Keyser Sean P, Trujillo-Lemon Marianela, Sias Andrew N, Fairbanks Benjamin D, McLeod Robert R, Bowman Christopher N
Materials Science and Engineering Program, University of Colorado Boulder, Boulder, Colorado 80309, United States.
Department of Chemical and Biological Engineering, University of Colorado Boulder, Boulder, Colorado 80309, United States.
ACS Appl Mater Interfaces. 2024 Aug 28;16(34):45577-45588. doi: 10.1021/acsami.4c09324. Epub 2024 Aug 13.
High refractive index, low birefringence photopolymers were created via the radical-mediated, ring opening homopolymerization of 1,2-dithiolane functionalized monomers and were subsequently evaluated as holographic recording media. This investigation systematically characterized the reaction kinetics, thermodynamics, and volume shrinkage of the 1,2-dithiolane homopolymerization as well as the optical transparency, refractive index, birefringence, and holographic performance of multifunctional 1,2-dithiolane functionalized monomers and their resultant polymers. Real-time kinetic and thermodynamic analyses of a monofunctional 1,2-dithiolane monomer, lipoic acid methyl ester (LipOMe), indicated rapid monomer conversion, exceeding 90% in 60 s, with an overall enthalpy of reaction of 18 ± 1 kJ/mol. The ring-opening polymerization resulted in low shrinkage (10.6 ± 0.3 cm/mol dithiolane) and a significant bulk refractive index increase (0.030 ± 0.003). The resulting photopolymers exhibited high optical transparency, minimal haze, and negligible birefringence, suggesting the potential of 1,2-homopolymers as optical materials. To further explore the specific capabilities for use as high-performance holographic recording applications, several multifunctional monomers were synthesized with the ethanedithiol lipoic acid monomer (EDT-Lip2) selected for experimentation. Holographic diffraction gratings written using this monomer achieved a peak-to-mean refractive index modulation of 0.008 with minimal haze and birefringence.
通过1,2 - 二硫戊环官能化单体的自由基介导开环均聚反应制备了高折射率、低双折射的光聚合物,并随后将其评估为全息记录介质。本研究系统地表征了1,2 - 二硫戊环均聚反应的反应动力学、热力学和体积收缩,以及多功能1,2 - 二硫戊环官能化单体及其所得聚合物的光学透明度、折射率、双折射和全息性能。对单官能1,2 - 二硫戊环单体硫辛酸甲酯(LipOMe)的实时动力学和热力学分析表明,单体转化率迅速,在60秒内超过90%,反应的总焓为18±1 kJ/mol。开环聚合导致低收缩率(10.6±0.3 cm/mol二硫戊环)和显著的体折射率增加(0.030±0.003)。所得的光聚合物表现出高光学透明度、最小雾度和可忽略不计的双折射,表明1,2 - 均聚物作为光学材料的潜力。为了进一步探索用作高性能全息记录应用的具体能力,合成了几种多功能单体,并选择乙二硫醇硫辛酸单体(EDT - Lip2)进行实验。使用该单体写入的全息衍射光栅实现了0.008的峰均折射率调制,雾度和双折射最小。