A review on laser-induced crystallization from solution
Vikram Korede, Nagaraj Nagalingam, Frederico Marques, Noah van der, Linden, Johan T. Padding, Remco Hartkamp, Huseyin Burak Eral

TL;DR
This review discusses recent advances in laser-induced crystallization techniques, highlighting mechanisms, experimental setups, and interdisciplinary connections to improve control over crystallization processes across various scales.
Contribution
It classifies and compares different laser-based crystallization methods, emphasizing their mechanisms and fostering interdisciplinary understanding.
Findings
Laser techniques can manipulate crystallization processes effectively.
Different laser methods have unique mechanisms and applications.
Interdisciplinary approaches enhance control over crystallization.
Abstract
Crystallization is abound in nature and industrial practice. A plethora of indispensable products ranging from agrochemicals and pharmaceuticals to battery materials, are produced in crystalline form in industrial practice. Yet, our control over the crystallization process across scales, from molecular to macroscopic, is far from complete. This bottleneck not only hinders our ability to engineer the properties of crystalline products essential for maintaining our quality of life but also hampers progress toward a sustainable circular economy in resource recovery. In recent years, approaches leveraging light fields have emerged as promising alternatives to manipulate crystallization. In this review article, we classify laser-induced crystallization approaches where light-material interactions are utilized to influence crystallization phenomena according to proposed underlying mechanisms…
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Taxonomy
TopicsLaser-induced spectroscopy and plasma
