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用于大规模温度监测涂层的可调温响应性和基质聚合物的相分离结构。

Phase-separated structures of tunable thermoresponsive and matrix polymers for large-scale temperature monitoring coatings.

机构信息

Department of Applied Chemistry, Faculty of Science and Technology, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.

Department of Surgery, School of Medicine, Keio University, 35 Shinanomachi, Shinjuku-ku, Tokyo 160-8582, Japan.

出版信息

J Mater Chem B. 2024 Oct 30;12(42):10886-10892. doi: 10.1039/d4tb01743a.

Abstract

Temperature monitoring is significant and fundamental in the fields of healthcare and medicine. In surgery, ultrasonic cutting devices are used for cutting, coagulation, and hemostasis. However, surgeons are concerned about the collateral thermal damages. For example, due to the limited space during endoscopic surgery, thermal damage is caused by touching the surrounding tissues of the targeted organ with the heated shaft of the ultrasonic cutting device. The present work exhibits thermoresponsive and reversible color-change coatings for temperature-distribution imaging. The phase-separated structures of the layered conjugated and matrix polymers enable both the tuned thermoresponsivity and large-scale coating. Layered polydiacetylene (PDA) with intercalated guests exhibits reversible and thermoresponsive gradual color changes from blue to red. A matrix polymer facilitates formation of the phase-separated layered PDA and large-scale coating. Spraying the precursor solution containing the diacetylene monomer, guest molecule, and matrix polymer provides the self-organized large-scale coatings on substrates. The temperature distribution on the shaft of an ultrasonic cutting device is monitored using the coatings. The phase-separated structure of thermoresponsive and matrix polymers can be applied to tunable temperature monitoring in a variety of fields.

摘要

温度监测在医疗保健和医学领域具有重要意义。在外科手术中,超声切割设备用于切割、凝血和止血。然而,外科医生担心会产生附带的热损伤。例如,由于内窥镜手术的空间有限,加热的超声切割设备轴会接触到目标器官的周围组织,从而导致热损伤。本工作展示了用于温度分布成像的热响应性和可逆变色涂层。层状共轭聚合物和基质聚合物的相分离结构使调谐的热响应性和大规模涂层成为可能。层状聚二乙炔(PDA)具有夹层客体,表现出从蓝色到红色的可逆和热响应性逐渐变色。基质聚合物有利于相分离层状 PDA 和大规模涂层的形成。喷涂含有二乙炔单体、客体分子和基质聚合物的前驱体溶液,在基底上提供自组织的大规模涂层。使用这些涂层来监测超声切割设备轴上的温度分布。热响应性和基质聚合物的相分离结构可应用于各种领域的可调温度监测。

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