热稳定性
偶氮苯
化学
激发
光化学
热的
还原(数学)
吸收光谱法
吸收(声学)
热稳定性
理论(学习稳定性)
光稳态
材料科学
化学物理
热致变色
波长
硝基
胺气处理
产量(工程)
分子内力
微型加热器
领域(数学)
偶氮化合物
计算化学
纳米技术
作者
Nawel Goual,Rémi Métivier,Guillaume Laurent,Pascal Retailleau,Keitaro Nakatani,Juan Xie
标识
DOI:10.1002/chem.202401737
摘要
Abstract Molecular photoswitches provide interesting tools to reversibly control various biological functions with light. Thanks to its small size and easy introduction into the biomolecules, azobenzene derivatives have been widely employed in the field of photopharmacology. All visible‐light switchable azobenzenes with controllable thermostability are highly demanded. Based on the reported tetra ‐ o ‐chloroazobenzenes, we synthesized push‐pull systems, by introducing dialkyl amine and nitro groups as strong electron‐donating and electron‐withdrawing groups on the para ‐positions, and then transformed to push‐push systems by a simple reduction step. The developed push‐pull and push‐push tetra ‐ o ‐chloroazobenzene derivatives displayed excellent photoswitching properties, as previously reported. The half‐life of the Z ‐isomers can be tuned from milliseconds for the push‐pull system to several hours for the push‐push system. The n‐π* and π‐π* transitions have better resolution in the push‐push molecules, and excitation at different wavelengths can tune the E / Z ratio at the photostationary state. For one push‐pull molecule, structure and absorption spectra obtained from theoretical calculations are compared with experimental data, along with data on the push‐push counterpart.
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