Serrano Mariana P, Rafti Matías, Thomas Andrés H, Borsarelli Claudio D
Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (INIFTA), Departamento de Química, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, CCT La Plata-CONICET La Plata Argentina
Instituto de Bionanotecnología del NOA (INBIONATEC), CONICET. Universidad Nacional de Santiago del Estero (UNSE) RN9, Km 1125 G4206XCP Santiago del Estero Argentina.
RSC Adv. 2019 Jun 18;9(33):19226-19235. doi: 10.1039/c9ra03153g. eCollection 2019 Jun 14.
A polymeric photosensitizer based on poly(allylamine hydrochloride) (PAH) and rose Bengal (RB) was synthesized. The modified polycation PAH-RB was demonstrated to be suitable for construction of microcapsules a layer-by-layer (LbL) assembly technique, using sodium poly(styrene sulfonate) (PSS) as counter-polyelectrolyte and CaCO microcrystals as templates. After CaCO core removal, a stable suspension of hollow microcapsules with shells incorporating RB (HM-RB) was obtained. The spectroscopic and photophysical behavior of both PAH-RB and HM-RB in aqueous environments were studied and described in terms of dye-dye interactions and dye hydrophobicity. Only HM-RB was able to generate singlet molecular oxygen with similar efficiency to free RB in air-saturated solutions upon green light irradiation. In order to explore possible practical applications as a supramolecular photosensitizer, experiments of HM-RB irradiation in the presence of chemically and biologically relevant target molecules were carried out. It was observed that is possible to use visible light to initiate the photooxidation of biological compounds in water, with many interesting advantages compared to low-molecular-weight photosensitizers such as an enhancement of the photosensitizing effect, due to a significant reduction of dye-dye interaction, or improved reuse given the straightforward size-based separation from the reaction mixture without loss of efficiency.
合成了一种基于聚(烯丙胺盐酸盐)(PAH)和孟加拉玫瑰红(RB)的聚合物光敏剂。使用聚(苯乙烯磺酸钠)(PSS)作为反聚电解质,以碳酸钙(CaCO₃)微晶为模板,通过层层(LbL)组装技术证明改性聚阳离子PAH-RB适用于微胶囊的构建。去除CaCO₃核后,获得了具有包含RB的壳的中空微胶囊(HM-RB)的稳定悬浮液。研究并描述了PAH-RB和HM-RB在水环境中的光谱和光物理行为,涉及染料-染料相互作用和染料疏水性。在空气饱和溶液中,仅HM-RB在绿光照射下能够以与游离RB相似的效率产生单线态分子氧。为了探索作为超分子光敏剂的可能实际应用,进行了在化学和生物学相关目标分子存在下HM-RB照射的实验。观察到可以使用可见光引发水中生物化合物的光氧化,与低分子量光敏剂相比具有许多有趣的优点,例如由于染料-染料相互作用的显著降低而增强了光敏效果,或者由于从反应混合物中基于尺寸的直接分离而提高了再利用性且不损失效率。