光热治疗
材料科学
纳米技术
光热效应
聚合物
硫辛酸
共价键
合理设计
表面改性
智能聚合物
相容性(地球化学)
智能材料
光掩模
胶粘剂
树枝状大分子
作者
Chenyu Shi,Sen‐Sen Yan,Ying Zhang,Shuhai Qiu,Qi Zhang,Da‐Hui Qu
标识
DOI:10.1002/adfm.202523360
摘要
Abstract The development of photothermally responsive smart materials has attracted significant interest due to their broad spectral compatibility and efficient energy conversion capabilities. Polydopamine (PDA) is a prominent bio‐based photothermal candidate that provides a sustainable approach for solar energy utilization. However, its practical integration into advanced photo‐responsive devices is limited by suboptimal photothermal efficiency and interfacial incompatibility with polymer matrices. To address these limitations, a novel photothermal nano‐crosslinker is designed via the covalent grafting of a small amount (<1% molar ratio) of thioctic acid, a natural small molecule, onto the surface of PDA nanoparticle. This approach exhibits exceptional visible‐to‐near‐infrared absorption capabilities and a remarkable photothermal efficiency of 71.4%. The presence of surface carboxyl hydrogen bonds and dynamic disulfide sites facilitates universal compatibility with various polymer matrices through synergistic interfacial bonding mechanisms. The practical application of this photothermal nano‐crosslinker is demonstrated through a series of photo‐driven applications featuring precise spatiotemporal control, such as orthogonally photo‐switchable adhesion and spatially programmable photothermal printing. This robust and versatile photothermal crosslinking strategy establishes a new approach for the rational design of high‐performance photo‐controllable smart materials.
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