Rational design and recent advancements of addictives engineering in ASnI3 tin-based perovskite solar cells: insights from experiments and computational
文献情報
Novrita Idayanti
Perovskite solar cells (PSCs) have attracted much attention among third-generation photovoltaic technologies. Owing to their unique optical and electrical properties, PSCs can achieve high efficiency compared to traditional silicon solar cells. However, this high efficiency is obtained using a lead-based perovskite material as a photoactive layer, which has the disadvantage of environmental toxicity. A tin-based perovskite is the most promising alternative to the lead-based perovskite due to its suitable bandgap, high carrier mobility, and low toxicity. After a few years of intensive research, tin-based PSCs have achieved over 14% of PCE, mainly due to the additive engineering of the tin perovskite layer. In this review, the challenges and additive roles of tin-based PSCs, both experimentally and computationally, are presented in detail. Ultimately, the forthcoming challenges and research prospects are proposed to enhance the efficiency and stability of tin-based PSCs.
関連文献
IF 6.843
Transition metal chemistry in synthetically viable alkaline earth complexes M(Cp)3− (M = Ca, Sr, Ba)IF 6.222
Tessellation strategy for the interfacial synthesis of an anthracene-based 2D polymer via [4+4]-photocycloadditionIF 6.222
Stabilizing synthetic DNA for long-term data storage with earth alkaline saltsIF 6.222
Non-aqueous neptunium and plutonium redox behaviour in THF – access to a rare Np(iii) synthetic precursorIF 6.222
A robust multifunctional ligand-controlled palladium-catalyzed carbonylation reaction in waterIF 6.222
Cu2ZnSnS4 nanocrystals for microwave thermal and microwave dynamic combination tumor therapyIF 6.222
Near infrared light activation of an injectable whole-cell cancer vaccine for cancer immunoprophylaxis and immunotherapyIF 6.843
In situ growth of all-inorganic perovskite nanocrystals on black phosphorus nanosheetsIF 6.222
Interfacial engineering of a polymer–MOF composite by in situ vitrificationIF 6.222