Tong Xia, Wang Guang, Soldera Armand, Zhao Yue
Département de chimie, Université de Sherbrooke, Sherbrooke, Québec, Canada J1K 2R1.
J Phys Chem B. 2005 Nov 3;109(43):20281-7. doi: 10.1021/jp0524274.
The underlying mechanism of UV light-induced dissociation and visible light-induced reformation of vesicles formed by an azobenzene diblock copolymer was investigated. These processes were studied in situ by monitoring changes in optical transmittance of the vesicular solution while being exposed to UV or visible light irradiation. The results indicate that the UV-induced dissociation of the vesicles results from their thermodynamic instability due to a shift of the hydrophilic/hydrophobic balance arising from the trans-cis isomerization, while their reaggregation takes place upon visible light irradiation that shifts the hydrophilic/hydrophobic balance in the opposite direction after the reverse cis-trans isomerization. The study suggests a specific design principle for obtaining UV light-dissociable and visible light-recoverable vesicles based on azobenzene block copolymers. On one hand, the structure of azobenzene moiety used in the hydrophobic block should have a small (near zero) dipole moment in the trans form and a significantly higher dipole moment in the cis form, which ensures a significant increase in polarity of the hydrophobic block under UV light irradiation. On the other hand, the hydrophilic block should be weakly hydrophilic. The conjunction of the two conditions can make the light-induced shift of the hydrophilic/hydrophobic balance important enough to lead to the reversible change in vesicular aggregation.
研究了偶氮苯二嵌段共聚物形成的囊泡在紫外光诱导下解离以及可见光诱导下重新形成的潜在机制。通过监测囊泡溶液在紫外或可见光照射下的透光率变化,对这些过程进行了原位研究。结果表明,囊泡的紫外诱导解离是由于反式 - 顺式异构化导致亲水/疏水平衡发生变化,从而使其具有热力学不稳定性;而在反式 - 顺式异构化后,可见光照射使亲水/疏水平衡向相反方向移动,囊泡发生重新聚集。该研究提出了一种基于偶氮苯嵌段共聚物获得可紫外光解离和可见光恢复囊泡的特定设计原则。一方面,疏水嵌段中使用的偶氮苯部分的结构在反式形式下应具有小(接近零)的偶极矩,而在顺式形式下具有明显更高的偶极矩,这确保了在紫外光照射下疏水嵌段的极性显著增加。另一方面,亲水嵌段应具有弱亲水性。这两个条件的结合可以使光诱导的亲水/疏水平衡变化足够重要,从而导致囊泡聚集的可逆变化。