarely explored in semiconductor-metal hybrid photocatalytic systems, primarily due to the lack of synthetic control over this feature. Herein, we present a new synthetic route for the deposition of metallic Cu nanoparticles with spherical, elliptic, or cubic geometrical shapes, which are selectively grown on one side of the well-established CdSe@CdS nanorod photocatalytic system. An additional multipod morphology in which several nanorod branches are combined on a single Cu domain is presented as well. Cu is an earth-abundant low-cost catalyst known to promote a diverse gallery of organic transformations and is an excellent thermal and electrical conductor with interesting plasmonic properties. Its deposition on cadmium chalcogenide nanostructures is enabled here mitigation of the reaction kinetics such that the cation exchange reaction is prevented. The structural diversity of these sophisticated nanoscale hybrid systems lays the foundations for shape-activity correlation studies and employment in various applications.
金属颗粒几何形状在决定多相催化中的催化活性、选择性和稳定性方面的重要作用已在多相催化领域得到充分证实。然而,在半导体 - 金属混合光催化体系中,这一课题很少被探讨,主要是因为缺乏对这一特性的合成控制。在此,我们展示了一种新的合成路线,用于沉积具有球形、椭圆形或立方几何形状的金属铜纳米颗粒,这些纳米颗粒选择性地生长在成熟的CdSe@CdS纳米棒光催化体系的一侧。此外,还展示了一种多枝形态,其中几个纳米棒分支结合在单个铜域上。铜是一种储量丰富的低成本催化剂,已知能促进多种有机转化反应,并且是一种具有有趣等离子体特性的优良热导体和电导体。在此实现了其在硫属镉化物纳米结构上的沉积 减缓反应动力学,从而防止阳离子交换反应。这些复杂的纳米级混合体系的结构多样性为形状 - 活性相关性研究及在各种应用中的使用奠定了基础。