Two types of benzotrithiophenederivativesbearingacceptorunits have been synthesized, and some physical properties have been estimated. Organic thin-film solarcellsusing two types of benzotrithiophenederivatives as non-fullerene acceptors showed the power conversion efficiency. In addition, these materials were found to be effective for the ternary blend organicsolarcells as the additive.
MACROPHAGE IDENTIFICATION AGENT, AND IDENTIFICATION METHOD, SORTING METHOD, EVALUATION METHOD, SCREENING METHOD AND KIT USING THE MACROPHAGE IDENTIFIER AGENT
申请人:CANON KABUSHIKI KAISHA
公开号:US20160018389A1
公开(公告)日:2016-01-21
An object of the present invention is to provide an identification method for a macrophage subtype using an organic compound. Another object of the present invention is to provide a macrophage identification agent containing an organic compound in which a spectral characteristic obtained when the organic compound is added is different depending on a macrophage subtype. Still another object of the present invention is to provide an evaluation method for a macrophage subtype using a macrophage identification agent, an analysis method for correlation between a macrophage subtype and a test substance, a screening method for correlation between a macrophage subtype and a test substance, and a kit. An identification method for a macrophage subtype utilizing that a spectral characteristic obtained with an organic compound added is different depending on a macrophage subtype is provided.
Narrow bandgap non-fullerene acceptor based on a thiophene-fused benzothiadiazole unit with a high short-circuit current density of over 20 mA cm<sup>−2</sup>
Organic solar cells based on a new non-fullerene acceptor containing a thiophene-fused benzothiadiazole unit and a polymer donor PTB7-Th showed a PCE of 9.07% with a high Jsc of over 20.33 mA cm−2.
(SF)-functioned 3D nonfullerene electron acceptors—SF-OR and SF-ORCN—that use rhodanine and 2-(1,1-dicyanomethylene)rhodanine as the terminal units, respectively, were designed and synthesized. These new acceptor materials show reversible electrochemical reduction and a high optical absorption coefficient, which are critical in device operation. Electronic and structural characterizations reveal that the
Highly soluble small-molecule organic semiconductor with trihexylsilyloxy side chain for high-performance organic field-effect transistors with mobility of up to 3.10 cm 2 V −1 s −1
作者:Bogyu Lim、Huabin Sun、Yong-Young Noh
DOI:10.1016/j.dyepig.2017.03.025
日期:2017.7
film was highly crystalline. The charge-carrier transport properties of the LGC-D127 was investigated through the fabrication and characterization of field-effecttransistor via solution process. LGC-D127 showed significantly highfield-effect hole mobility of 3.16 cm2 V−1 s−1 after thermal annealing due to the large crystalline nanostructure and the small grain boundaries. In particular, LGC-D127 had
合成了具有三己基甲硅烷基氧基庞大的侧链的供体-受体型小分子有机半导体,其编码为LGC-D127,并对其电子,电化学和电学性质进行了研究,以用作可溶液处理的有机场效应晶体管的有源层。 。LGC-D127由亚苯基-二噻吩部分组成,该部分具有庞大的三己基甲硅烷基氧基侧链作为供电子核,二酮吡咯并吡咯啉作为电子接受连接体,辛基罗丹宁为电子接受端基。尽管笨重的三己基甲硅烷基氧基侧链,LGC-D127膜还是高度结晶的。所述LGC-D127的电荷载流子传输性能是通过场效应晶体管的制造和表征研究通过解决过程。由于大的晶体纳米结构和小的晶界,LGC-D127在热退火后显示出3.16 cm 2 V -1 s -1的高场效应空穴迁移率。尤其是,LGC-D127由于具有庞大的三己基甲硅烷基氧基侧链,因此在环境友好的溶剂(如2-甲基四氢呋喃)中具有良好的溶解性,并且LGC维持了高空穴迁移率(最大3.06 cm 2 V