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Electron transport type conjugated small molecular semiconductor material

An electron transport, small molecule technology, applied in semiconductor devices, semiconductor/solid-state device manufacturing, thermoelectric device junction lead wire materials, etc. Excellent solubility, high carrier transport, and the effect of maintaining film-forming properties

Active Publication Date: 2020-02-14
芜湖溪流光电科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Organic small molecule semiconductor materials have the advantages of clear structure, easy purification, and no batch difference, which have always been the focus of research. However, a common disadvantage of small molecules is that their solution film-forming properties are poor, and many high-performance small molecules The materials are all realized by vacuum evaporation and blended phase separation strategy, which limits its commercial application to a certain extent.
Using the advantages of donor / acceptor (D / A) conjugated polymers, people designed and prepared D / A-type conjugated small molecule materials, which have the advantages of both general small molecules and conjugated polymers, including fixed structures. , no batch difference and good film-forming performance, D / A type small molecule semiconductor materials have been brilliant in the field of organic photovoltaics in recent years, for example, non-fullerene solar photovoltaic devices with small molecule semiconductor materials as acceptors The conversion efficiency exceeds 15%, and the application potential is huge. The typical structure of this type of high-performance D / A small molecule semiconductor material is that the peripheral unit has a cyanated acceptor (A), and the intermediate unit is a fused ring donor (D ) structure, the fused ring skeleton structure of this non-fullerene acceptor has the disadvantages of cumbersome synthetic route and complicated post-processing process, so it is important to develop a relatively simple synthetic conjugated small molecule acceptor material. the meaning of

Method used

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  • Electron transport type conjugated small molecular semiconductor material
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  • Electron transport type conjugated small molecular semiconductor material

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Embodiment Construction

[0019] The embodiments of the conjugated small molecule semiconductor materials of the present invention are described in detail in conjunction with the accompanying drawings: the embodiments provide detailed experimental schemes and specific operation procedures, but the scope of protection of the present invention is not limited to the following embodiments.

[0020] like figure 1 As shown, the present invention uses cyanated indolinone as a monobrominated monomer and a di-stannated monomer of thiophene pyrrolopyrrole diketone, prepared by Stille reaction, and then extracted, collected organic layer, dried, etc. Processing procedures, and column purification to obtain the target conjugated small molecule semiconductor material.

[0021] The A1-D-A2-D-A1 type conjugated small molecule semiconductor material based on cyanation of azaindolone and diketopyrrolopyrrole as double acceptor and thiophene bridge as donor of the present invention is as follows: structure:

[0022] ...

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Abstract

The invention discloses an electron transport type conjugated small molecular semiconductor material. A thiophene bridge is a receptor (A1)-donor (D)-receptor (A2)-donor (D)-receptor (A1) type conjugated small molecular semiconductor material with a donor structure. A strong electron-deficient double-receptor structure is introduced and is bridged by thiophene, good planarity of molecules is maintained, and the novel A1-D-A2-D-A1 type conjugated small molecular material has an electron transport characteristic; and a solubilizing assistant alkyl chain is introduced to receptors, so that the conjugated small molecular material has solution processability. The conjugated small molecular semiconductor material is a semiconductor material capable of being processed by a solution, and can be applied to the fields of non-fullerene photovoltaic receptor materials, n-type transmission organic thin film transistors, thermoelectric materials and the like.

Description

technical field [0001] The invention relates to the technical field of organic semiconductors, in particular to an electron transport type conjugated small molecule semiconductor material. Background technique [0002] The application prospects of organic semiconductor materials in the fields of organic light-emitting diodes, organic thin-film transistors, and organic photovoltaics have attracted widespread attention. Compared with traditional inorganic semiconductor materials, organic semiconductor materials have light weight, low cost, adjustable structure, and low-temperature solution processing. And flexibility and other characteristics make organic semiconductor materials have broad application prospects in the fields of energy, display, sensing, and combined circuits. Organic small molecule semiconductor materials have the advantages of clear structure, easy purification, and no batch difference, which have always been the focus of research. However, a common disadvant...

Claims

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Application Information

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IPC IPC(8): C07D519/00H01L51/05H01L51/42H01L35/24H01L37/02
CPCC07D519/00H10N10/856H10N15/15H10K10/46H10K30/00Y02E10/549
Inventor 张国兵周唯陈瑞坤
Owner 芜湖溪流光电科技有限公司
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