A-D-A-type water/alcohol-soluble conjugated micromolecules and application thereof in organic electronic device
A small molecule, A-D-A technology, applied in the direction of electrical solid-state devices, semiconductor/solid-state device manufacturing, electrical components, etc., can solve the problems of large-scale development and application restrictions, high pollution, high cost, etc., to improve fill factor and energy conversion efficiency, Well-defined, batch-reproducible results
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Embodiment 1
[0036] The synthetic route of representative A-D-A type water / alcohol type conjugated small molecule PFP and NFN is as follows:
[0037]
[0038] (1) The precursor FEN was synthesized according to the method disclosed in the literature [J.Am.Chem.Soc.2013,135,15326-15329].
[0039] (2) The precursor Br-PDI was synthesized according to the method disclosed in the literature [Dyes and Pigments 2016, 134, 164-170].
[0040] (3) Synthesis of precursor Br-NDI:
[0041] Dissolve 5.1636g of brominating reagent in 30mL of concentrated sulfuric acid, slowly add it into a 150mL three-necked flask containing 5.3636g of naphthalene dianhydride and 40mL, stir and react at 110°C for 6 hours, cool to room temperature, pour into crushed ice, After filtering, the filter residue was washed several times with water and then with methanol, and dried in a vacuum oven to obtain a brominated mixture of naphthalene dianhydride. The mixture was poured into a 500 mL three-necked flask, 250 mL of g...
Embodiment 2
[0048] The representative A-D-A type water / alcohol-soluble conjugated small molecules NFN and PFP synthesized in Example 1 are used as cathode interface modification materials in organic solar cells. The structure of organic solar cells is as figure 1 As shown, the sequence is: substrate 1 / anode 2 / anode interface layer 3 / light absorbing layer 4 / cathode interface layer 5 / cathode 6. The A-D-A type water / alcohol-soluble conjugated small molecules described in the present invention are used as the cathode interface layer 5 in organic solar cells.
[0049] Pre-cut the ITO conductive glass with a square resistance of 20 ohms / cm2 into 15mm×15mm square pieces. Use acetone, special detergent for micron-sized semiconductors, deionized water, and isopropanol to clean ultrasonically in sequence, blow nitrogen whistle, and place in a constant temperature oven for later use. A 40 nm thick layer of 3,4-ethylenedioxythiophene / polystyrene sulfonate anode interface material was spin-coated on...
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