TY - JOUR
T1 - Developing high-efficiency photoinitiation systems by Leveraging highly Matched Interplays between photosensitizer and photoinitiator for enhanced energy transfer
AU - Wang, Azhu
AU - Zhao, Xianwei
AU - Shi, Zhiwei
AU - Lv, Chunyu
AU - Li, Pei
AU - Yu, Jun
AU - Rao, Han
AU - Chen, Haining
AU - Liu, Huicong
AU - Li, Weiping
AU - Jiang, Xiaoyu
N1 - Publisher Copyright:
© 2024
PY - 2025/1/16
Y1 - 2025/1/16
N2 - Synthesizing highly compatible photosensitizer provides new directions for constructing high-efficiency photoinitiation systems (PSs). Here, a 2,4-Bis(4-(diethylamino)benzylidene)cyclobutanone (C4) was synthesized and used to form a three-component PSs (C4/HABI/MBO) with a biimidazole (HABI), 2-mercaptobenzoxazole (MBO). The photosensitizer has a more efficient energy transfer properties attributed to the higher fluorescence emission capacity, narrower energy band gap, lower free energy of electron transfer (ΔGet) and improved matching with photoinitiator. Meanwhile, a double-cycle reaction mechanism is proposed, in which the improved matching seems to encourage this cycle to occur. As a result, the C4/HABI/MBO photoinitiation system well improved the diffraction efficiency of photopolymers up to 96% and demonstrated promising performance in recording and reproducing reflection holograms, which provide a new research idea for designing photoinitiation system.
AB - Synthesizing highly compatible photosensitizer provides new directions for constructing high-efficiency photoinitiation systems (PSs). Here, a 2,4-Bis(4-(diethylamino)benzylidene)cyclobutanone (C4) was synthesized and used to form a three-component PSs (C4/HABI/MBO) with a biimidazole (HABI), 2-mercaptobenzoxazole (MBO). The photosensitizer has a more efficient energy transfer properties attributed to the higher fluorescence emission capacity, narrower energy band gap, lower free energy of electron transfer (ΔGet) and improved matching with photoinitiator. Meanwhile, a double-cycle reaction mechanism is proposed, in which the improved matching seems to encourage this cycle to occur. As a result, the C4/HABI/MBO photoinitiation system well improved the diffraction efficiency of photopolymers up to 96% and demonstrated promising performance in recording and reproducing reflection holograms, which provide a new research idea for designing photoinitiation system.
KW - Energy transfer
KW - Holographic recording
KW - Matching
KW - Photoinitiation systems
KW - Photopolymer
UR - https://www.scopus.com/pages/publications/85212580617
U2 - 10.1016/j.eurpolymj.2024.113669
DO - 10.1016/j.eurpolymj.2024.113669
M3 - 文章
AN - SCOPUS:85212580617
SN - 0014-3057
VL - 223
JO - European Polymer Journal
JF - European Polymer Journal
M1 - 113669
ER -