赵建章

个人信息Personal Information

教授

博士生导师

硕士生导师

性别:男

毕业院校:吉林大学

学位:博士

所在单位:化工学院

学科:有机化学. 应用化学. 物理化学

办公地点:西部校区E座208房间

联系方式:0411-84986236

电子邮箱:zhaojzh@dlut.edu.cn

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Energy-Funneling-Based Broadband Visible-Light-Absorbing Bodipy-C-60 Triads and Tetrads as Dual Functional Heavy-Atom-Free Organic Triplet Photosensitizers for Photocatalytic Organic Reactions

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论文类型:期刊论文

发表时间:2013-12-16

发表刊物:CHEMISTRY-A EUROPEAN JOURNAL

收录刊物:PubMed、SCIE、Scopus

卷号:19

期号:51

页面范围:17472-17482

ISSN号:0947-6539

关键字:fullerenes; photochemistry; photooxidation; sensitizers; UV; Vis spectroscopy

摘要:C-60-bodipy triads and tetrads based on the energy-funneling effect that show broadband absorption in the visible region have been prepared as novel triplet photosensitizers. The new photosensitizers contain two or three different light-harvesting antennae associated with different absorption wavelengths, resulting in a broad absorption band (450-650nm). The panchromatic excitation energy harvested by the bodipy moieties is funneled into a spin converter (C-60), thus ensuring intersystem crossing and population of the triplet state. Nanosecond time-resolved transient absorption and spin density analysis indicated that the T-1 state is localized on either C-60 or the antennae, depending on the T-1 energy levels of the two entities. The antenna-localized T-1 state shows a longer lifetime ((T)=132.9s) than the C-60-localized T-1 state (ca. 27.4s). We found that the C-60 triads and tetrads can be used as dual functional photocatalysts, that is, singlet oxygen (O-1(2)) and superoxide radical anion (O-2(.-)) photosensitizers. In the photooxidation of naphthol to juglone, the O-1(2) photosensitizing ability of the C-60 triad is a factor of 8.9 greater than the conventional triplet photosensitizers tetraphenylporphyrin and methylene blue. The C-60 dyads and triads were also used as photocatalysts for O-2(.-)-mediated aerobic oxidation of aromatic boronic acids to produce phenols. The reaction times were greatly reduced compared with when [Ru(bpy)(3)Cl-2] was used as photocatalyst. Our study of triplet photosensitizers has shown that broadband absorption in the visible spectral region and long-lived triplet excited states can be useful for the design of new heavy-atom-free organic triplet photosensitizers and for the application of these triplet photosensitizers in photo-organocatalysis.