非古典的な方法で結晶が形成される仕組みを解読する(Deciphering How Crystals Form in Non-Classical Ways)

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2024-05-10 パシフィック・ノースウェスト国立研究所(PNNL)

柔らかく有機的な結晶質材料は、製薬からフレキシブルエレクトロニクスまで幅広い用途がありますが、その結晶化の過程を理解することは組み立て中の観察が困難であったため、歴史的に挑戦でした。20年以上にわたる研究で、結晶組立のより正確な理解に向けた理論と実験の進歩がありました。このレビューは、柔らかく有機的な材料の結晶化経路の理解における重要な進歩と、今後の方向性を強調しています。特に、現場での測定の必要性が強調されています。

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軟質有機材料における非古典的結晶化 Non-classical crystallization in soft and organic materials

Jingshan S. Du,Yuna Bae & James J. De Yoreo
Nature Reviews Materials  Published:06 February 2024
DOI:https://doi.org/10.1038/s41578-023-00637-y

非古典的な方法で結晶が形成される仕組みを解読する(Deciphering How Crystals Form in Non-Classical Ways)

Abstract

Classical nucleation and crystal growth theories describe how nuclei form, become stable after reaching a critical size and then enlarge through monomer attachment. More than two decades ago, non-classical pathways have been proposed for various types of (bio)molecules and materials, which can substantially alter the crystallization kinetics and outcomes. Direct observation of non-classical crystallization of inorganic nanomaterials, including metastable structure-mediated and particle attachment-based pathways that usually occur on the nanoscale, was enabled by in situ liquid-phase electron microscopy. However, it was not until recently that the crystallization dynamics of beam-sensitive soft materials were directly imaged with sufficient spatial resolution, and a level of microstructural understanding of defects and interfaces emerged. This article provides a high-level review of the non-classical crystallization pathways discovered in soft and organic materials and a forward-looking guide for future research. We first analyse how the characteristics of soft materials affect their crystallization pathways and kinetics. We then identify technical approaches to studying the crystallization trajectories of soft materials and discuss strategies to properly select and apply them to different systems. Breakthroughs made in understanding the crystallization of small organic molecules, (bio)macromolecules, colloids and reticular framework materials are examined. Finally, we provide an outlook on the challenges in elucidating soft material crystallization pathways and the opportunities for assisting the design and synthesis of new materials and structures.

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