Progresses on Sensitization of Cationic Photoinitiators

Q4 Engineering
Z. Hong, Liang Jianxiong, L. Anhua
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引用次数: 0

Abstract

The curing rate and quantum efficiency of cationic photoinitiators are relatively low because the UV absorption of the photoinitiators ranges from 250 nm to 300 nm normally and does not match with the wavelength of light from UV light sources.To make the absorption red-shift,many efforts have been devoted onto the photosensitization of the photoinitiators.The achievements on the sensitization of the cationic photoinitiators have been summarized here.The sensitization is mainly based on the mechanisms as energy transfer,oxidation of free radical,electron transfer via exciplexes and addition fragmentation reaction.The methods adopted for the sensitization include adding photosensitizer,expanding molecular conjugation and attaching chromophore.The development of the photoinitiators and photosensitizers has been outlined and the applications of novel cationic photoinitiators and photosensitizers have been forecasted.
阳离子光引发剂敏化研究进展
阳离子光引发剂的固化速率和量子效率相对较低,因为其对紫外光的吸收通常在250 ~ 300 nm之间,与紫外光的波长不匹配。为了使吸收红移,人们对光引发剂的光敏化进行了大量的研究。本文综述了阳离子光引发剂敏化的研究进展。敏化机理主要是能量传递、自由基氧化、杂络合物电子传递和加成破碎反应。敏化的方法包括添加光敏剂、扩大分子偶联和附着发色团。概述了光引发剂和光敏剂的研究进展,并对新型阳离子光引发剂和光敏剂的应用前景进行了展望。
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来源期刊
CiteScore
0.10
自引率
0.00%
发文量
1775
期刊介绍: Imaging Science and Photochemistry, which was started in 1983, published bimonthly. It was sponsored by Technical Institute of Physics and Chemistry,Chinese Academy of Sciences; Chinese Society for Imaging Science and Technology. Imaging Science and Photochemistry Reports the latest research status of Imaging science and photochemistry in new theory and technology for the promotion of international and domestic academic exchanges. Original research letter , research paper , research note , review, article of application, and development, and dissertation abstract are welcome to publish in the journal cover areas of imaging science and photochemistry and the areas of informational materials including information storage and recording materials.
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