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carbon loaded hopper for perovskite in liberia

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adsorbed carbon nanomaterials for surface and interface

the current work reports the simultaneous enhancement in efficiency and stability of low-temperature solution-processed triple cation based ma0 57fa0 38rb0 05pbi3 ma methyl ammonium fa formamidinium rb rubidium perovskite solar cells pscs by means of adsorbed carbon nanomaterials at the

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spinel co3o4 nanomaterials for efficient and stable large area

carbon based perovskite solar cells pscs are fabricated through easily scalable screen printing techniques using abundant and cheap carbon to replace the hole transport material htm and the gold electrode further reduces costs and carbon acts as a moisture repellent that helps in maintaining the stabil

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high throughput fabrication of mesoporous carbon perovskite solar

the screen printed mesoporous carbon perovskite solar cell has great potential for commercialisation due to its scalable deposition processes and use of inexpensive materials however each layer requires long high temperature heating steps to achieve the necessary sintering and porosity which is very time

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