Aebisher David, Azar Nikolay S, Zamadar Matibur, Gandra Naveen, Gafney Harry D, Gao Ruomei, Greer Alexander
Department of Chemistry and Graduate Center, City University of New York, Brooklyn College, Brooklyn, New York 11210, USA.
J Phys Chem B. 2008 Feb 21;112(7):1913-7. doi: 10.1021/jp709829z. Epub 2008 Jan 29.
Singlet molecular oxygen [1O2 (1Deltag)] is generated cleanly in aqueous solution upon irradiation of a heterogeneous complex, meso-tetra(N-methyl-4-pyridyl)porphine (1) adsorbed onto porous Vycor glass (PVG). The cationic photosensitizer 1 tightly binds onto PVG and gives a stable material, which does not dissociate 1 into the surrounding aqueous phase. The production of 1O2 was measured by monitoring the time-resolved 1O2 (1Deltag) phosphorescence at 1270 nm. Indirect analysis of 1O2 generation was also carried out with the photooxidation of trans-2-methyl-2-pentenoate anion, which afforded the corresponding hydroperoxide. Sensitizer-1-impregnated PVG gives rise to a new singlet oxygen generator but more importantly provides a heterogeneous system for use in water.
当中孔四(N-甲基-4-吡啶基)卟啉(1)吸附在多孔Vycor玻璃(PVG)上形成的非均相配合物在水溶液中受到辐照时,单线态分子氧[1O2 (1Deltag)]能被纯净地生成。阳离子光敏剂1紧密结合在PVG上,形成一种稳定的材料,该材料不会将1解离到周围的水相中。通过监测1270 nm处的时间分辨1O2 (1Deltag) 磷光来测量1O2的产生。还通过反式-2-甲基-2-戊烯酸根阴离子的光氧化进行了1O2生成的间接分析,该反应生成了相应的氢过氧化物。浸渍有敏化剂-1的PVG产生了一种新型单线态氧发生器,但更重要的是提供了一种用于水中的非均相体系。