Chemputation and the Standardization of Chemical Informatics.

JACS Au

School of Chemistry, University of Glasgow, University Avenue, Glasgow, G12 8QQ, United Kingdom.

Published: October 2021

AI Article Synopsis

  • The rise of machine learning in chemical reaction optimization is hindered by the absence of a universal architecture connecting chemical transformations to software and hardware, risking data loss and issues with reproducibility.
  • The development of digital chemistry, or chemputation, aims to create a standardized method for controlling chemical reactions, allowing users to efficiently integrate algorithms specific to their research needs.
  • Introducing standardized hardware, known as ChemPU, enables compatibility across various chemistry automation strategies and sets a publication standard for sharing chemical code (χDL), enhancing reproducibility and interoperability in the field.

Article Abstract

The explosion in the use of machine learning for automated chemical reaction optimization is gathering pace. However, the lack of a standard architecture that connects the concept of chemical transformations universally to software and hardware provides a barrier to using the results of these optimizations and could cause the loss of relevant data and prevent reactions from being reproducible or unexpected findings verifiable or explainable. In this Perspective, we describe how the development of the field of digital chemistry or chemputation, that is the universal code-enabled control of chemical reactions using a standard language and ontology, will remove these barriers allowing users to focus on the chemistry and plug in algorithms according to the problem space to be explored or unit function to be optimized. We describe a standard hardware (the chemical processing programming architecture-the ChemPU) to encompass all chemical synthesis, an approach which unifies all chemistry automation strategies, from solid-phase peptide synthesis, to HTE flow chemistry platforms, while at the same time establishing a publication standard so that researchers can exchange chemical code (χDL) to ensure reproducibility and interoperability. Not only can a vast range of different chemistries be plugged into the hardware, but the ever-expanding developments in software and algorithms can also be accommodated. These technologies, when combined will allow chemistry, or chemputation, to follow computation-that is the running of code across many different types of capable hardware to get the same result every time with a low error rate.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8549037PMC
http://dx.doi.org/10.1021/jacsau.1c00303DOI Listing

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