Enhanced One/Two‐Photon Initiating Performance of Nitro‐Carbazole‐Styrene Based Oxime/Ketoxime Esters

Author:

Xie Jie1,Wang Yonghui1,Wang Xiaobin2,Fang Xuefeng3,Zhu Qinyan3,Cao Chun2,Jin Ming1

Affiliation:

1. Department of Polymer Materials, School of Materials Science and Engineering Tongji University No.4800 Caoan Road Shanghai 201804 China

2. Research Center for Intelligent Sensing, Zhejiang Lab No.1818 Wenyi West Road Hangzhou Zhejiang 311100 China

3. Zhejiang Yangfan New Materials Co., Ltd. No.25 Weisan Road, Shaoxing Zhejiang 312369 China

Abstract

Comprehensive SummaryPhotoinitiators of the oxime ester (OXE) or ketoxime ester (OXE‐CO) type can rapidly undergo N—O bond cleavage and generate free radicals to initiate photopolymerization under LED excitation, occupying an important position in the field of photocuring. However, the commercial OXEs, e.g., OXE 01 and 02 with λmax's at 326 and 344 nm, respectively, still do not well match the emission spectra of LEDs. Developing novel OXEs/OXE‐COs with high photosensitivity for long‐wavelength LEDs has great significance. Here, four new OXEs/OXE‐COs with nitro‐carbazole‐styrene conjugated chromophore were designed, synthesized, and used as photoinitiators. Results demonstrated that all photoinitiators had strong absorption within the UV–vis range (λmax: 381—392 nm, εmax: 8200—11500 M−1·cm−1). Molecular design of the oxime ester cleavage to produce a small volume methyl group and a methacryl group with an unsaturated double bond brings high activity and low migration, respectively, in one‐photon polymerization under 365—450 nm LEDs excitation. Moreover, OXEs/OXE‐COs with PETA exhibited a wide processing window, high resolution (line accuracy~100 nm) and good nano‐patterning capability under 780 nm femtosecond laser irradiation in two‐photon polymerization, indicating their great potential in 2D/3D microfabrication technologies.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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