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首页> 外文期刊>Dyes and Pigments >Novel group 14 element-bridged bithiophene dimers appended with terminal electron-withdrawing groups: Red-to-near infrared fluorescence and efficient photosensitized singlet oxygen generation
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Novel group 14 element-bridged bithiophene dimers appended with terminal electron-withdrawing groups: Red-to-near infrared fluorescence and efficient photosensitized singlet oxygen generation

机译:新型组14元素桥接二硫代戊二聚环烯二聚体附加终端电子 - 抽出组:红红外荧光和有效的光敏单次氧气产生

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A series of group 14 element bridged bithiophene dimers bearing dicyanovinyl (DC) or thiobarbiturylmethylene (TB) electron-withdrawing groups at the molecular termini (series E-1a and series E-1b; E = C, Si, and Ge) were developed as red absorbing singlet oxygen (1O2) photosensitizing dyes. These dyes exhibited broad and strong absorption in the red-to-deep red regions and efficient red-to-NIR fluorescence (photoluminescence quantum yield phi PL; 0.32-0.45 in dichloromethane). The terminal TB groups led to more red-shifted electronic absorption and fluorescence emission than the DC groups, owing to more intense intramolecular charge transfer. The 1O2 generation photosensitization abilities of series E-1a and series E-1b were evaluated by the 1,3-diphenylisobenzofuran method, and large 1O2 generation quantum yields (phi Delta) were obtained upon irradiation of 630 nm light, ranging from 0.35 to 0.68 in dichloromethane. Therefore, these dyes show fluorescence properties as well as 1O2 generation photosensitization ability. Introduction of bromo groups at the 3,3 '-positions in Si-1a and Si-1b afforded the new potential photosensitizers Si-2a and Si-2b that accompanied blue-shifted electronic absorption as well as blue-shifted fluorescence emission with the low phi PL. Unfortunately, as Si-2a exhibited quite low absorptivity in the red region, 1O2 generation photosensitization with 630 nm light was not evaluated for Si-2a. On the other hand, Si-2b showed significantly efficient 1O2 generation photosensitization upon irradiation of 630 nm light (phi Delta; 0.88). Considering the result of theoretical calculations showing that the bromo groups effectively contribute to the frontier orbitals, these bromo substituents should facilitate the intersystem crossing from the excited singlet state to the triplet excited state through the strong spin-orbit coupling.
机译:开发了一系列14族元素桥联联联双噻吩二聚体,其分子末端带有双氰基乙烯基(DC)或硫代巴比妥亚甲基(TB)吸电子基团(系列E-1a和系列E-1b;E=C、Si和Ge),作为吸红单线态氧(1O2)光敏染料。这些染料在红色到深红色区域表现出广泛而强烈的吸收,并表现出有效的红色到近红外荧光(光致发光量子产率phi PL;二氯甲烷中为0.32-0.45)。由于分子内电荷转移更强烈,末端TB基团比DC基团导致更多红移电子吸收和荧光发射。用1,3-二苯基异苯并呋喃法评估了系列E-1a和系列E-1b的1O2代光敏能力,并在630nm光照射下获得了较大的1O2代量子产率(φδ),在二氯甲烷中范围为0.35至0.68。因此,这些染料不仅具有荧光特性,而且具有产生1O2的光敏能力。在Si-1a和Si-1b中的3,3'-位置引入溴基团提供了新的潜在光敏剂Si-2a和Si-2b,它们伴随着蓝移电子吸收以及低phi PL的蓝移荧光发射。不幸的是,由于Si-2a在红色区域表现出相当低的吸收率,未对Si-2a进行630 nm光照下的第二代光敏化评估。另一方面,在630nm光照射下,Si-2b表现出显著有效的1O2代光敏作用(φδ;0.88)。考虑到理论计算结果表明溴基团有效地贡献了前线轨道,这些溴取代基应该通过强自旋轨道耦合促进系统间从激发单线态到三线态的交叉。

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