Nanocatalosomes as Plasmonic Bilayer Shells with Interlayer Catalytic Nanospaces for Solar‐Light‐Induced Reactions

A Kumar, N Kumari, S Dubbu, S Kumar… - Angewandte …, 2020 - Wiley Online Library
A Kumar, N Kumari, S Dubbu, S Kumar, T Kwon, JH Koo, J Lim, I Kim, YK Cho, J Rho, IS Lee
Angewandte Chemie, 2020Wiley Online Library
Interest and challenges remain in designing and synthesizing catalysts with nature‐like
complexity at few‐nm scale to harness unprecedented functionalities by using sustainable
solar light. We introduce “nanocatalosomes”—a bio‐inspired bilayer‐vesicular design of
nanoreactor with metallic bilayer shell‐in‐shell structure, having numerous controllable
confined cavities within few‐nm interlayer space, customizable with different noble metals.
The intershell‐confined plasmonically coupled hot‐nanospaces within the few‐nm cavities …
Abstract
Interest and challenges remain in designing and synthesizing catalysts with nature‐like complexity at few‐nm scale to harness unprecedented functionalities by using sustainable solar light. We introduce “nanocatalosomes”—a bio‐inspired bilayer‐vesicular design of nanoreactor with metallic bilayer shell‐in‐shell structure, having numerous controllable confined cavities within few‐nm interlayer space, customizable with different noble metals. The intershell‐confined plasmonically coupled hot‐nanospaces within the few‐nm cavities play a pivotal role in harnessing catalytic effects for various organic transformations, as demonstrated by “acceptorless dehydrogenation”, “Suzuki–Miyaura cross‐coupling” and “alkynyl annulation” affording clean conversions and turnover frequencies (TOFs) at least one order of magnitude higher than state‐of‐the‐art Au‐nanorod‐based plasmonic catalysts. This work paves the way towards next‐generation nanoreactors for chemical transformations with solar energy.
Wiley Online Library
以上显示的是最相近的搜索结果。 查看全部搜索结果