Perovskite solar cell capable of light incoming from double surfaces and fabrication method thereof

A technology of solar cells and double-sided light entry, which is applied in the field of solar cells, can solve the problems of reducing the photoelectric conversion performance of the device, complicating the preparation process, weakening the conductive and photocatalytic capabilities of gold thin films, and achieving improved light capture and energy generation effects. The method is simple and easy, and the effect of improving the photoelectric conversion efficiency

Active Publication Date: 2015-12-09
CENT SOUTH UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

If the light transmittance of the opposite electrode is increased by reducing the thickness, the photoelectric conversion performance of the device will be reduced due to the weakening of the conductivity and photocatalysis of the gold film (Fang, X.; Ma, T.; Guan, G.; Akiyama , M.; Kida, T.; Abe, E.Effect of the thickness of the Pt film coated on a counter electrode on the performance of adye-sensitized solar cell. J. Electroanal. Chem. 2004, 570, 257); on the other hand, gold thin films are generally processed by high-energy and high-vacuum equipment such as magnetron sputtering or thermal spraying.

Method used

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Effect test

Embodiment 1

[0030] A perovskite solar cell capable of entering light from both sides of the present invention, comprising sequentially stacked FTO conductive glass, TiO 2 Photoanode layer, perovskite-type methylamine lead iodine absorption layer, spiro-OMeTAD hole transport layer, polyaniline film counter electrode and FTO conductive glass.

[0031] The preparation method of the perovskite solar cell capable of entering light from both sides in this embodiment comprises the following steps:

[0032] (1) Using the spin-coating method, the TiO 2 The slurry is spin-coated on the surface of the cleaned FTO conductive glass to form a uniform and flat film, and then placed in a muffle furnace and heated to 420 ° C for 40 minutes to form TiO 2 photoanodic layer.

[0033] (2) Add methylamine iodide and lead iodide at a mass ratio of 3:2 to dimethylformamide, and then stir for 15 hours in a constant temperature sand bath at 50°C to form a uniform and transparent methylamine lead iodide solution; ...

Embodiment 2

[0039] A perovskite solar cell capable of entering light from both sides of the present invention, comprising sequentially stacked FTO conductive glass, TiO 2 Photoanode layer, perovskite-type methylamine lead iodine absorption layer, spiro-OMeTAD hole transport layer, polyaniline film counter electrode and FTO conductive glass.

[0040] The preparation method of the perovskite solar cell capable of entering light from both sides in this embodiment comprises the following steps:

[0041] (1) Using the spin-coating method, the TiO 2 The slurry is spin-coated on the surface of the cleaned FTO conductive glass to form a uniform and flat film, and then placed in a muffle furnace and heated to 450°C for 50 minutes to form TiO 2 photoanodic layer.

[0042] (2) In dimethylformamide, add methylamine iodide and lead iodide with a mass ratio of 1.6:1 respectively, and then stir for 15 hours in a constant temperature sand bath at 60°C to form a uniform and transparent methylamine lead ...

Embodiment 3

[0048] A perovskite solar cell capable of entering light from both sides of the present invention, comprising sequentially stacked FTO conductive glass, TiO 2 Photoanode layer, perovskite-type methylamine lead iodine absorption layer, spiro-OMeTAD hole transport layer, polypyrrole film counter electrode and FTO conductive glass.

[0049] The preparation method of the perovskite solar cell capable of entering light from both sides in this embodiment comprises the following steps:

[0050] (1) Using the spin-coating method, the TiO 2 The slurry is spin-coated on the surface of the cleaned FTO conductive glass to form a uniform and flat film, and placed in a muffle furnace to heat up to 450 ° C for 60 minutes to form TiO 2 photoanodic layer.

[0051] (2) In dimethylformamide, add methylamine iodine and lead iodide with a mass ratio of 2:1 respectively, and stir for 18 hours in a constant temperature sand bath at 70°C to form a uniform and transparent methylamine lead iodide sol...

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PUM

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Abstract

The invention discloses a perovskite solar cell capable of light incoming from double surfaces. The perovskite solar cell comprises a transparent conductive substrate A, a photo anode layer, a perovskite absorption layer, a hole transmission layer, a counter electrode layer and a transparent conductive substrate B, wherein the counter electrode layer is a transparent polymer counter electrode layer. A fabrication method of the perovskite solar cell comprises the following steps of: (1) fabricating the photo anode layer on the transparent conductive substrate A; (2) fabricating the perovskite absorption layer on the photo anode layer; (3) fabricating the hole transmission layer on the perovsite absorption layer; and (4) fabricating the transparent polymer counter electrode layer on the transparent conductive substrate B through electrochemical polymerization by a cyclic voltammetry method, covering the fabricated transparent polymer counter electrode layer on the hole transmission layer, and drying to obtain the perovskite solar cell capable of light incoming from double surfaces. In the perovskite solar cell capable of light incoming from double surfaces, disclosed by the invention, polyaniline, polypyrrole or polythiophene is taken as a transparent counter electrode, and the transparent counter electrode is lower in cost than a nanocrystalline thin-film counter electrode or platinum counter electrode.

Description

technical field [0001] The invention belongs to the field of solar cells, in particular to a perovskite solar cell capable of entering light from both sides and a preparation method thereof. Background technique [0002] In recent years, as an abundant and sustainable energy source, solar energy has attracted more and more researchers to develop various photovoltaic devices, making it the most strategic research field in this century. Since 2009, nanocrystalline thin-film solar cells have become a research hotspot in the field of photovoltaic devices due to their advantages of simple process, low cost, simple process and environmental friendliness. Among them, inorganic / organic hybrid perovskite solar cells are another new type of nanocrystalline thin-film solar cells with unique photoelectric properties in addition to dye-sensitized, quantum dot-sensitized solar cells, and organic solar cells. Cost and other aspects have shown great advantages. Since 2009, perovskite orga...

Claims

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Application Information

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IPC IPC(8): H01L51/44H01L51/48
CPCH10K30/82Y02E10/549Y02P70/50
Inventor 杨英高菁郭学益崔嘉瑞张政严靖园
Owner CENT SOUTH UNIV
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