Liquid Metal Alloy Catalysis – Challenges and Prospects

Author:

Ameen Mariam1ORCID,Jabbar Fahad1,Yang Dan1ORCID,Irfan Mehmood1,Krishnamurthi Vaishnavi1ORCID,Parker. Caiden J.12,Zuraiqi Karma1ORCID,Le Tu C.1ORCID,Spencer Michelle J. S.32ORCID,Daeneke Torben12ORCID,Chiang Ken1ORCID

Affiliation:

1. School of Engineering RMIT University 3001 Melbourne Australia

2. ARC Centre of Excellence in Future Low-Energy Electronics Technologies RMIT University 3001 Melbourne Australia

3. School of Science RMIT University 3001 Melbourne Australia

Abstract

AbstractSignificant progress has been made in recent years in the development of liquid metal alloy catalysts. This article provides an overview of the state‐of‐the‐art research pertaining to liquid metal alloy catalysis, including alloy synthesis, reactor design, and theoretical calculations. Different alloy synthesis methods are discussed with a focus on strategies that can achieve colloidal intermetallic structures in liquid metal alloys. Current reactors for liquid metal‐based electrocatalytic and thermochemical processes are summarized. The application of theoretical tools, such as machine learning and computational chemistry to further liquid metal alloy design, is discussed. Finally, an outlook on the technological challenges and our perspective on future research opportunities for liquid metal alloy catalysis are presented.

Publisher

Wiley

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Catalysis

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