Liquid film quick-coating air knife quick-drying creep suppression in-situ crystallization continuous preparation method for textured uniform perovskite film

A perovskite, liquid film technology, applied in the field of silicon-perovskite tandem solar cell preparation, can solve the problems of reducing production efficiency, increasing processes and time, reducing photoelectric conversion efficiency, etc., to improve the actual production speed, reduce Waste of time, effect of increasing production speed

Active Publication Date: 2019-03-26
XI AN JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, compared with silicon cells with pyramid textured light-trapping structures, the photoelectric conversion efficiency of silicon solar cells after polishing decreases to about 50% of the original value
Therefore, there are following deficiencies in this technical solution: first, the photoelectric conversion efficiency of silicon solar cells is greatly reduced by polishing and smoothing the silicon pyramid textured surface; Production cost, increased process and time, reduced production efficiency

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] A method for preparing a uniform perovskite film on a suede surface, comprising:

[0029] (1) Preparation of perovskite precursor sol: using DMF as solvent, PbI 2 and CH 3 NH 3 I is the solute, and the perovskite sol is prepared, and the CH in the perovskite sol 3 NH 3 PB 3 The mass percentage concentration is 40%.

[0030] (2) Uniform coating of the perovskite liquid film: the perovskite precursor sol is coated on the silicon solar cell with a pyramidal suede morphology by using a soft brush to form a layer of light yellow thickness A uniform profiled perovskite liquid film of 2 μm; the thickness of the coated profiled perovskite liquid film is less than 60% of the average characteristic height of the pyramid;

[0031] (3) Rapid drying treatment of the perovskite liquid film: within 3s, the five airflow channels of the multi-flow air knife perovskite liquid film rapid drying equipment are used to complete the drying process of the perovskite liquid film, thereby ...

Embodiment 2

[0034] A method for preparing a uniform perovskite film on a suede surface, comprising:

[0035] (1) Preparation of perovskite precursor sol: using DMSO as solvent, PbI 2 and CH 3 NH 3 I is the solute, and the perovskite sol is prepared, and the CH in the perovskite sol 3 NH 3 PB 3 The mass percentage concentration is 35%.

[0036] (2) Uniform coating of the perovskite liquid film: the perovskite precursor sol is coated on the silicon solar cell with a pyramidal suede morphology by using a soft brush to form a layer of light yellow thickness A uniform profiled perovskite liquid film of 1 μm; the thickness of the coated profiled perovskite liquid film is less than 60% of the average characteristic height of the pyramid;

[0037] (3) Rapid drying treatment of perovskite liquid film: use 20 airflow channels of the multi-flow air knife perovskite liquid film rapid drying equipment to complete the drying process of perovskite liquid film within 3s, so as to obtain a 200nm-thi...

Embodiment 3

[0040] A method for preparing a uniform perovskite film on a suede surface, comprising:

[0041](1) Preparation of perovskite precursor sol: using DMF as solvent, PbI 2 and CH 3 NH 3 I is the solute, and the perovskite sol is prepared, and the CH in the perovskite sol 3 NH 3 PB 3 The mass percentage concentration is 40%.

[0042] (2) Uniform coating of the perovskite liquid film: the perovskite precursor sol is coated on the silicon solar cell with a pyramidal suede morphology by using a soft brush to form a layer of light yellow thickness A uniform profiled perovskite liquid film of 2 μm; the thickness of the coated profiled perovskite liquid film is less than 60% of the average characteristic height of the pyramid;

[0043] (3) Rapid drying treatment of perovskite liquid film: use 15 airflow channels of multi-flow air knife perovskite liquid film rapid drying equipment to complete the drying treatment of perovskite liquid film within 3s, so as to obtain a thickness of ...

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Abstract

The invention discloses a liquid film quick-coating air knife quick-drying creep suppression in-situ crystallization continuous preparation method for a textured uniform perovskite film, comprising afirst step of uniform coating of a perovskite liquid film; a second step of rapid drying of the profiling perovskite liquid film: drying the profiling perovskite liquid film by using 5 to 20 airflow channels of a multi-flow air knife; a third step of hot gas annealing treatment of the perovskite liquid film: performing a heat treatment on the perovskite film for 10 to 30 minutes by using a gas having a temperature of 80 to 160 degrees centigrade and by using 30 to 50 airflow channels of the multi-flow air knife to remove a residual solvent and growing the grains, and obtaining a full-covered pyramid-like textured uniform perovskite film. The method realizes the preparation of the full-covered uniform profiling perovskite film on the pyramid textured substrate having micrometer scale protrusions by a solution deposition method under the condition that the silicon pyramid textured is not polished and smoothed, and maintains the high efficiency of a silicon solar cell.

Description

technical field [0001] The invention belongs to the technical field of silicon-perovskite laminated solar cell preparation, and in particular relates to a method for preparing a perovskite film. Background technique [0002] The structure of perovskite materials is generally ABX 3 (A is an organic cation, such as CH 3 NH 3 ,CH(NH 2 ) 2 etc.; B is a metal cation, such as Pb, Sn, etc.; X is F, Cl, Br, I). As of November 2018, the highest efficiency of certified single-junction perovskite solar cells has reached 23.4%. Higher photoelectric conversion efficiency is always one of the core goals in the development of photovoltaic cell technology. However, the photoelectric conversion efficiency of single-junction perovskite solar cells cannot exceed the theoretical efficiency of the Shockley-Queisser limit. Multi-junction solar cells, that is, stacked cells composed of solar sub-cells with different band gaps, are a mature and effective way to break through the theoretical ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01L51/42H01L51/48
CPCH10K71/12H10K71/40H10K30/10Y02E10/549
Inventor 杨冠军李小磊刘梅军李臻高黎黎李长久李成新
Owner XI AN JIAOTONG UNIV
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