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NIR BODIPY-Cyclotriphosphazene-Fullerene assemblies: Photophyisical properties and photosensitized generation of singlet oxygen

机译:NIR BODIPY-环三磷腈 - 富勒烯组件:光相的性质和光敏的单线氧

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摘要

Two new, three component multimodular cis-tris-BODIPY-cyclotriphosphazene-cis-tris-fullerene systems (7 and 11) were designed and synthesized. In these derivatives, the triad bearing unsubstituted three-cis-BODIPY units (7) exhibited insolubility due to the appendment of three fullerenes on one molecule whereas the attachment of long alkyl chains enabled the solubility of the triad, distryl-BODIPY-cyclotriphosphazene-fullerene (11). The photophysical properties of the distryl-BODIPY-cyclotriphosphazene-fullerene (11) were investigated by means of absorption and fluorescence spectroscopies. As a result of extended conjugation, the distryl-BODIPY-cyclo-triphosphazene-fullerene triad (11) revealed absorbance and emission in the near-IR range in solution. The results are compared to those of the parent molecule, distryl-BODIPY-cyclotriphosphazene dyad system (10). Photoexcitation of the distryl-BODIPY-cyclotriphosphazene-fullerene triad (11) in solution results in quenching of emission. The fluorescence lifetime of triad 11 in solution is on the order of picoseconds. The triad (11) was also used as heavy-atom-free triplet photosensitizer for photooxidation of 1,3-diphenylisobenzofuran via the photosensitizing of singlet oxygen (O-1(2)) in three different solvents, dichloromethane, chloroform and acetonitrile. This multi-fragment donor-acceptor system demonstrated singlet oxygen production in all selected solvents.
机译:设计并合成了两种新的三种组分多模CIS-TRIS-BOPIPY-环二硫铵系统(7和11)。在这些衍生物中,由于在一个分子上的三个富勒烯的附属中,三合会轴承未取代的三级三倍双倍单位(7)表现出不溶性,而长烷基链的连接使TRIAD,Distryl-Bodipy-环三膦腈 - 富勒烯的溶解性能够溶解(11)。通过吸收和荧光光谱研究了大甾rl-Bodipy-环三膦腈 - 富勒烯(11)的光物理性质。作为扩展缀合的结果,Distryl-Bodipy-Cyclo-三膦腈 - 富勒烯三合会(11)揭示了溶液中接近IR范围内的吸光度和发射。将结果与母体分子,Distryl-Bodipy-环三膦腈Dyad系统(10)进行比较。溶液中脱脂 - 双己二维磷腈 - 富勒烯三合会(11)的光筛导致发射淬火。溶液中三合会11的荧光寿命在PICOSECONDS的顺序上。三合会(11)还用作1,3-二苯基异洛呋光氧化通过三种不同溶剂,二氯甲烷,氯仿和乙腈的光氧化的重氧化1,3-二苯基异洛呋喃的重氧化氧化。这种多片段供体受体系统在所有选定的溶剂中显示出单线氧产生。

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