A high-efficiency and stable perovskite battery containing impermeable carbon film and its preparation method
A perovskite battery and carbon thin film technology, which is applied in circuits, electrical components, photovoltaic power generation, etc., can solve problems such as entry, poor repeatability, and affecting battery stability, and achieve a good combination effect
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Embodiment 1
[0043] 1. On the ITO substrate, dense TiO is sequentially prepared 2 Electron transport layer, FAPbI 3 perovskite thin film.
[0044] 2. On the perovskite film, a uniform and dense graphite film with a thickness of 100 nm is prepared on the perovskite film by magnetron sputtering. The carbon film color is a very light gray.
[0045] 3. On the dense graphite film, scrape a layer of commercial carbon paste with a thickness of about 15 μm by the scraper method.
[0046] 4. Place the prepared battery on a hot plate and heat for 15 minutes to evaporate the solvent. Test and record the surface morphology of the carbon film as figure 2 (a), figure 2 (b), the cross-sectional morphology of the battery is as follows figure 2 (c), figure 2 As shown in (d), it can be seen that there is a uniform and dense carbon film between the perovskite and the carbon electrode, and the morphology of the perovskite is kept intact without corrosion.
Embodiment 2
[0048] 1. On the FTO substrate, dense TiO is sequentially prepared 2 Electron transport layer, FAPbI 3 Perovskite thin films and hole transport layers.
[0049] 2. On the hole transport layer, a uniform and dense nano-carbon film with a thickness of 5 nm is prepared on the perovskite film by magnetron sputtering.
[0050] 3. On the dense nano-carbon film, use a doctor blade method to scrape a layer of commercial carbon paste with a thickness of about 15 μm.
[0051] 4. Place the prepared battery on a hot plate and heat it for 15 minutes to volatilize the solvent, and obtain a highly efficient and stable perovskite battery containing an impermeable carbon film.
Embodiment 3
[0053] 1. On the ITO substrate, dense TiO is sequentially prepared 2 Electron transport layer, FAPbI 3 perovskite thin film.
[0054] 2. On the perovskite film, a uniform and dense nano-carbon film with a thickness of 5 μm and a uniform and dense graphene film with a thickness of 5 μm were prepared on the perovskite film by magnetron sputtering.
[0055] 3. On the dense nano-carbon film, use a doctor blade method to scrape a layer of commercial carbon paste with a thickness of about 15 μm.
[0056] 4. Place the prepared battery on a hot plate and heat it for 15 minutes to volatilize the solvent, and obtain a highly efficient and stable perovskite battery containing an impermeable carbon film.
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