Disc-shaped liquid crystal column-based organic solar cell structure and preparation method thereof
A technology for solar cells and discotic liquid crystals, which is applied in the field of organic solar cell device preparation and can solve the problems of low charge mobility and the like
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Embodiment 1
[0088] An organic solar cell structure based on a discotic liquid crystal column, including a transparent conductive substrate, a hole transport layer, a discotic liquid crystal layer, an organic active layer, an electron transport layer, a metal electrode, and materials for the discotic liquid crystal layer from bottom to top It is a discotic liquid crystal material, and the discotic liquid crystal layer is a discotic liquid crystal column formed by several discotic liquid crystal columnar modules.
[0089] The structure of the discotic liquid crystal column is as figure 2 As shown, the discotic liquid crystal columnar module in the discotic liquid crystal layer and the photovoltaic material in the organic active layer form a 3D charge transport, which not only improves the charge mobility, but also suppresses the generation of triplet excitons and the bottom defects of the active layer The distribution of states increases the number of carriers and improves the short-circui...
Embodiment 2
[0092] According to a kind of organic solar cell structure based on discotic liquid crystal column described in embodiment 1, its difference is:
[0093] The organic active layer is binary fullerene system PBDB-T:PC 71 BM, binary fullerene system PBDB-T:PC 71 BM includes donor material high molecular polymer and acceptor material fullerene derivative, high molecular polymer is PBDB-T, fullerene derivative is PC 71 BM.
[0094] From the binary fullerene system PBDB-T:PC 71 The organic active layer composed of BM contains PBDB-T microcrystals with face-on crystallographic orientation and PC with isotropy. 71 The BM aggregates, the two interact with the discotic liquid crystal columns to form a 3-dimensional charge transport, which greatly improves the electron mobility and the number of carriers.
Embodiment 3
[0096] According to a kind of organic solar cell structure based on discotic liquid crystal column described in embodiment 1, its difference is:
[0097] The organic active layer is a binary non-fullerene system PBDB-T:IT-M, and the binary non-fullerene system PBDB-T:IT-M includes a donor material polymer and an acceptor material small molecule material, high The molecular polymer is PBDB-T, and the small molecule material is IT-M.
[0098] The active layer composed of the binary non-fullerene system PBDB-T:IT-M contains PBDB-T and IT-M crystallites dominated by face-on crystallographic orientations, both of which interact with discotic liquid crystal columns to form The 3-dimensional charge transport not only improves the charge mobility and the number of carriers, but also reduces the sensitivity of the device performance to the thickness of the active layer.
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