“…Strain engineering is widely applied to modulate the electronic structure and subsequently impact the performance of functional materials. [70][71][72] To investigate the effects of strain engineering on group-IIIA elements doped BaSnS 2 , the compressive and tensile strains were imposed using the following equation: e ¼ a strained À a relaxed a relaxed  100%. 73 The strain range is set from À4% to 4% in BaSnS 2 with group-IIIA element doping at Sn site at 25% doping concentration.…”
The quest for high-performance solar cell absorbers has garnered significant attention in the field of photovoltaic research in recent years. To overcome the Shockley-Queisser (SQ) limit of ~31% for single...
“…Strain engineering is widely applied to modulate the electronic structure and subsequently impact the performance of functional materials. [70][71][72] To investigate the effects of strain engineering on group-IIIA elements doped BaSnS 2 , the compressive and tensile strains were imposed using the following equation: e ¼ a strained À a relaxed a relaxed  100%. 73 The strain range is set from À4% to 4% in BaSnS 2 with group-IIIA element doping at Sn site at 25% doping concentration.…”
The quest for high-performance solar cell absorbers has garnered significant attention in the field of photovoltaic research in recent years. To overcome the Shockley-Queisser (SQ) limit of ~31% for single...
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