Catalonia Institute for Energy Research-IREC , 08930 Sant Adrià de Besòs , Barcelona , Spain.
LENS-MIND, Departament d'Enginyeries i Electrònica i Institut de Nanociència i Nanotecnologia (In2UB) , Universitat de Barcelona , 08028 Barcelona , Spain.
Langmuir. 2018 Jun 5;34(22):6470-6479. doi: 10.1021/acs.langmuir.8b00406. Epub 2018 May 23.
Colloidal nanocrystals (NCs) compete with molecular catalysts in the field of homogenous catalysis, offering easier recyclability and a number of potentially advantageous functionalities, such as tunable band gaps, plasmonic properties, or a magnetic moment. Using high-throughput printing technologies, colloidal NCs can also be supported onto substrates to produce cost-effective electronic, optoelectronic, electrocatalytic, and sensing devices. For both catalytic and technological application, NC surface chemistry and supracrystal organization are key parameters determining final performance. Here, we study the influence of the surface ligands and the NC organization on the catalytic properties of InS, both as a colloid and as a supported layer. As a colloid, NCs stabilized by inorganic ligands show the highest photocatalytic activities, which we associate with their large and more accessible surfaces. On the other hand, when NCs are supported on a substrate, their organization becomes an essential parameter determining performance. For instance, NC-based films produced through a gelation process provided five-fold higher photocurrent densities than those obtained from dense films produced by the direct printing of NCs.
胶体纳米晶体(NCs)在均相催化领域与分子催化剂竞争,提供了更易于回收利用和许多潜在有利的功能,例如可调带隙、等离子体特性或磁矩。使用高通量打印技术,胶体 NCs 也可以被支撑在基底上,以生产具有成本效益的电子、光电、电催化和传感设备。对于催化和技术应用,NC 表面化学和超晶组织是决定最终性能的关键参数。在这里,我们研究了表面配体和 NC 组织对 InS 的催化性能的影响,InS 既是胶体又是支撑层。作为胶体,由无机配体稳定的 NCs 表现出最高的光催化活性,我们将其与它们更大和更易接近的表面联系起来。另一方面,当 NCs 被支撑在基底上时,它们的组织成为决定性能的一个重要参数。例如,通过凝胶化过程制备的基于 NC 的薄膜比通过直接打印 NC 制备的致密薄膜获得的光电流密度高五倍。