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Search for Catalysts by Inverse Design: Artificial Intelligence, Mountain Climbers, and Alchemists
Jessica G Freeze1,2, H Ray Kelly1,2, Victor S Batista2,3
1Department of Chemistry , Yale University , New Haven , Connecticut 06520 , United States.
Abstract:
In silico catalyst design is a grand challenge of chemistry. Traditional computational approaches have been limited by the need to compute properties for an intractably large number of possible catalysts. Recently, inverse design methods have emerged, starting from a desired property and optimizing a corresponding chemical structure. Techniques used for exploring chemical space include gradient-based optimization, alchemical transformations, and machine learning. Though the application of these methods to catalysis is in its early stages, further development will allow for robust computational catalyst design. This review provides an overview of the evolution of inverse design approaches and their relevance to catalysis. The strengths and limitations of existing techniques are highlighted, and suggestions for future research are provided.
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