纳米技术
化学
智能材料
超分子化学
分子间力
聚合物
计算机科学
材料科学
智能聚合物
有机分子
超分子聚合物
作者
Zhiyu Jia,Yue Gao,Tongtong Zhang,Nan Wang
摘要
Organoboron-based stimuli-responsive materials have attracted intense research interest over the past decade owing to their broad utility in optoelectronics, chemical sensing, and smart devices. The boron center combines Lewis acidity, pronounced electron-accepting character, and synthetically tunable orbital hybridization, enabling boron-embedded scaffolds to undergo rapid and reversible structural or electronic transformations under optical, thermal, mechanical, or electrical stimuli. These perturbations modulate intra- and intermolecular interactions, producing pronounced changes in photophysical signature, charge-transport behavior, or mechanical response that can be exploited for real-time optical read-out or switchable device function. This review describes recent progress in boron-containing responsive systems ranging from small molecules and polymers to supramolecular assemblies, with emphasis on luminescent materials and representative advances of the last five years. Current challenges and future directions toward next-generation boron-based smart materials are also discussed.
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