Compound taking anthrone skeleton as core, and application thereof

A technology of compounds and skeletons, applied in organic chemistry, chemical instruments and methods, electrical components, etc., can solve problems such as performance differences, and achieve the effects of improving the use of processing windows, improving current efficiency and life, and strong rigidity

Pending Publication Date: 2021-06-22
JIANGSU SUNERA TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition, for the collocation of OLED devices with different structures, the photoelectric functional materials used have strong selectivity, and the performance of the same material in devices with different structures may be completely different.

Method used

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  • Compound taking anthrone skeleton as core, and application thereof
  • Compound taking anthrone skeleton as core, and application thereof
  • Compound taking anthrone skeleton as core, and application thereof

Examples

Experimental program
Comparison scheme
Effect test

preparation example Construction

[0068] Preparation of reactant B-1

[0069]

[0070] (1) In a 250mL three-neck flask, under the protection of nitrogen, add 0.01mol raw material X-1, 0.012mol raw material X-2, 150mL toluene and stir to mix, then add 0.03mol sodium tert-butoxide, 5×10 -5 molPd 2 (dba) 3 , 5×10 -5 mol of tri-tert-butylphosphine, heated to 105°C, refluxed for 24 hours, and the reaction was complete; naturally cooled to room temperature, filtered, and the filtrate was subjected to vacuum rotary evaporation (-0.09MPa, 85°C), and passed through a neutral silica gel column to obtain intermediate Body Y-1;

[0071] (2) In a 250mL three-neck flask, under a nitrogen atmosphere, add 0.02mol of intermediate Y-1 and 40mL of tetrahydrofuran to dissolve completely, cool to -78°C, and then add 15mL of 1.6mol / L n-butyl to the reaction system Lithium tetrahydrofuran solution, react at -78°C for 3h, add 0.024mol triisopropyl borate, react for 2h, then raise the reaction system to 0°C, add 50mL of 2mol / L ...

Embodiment 1

[0080] The preparation of embodiment 1 compound 2

[0081]

[0082] In a 250mL three-necked flask, under a nitrogen atmosphere, add 0.01mol of reactant A-1, 0.015mol of reactant B-1, dissolve in a mixed solvent (90mL of toluene, 45mL of ethanol), and then add 0.03mol of Na 2 CO 3 aqueous solution (2M), stirred under nitrogen for 1 hour, then added 0.0001mol Pd(PPh 3 ) 4 , heating to reflux for 15 hours, sampling point plate, the reaction is complete. Naturally cooled, filtered, the filtrate was rotary evaporated, and passed through a silica gel column to obtain compound 2; the yield was 76.06%, and the HPLC purity was 98.72%.

[0083] Elemental analysis structure (molecular formula C 61 h 37 N 3 o 2 ): Theoretical value: C, 86.81; H, 4.42; N, 4.98; Test value: C, 86.82; H, 4.40; N, 4.99. LC-MS: The theoretical value is 843.29, and the measured value is 843.22.

[0084] The following compounds were synthesized by repeating the preparation procedure of Example 1, exc...

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Abstract

The invention discloses a compound taking an anthrone skeleton as a core, and application thereof, and belongs to the technical field of semiconductors. The structure of the compound provided by the invention is represented by general formula (1) shown in the specification. The compound provided by the invention has relatively high triplet state energy level, relatively high glass transition temperature and relatively high molecular thermal stability; and when the material is used as a light-emitting layer or a hole blocking layer or an electron transport layer material of an OLED light-emitting device, the light-emitting efficiency of the device can be effectively improved, and the service life of the device can be effectively prolonged.

Description

technical field [0001] The invention relates to a compound with anthrone skeleton as the core and application thereof, belonging to the technical field of semiconductors. Background technique [0002] Organic Light Emission Diodes (OLED) device technology can be used not only to manufacture new display products, but also to make new lighting products. It is expected to replace the existing liquid crystal display and fluorescent lighting, and has a wide application prospect. The OLED light-emitting device is like a sandwich structure, including electrode material film layers and organic functional materials sandwiched between different electrode film layers. Various functional materials are superimposed on each other according to the application to form an OLED light-emitting device. OLED light-emitting devices are current devices. When a voltage is applied to the electrodes at both ends, and the positive and negative charges in the organic layer functional material film are ...

Claims

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Application Information

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IPC IPC(8): C07D405/14C07D405/10C07D405/04C07D487/04C07D487/06C07D471/04C07D413/14C07D495/04C09K11/06H01L51/50H01L51/54
CPCC07D405/14C07D405/10C07D405/04C07D487/04C07D487/06C07D471/04C07D413/14C07D495/04C09K11/06C09K2211/1007C09K2211/1011C09K2211/1044C09K2211/1088C09K2211/1029C09K2211/1074C09K2211/1059C09K2211/1051C09K2211/1092C09K2211/1033H10K85/615H10K85/6576H10K85/6574H10K85/657H10K85/6572H10K50/00H10K50/11
Inventor 庞羽佳张小庆王芳张兆超
Owner JIANGSU SUNERA TECH CO LTD
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