Polymeric charge transfer layer and organic electronic device containing same
A charge transfer layer and polymer technology, applied in circuits, electrical components, electrical solid devices, etc., can solve the problems of reducing hole mobility and poor device life
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[0091] I. Reagents and Test Methods
[0092] All solvents and reagents were obtained from commercial vendors such as Sigma-Aldrich, TCI, and Alfa Aesar and were prepared in the highest available purity and / or when necessary. When used in the form of recrystallization before use. Anhydrous solvents were obtained from an internal purification / distribution system (hexane, toluene, and tetrahydrofuran) or purchased from Sigma-Aldrich. All experiments involving "water-sensitive compounds" were performed in "oven-dried" glassware under a nitrogen atmosphere or in a glove box.
[0093] Unless otherwise indicated, otherwise 1 H-NMR-spectra (500 MHz or 400 MHz) were acquired at 30° C. on a Varian VNMRS-500 or VNMRS-400 spectrometer. Chemical shifts referenced in CDCl 3 Tetramethylsilane (TMS, δ=0.00) in .
[0094] Routine liquid chromatography / mass spectrometry (LC / MS) studies were performed as follows. One microliter etc. Aliquot samples were taken as "1 mg / ml solution in tetra...
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Application Information
- IPC
- H01L51/54
- CPC
- H10K85/10; H10K85/111; H10K85/141; H10K85/151; H10K50/15; H10K85/113; H10K85/615; H10K85/633
- Inventors
- L·斯宾塞; 刘淳



