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[HTML][HTML] Global challenges and prospects of photovoltaic materials disposal and recycling: a comprehensive review
The considerable amount of waste PV modules expected to emerge from recent widespread
of solar photovoltaic (PV) systems is a cause of concern, especially in sustainability terms …
of solar photovoltaic (PV) systems is a cause of concern, especially in sustainability terms …
Recycled value-added circular energy materials for new battery application: Recycling strategies, challenges, and sustainability-a comprehensive review
Lithium-ion battery is the key technology to power electronic devices, digital tools, and
electric vehicles. As battery-operated technologies are expanding enormously fast, battery …
electric vehicles. As battery-operated technologies are expanding enormously fast, battery …
Boosting efficiency above 28% using effective charge transport layer with Sr 3 SbI 3 based novel inorganic perovskite
Strontium antimony iodide (Sr3SbI3) is one of the emerging absorbers materials owing to its
intriguing structural, electronic, and optical properties for efficient and cost-effective solar cell …
intriguing structural, electronic, and optical properties for efficient and cost-effective solar cell …
Perovskite-CIGS monolithic tandem solar cells with 29.7% efficiency: a numerical study
Tandem solar cells have higher efficiency than single-junction devices owing to their wide
photon absorption range. A wide band gap (Eg) absorber absorbs the higher-energy …
photon absorption range. A wide band gap (Eg) absorber absorbs the higher-energy …
New highly efficient perovskite solar cell with power conversion efficiency of 31% based on Ca3NI3 and an effective charge transport layer
The fascinating structural, optical, and electronic features of calcium nitrogen iodide (Ca 3 NI
3) make it an attractive material for develo** absorbers for efficient and reasonably priced …
3) make it an attractive material for develo** absorbers for efficient and reasonably priced …
Improving the power conversion efficiency of RbPbBr3 absorber based solar cells through the variation of efficient hole transport layers
Novel rubidium-lead-bromide (RbPbBr 3) hybrid perovskite solar cells (HPSCs) are gaining
attention from researchers because of their exceptional semiconductor qualities …
attention from researchers because of their exceptional semiconductor qualities …
Unveiling the Structural, Electronic, Optical, Mechanical, and Photovoltaic Properties of Lead-Free Inorganic New Ba3MBr3 (M = As, N, P, and Sb) Perovskites
Highly efficient, stable perovskite solar cells (PSCs) are investigated using barium (Ba)-
based homologous series compound materials such as Ba3MBr3 (M= As, P, Sb, and N) as …
based homologous series compound materials such as Ba3MBr3 (M= As, P, Sb, and N) as …
Solar power conversion: CuI hole transport layer and Ba 3 NCl 3 absorber enable advanced solar cell technology boosting efficiency over 30%
Researchers are becoming more interested in novel barium-nitride-chloride (Ba3NCl3)
hybrid perovskite solar cells (HPSCs) due to their remarkable semiconductor properties. An …
hybrid perovskite solar cells (HPSCs) due to their remarkable semiconductor properties. An …
Tuning the hole transport layer in the Ca3SbI3 absorber-based solar cells to improve the power conversion efficiency
The renewable energy field has been demonstrating a significant deal of interest in lead
(Pb)-free inorganic halide perovskites because of their remarkable optical, mechanical …
(Pb)-free inorganic halide perovskites because of their remarkable optical, mechanical …
A comparative study of CuO based solar cell with ZnTe HTL and SnS2 ETL using SCAPS 1D simulation
The black solid known as copper (II) oxide (CuO) has a high degree of thermal stability and
is frequently utilized as a semiconductor material and catalyst because of its exceptional …
is frequently utilized as a semiconductor material and catalyst because of its exceptional …