The rise of self-driving labs in chemical and materials sciences

Развитие лабораторий с автономным управлением в химии и материаловедении
Milad Abolhasani, Eugenia Kumacheva
2023-01-30

automated experimentationchemical space explorationlab automation and roboticsmachine learningself-driving labs
Accelerating the discovery of new molecules and materials, as well as developing green and sustainable ways to synthesize them, will help to address global challenges in energy, sustainability and healthcare. The recent growth of data science and automated experimentation techniques has resulted in the advent of self-driving labs (SDLs) via the integration of machine learning, lab automation and robotics. An SDL is a machine-learning-assisted modular experimental platform that iteratively operates a series of experiments selected by the machine learning algorithm to achieve a user-defined objective. These intelligent robotic assistants help researchers to accelerate the pace of fundamental and applied research through rapid exploration of the chemical space. In this Review, we introduce SDLs and provide a roadmap for their implementation by non-expert scientists. We present the status quo of successful SDL implementations in the field and discuss their current limitations and future opportunities to accelerate finding solutions for societal needs. Self-driving labs (SDLs) combine machine learning with automated experimental platforms, enabling rapid exploration of the chemical space and accelerating the pace of materials and molecular discovery. In this Review, the application of SDLs, their limitations and future opportunities are discussed, and a roadmap is provided for their implementation by non-expert scientists.
1
A practical implementation roadmap is provided to help non-expert scientists adopt self-driving laboratory systems.
2
Machine-learning-selected experiments enable rapid exploration of chemical space, accelerating molecular and materials discovery and synthesis development.
3
Self-driving labs integrate machine learning, laboratory automation, and robotics into modular platforms for iterative, objective-driven experimentation.
4
The paper identifies limitations and future opportunities for self-driving labs in addressing energy, sustainability, and healthcare challenges.
5
The review surveys successful self-driving lab implementations across chemical and materials sciences and assesses their current status.

self-driving labs (SDLs) in chemical and materials sciences

their implementation, applications, limitations, and future opportunities for accelerating molecular and materials discovery

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Publication Date
2023-01-30
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Authors
Milad Abolhasani
Eugenia Kumacheva
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