Novel Materials For Organic Electroluminescent Devices
申请人:Stoessel Philipp
公开号:US20080171225A1
公开(公告)日:2008-07-17
The present invention relates to novel materials which can be used in organic electronic devices, in particular electroluminescent devices, and are derivatives of fused aromatic systems.
本发明涉及一种可以用于有机电子器件,特别是电致发光器件的新型材料,它们是融合芳香系统的衍生物。
ORGANIC ELECTROLUMINESCENT DEVICE AND BORIC ACID AND BORINIC ACID DERIVATIVES USED THEREIN
申请人:Merck Patent GmbH
公开号:US20150322091A1
公开(公告)日:2015-11-12
The present invention relates to the use of aromatic boronic acid or borinic acid derivatives in organic electronic devices, in particular electroluminescent devices.
本发明涉及芳香硼酸或硼酸衍生物在有机电子器件中的应用,特别是电致发光器件。
Intense solid-state blue emission with a small Stokes’ shift: π-stacking protection of the diphenylanthracene skeleton
作者:Azusa Iida、Shigehiro Yamaguchi
DOI:10.1039/b901794a
日期:——
Intense blue emissions with a small Stokesâ shift both in solution and in the solid state were attained by introducing (pentafluorophenyl)dimethylsilyl groups to a 9,10-diphenylanthracene skeleton as the Ï-stacking tethers.
Photochemical vs. electrochemical electron-transfer reactions. one-electron reduction of aryl halides by photoexcited anion radicals
作者:Palle Nelleborg、Henning Lund、Jens Eriksen
DOI:10.1016/s0040-4039(00)98335-7
日期:1985.1
Electrochemicalreduction of aryl halides generally leads to expulsion of halide ion. The product aryl radical is unavoidably further reduced. In contrast, reduction of aryl halides by photoexcited anionradicals may be stopped at the aryl radical stage owing to the bimolecular nature of electron-transfer reactions. We have tested this hypothesis by photoinducing electron-transfer from anthraquinone
Organic electroluminescent device and boric acid and borinic acid derivatives used therein
申请人:Stoessel Philipp
公开号:US08674141B2
公开(公告)日:2014-03-18
The present invention relates to the use of aromatic boronic acid or borinic acid derivatives in organic electronic devices, in particular electroluminescent devices.