首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Tetrathiafulvalene-oligofluorene star-shaped systems: new semiconductor materials for fluorescent moisture indicators
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Tetrathiafulvalene-oligofluorene star-shaped systems: new semiconductor materials for fluorescent moisture indicators

机译:Tetrathiafulvalene-Oligofluorene星形系统:新型半导体材料用于荧光湿度指标

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A series of novel star-shaped oligofluorene-thiophene-tetrathiafulvalene systems have been synthesised, following different synthetic routes. Each system incorporates a tetrathiafulvalene redox-active centre and four oligofluorene arms, providing a two-dimensional character to the conjugated backbone. The oligomers differ in the number of fluorene units present in the arms (1 to 4) and the terminal groups at the end of each arm (H or trimethylsilyl). Half-unit oligofluorene systems possessing a 1,3-dithiole-2-one core (a known precursor to the tetrathiafulvalene centre) have been synthesised in order to compare the thermal, optical and electrochemical properties. These half-unit systems consist of a 1,3-dithiole-2-one core fused to a thiophene unit at the 3-and 4-positions. Two oligofluorene arms consisting of 1 to 4 monomer units per arm are positioned at the 4-and 6-positions of the thiophene unit, affording extended conjugation through the thiophene centre. The half-unit systems are found to be moderate emitters in solution, however, the star-shaped systems bearing the tetrathiafulvalene core exhibit inhibited fluorescence in both solution and the solid state. We have demonstrated that the emission of the tetrathiafulvalene systems can be enhanced through the oxidation of the redox-centre followed by a consecutive reaction of the strongly electrophilic tetrathiafulvalene dication with such nucleophiles as water and hydrazine. The result of these reactions leads to an increase in the photoluminescence of these systems, affording the opportunity for the tetrathiafulvalene materials to be used as photonic materials in moisture indicators.
机译:在不同的合成路线之后,已经合成了一系列新的星形寡核氟烯 - 噻吩 - 四硫甲戊烯系统。每种系统都包含四硫代芳烯氧化还原活性中心和四个寡核臂,为共轭骨架提供二维特征。低聚物在臂(1至4)中存在的芴单元的数量不同,并且在每个臂(H或三甲基甲硅烷基)的末端的末端基团中存在。已经合成了具有1,3-二孔-2-一核的半单位寡氟芴体系(已知前体于左右valene中心),以比较热,光学和电化学性能。这些半单元系统包括1,3-二孔-2-一根芯,其在3和4位融合到噻吩单元。由每个臂1至4个单体单元组成的两个寡氟丙烯臂位于噻吩单元的4和6位,通过噻吩中心提供延长的缀合。发现半单元系统在溶液中是适度的发射器,然而,在溶液和固态中,携带四渐次valene核的星形系统抑制荧光。我们已经证明,通过氧化还原中心的氧化,可以通过氧化还原中心的氧化随后与水和肼作为水和肼的氧化物的反应连续反应。这些反应的结果导致这些系统的光致发光的增加,这为肘体valene材料提供为水分指示剂中的光子材料的机会。

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