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A DFT study of monolayer Magnesium Carbide (MgC2) as a potential anode for (Li, Na, K) Alkali metal-ion batteries
A DFT study of monolayer Magnesium Carbide (MgC2) as a potential anode for (Li, Na, K) Alkali metal-ion batteries Magnesium Carbide (MgC2) is the latest two-dimensional monolayer material with semiconductor properties containing 0.25 eV band gap. Upon adsorption of the Li/Na/K the semiconducting behavior of material changes to metallic. These properties make it a good choice for electrical usage.
High-performing and stable semiconductor yttrium-doped gadolinium electrolyte for low-temperature solid oxide fuel cells
High-performing and stable semiconductor yttrium-doped gadolinium electrolyte for low-temperature solid oxide fuel cells† Junjiao Li,‡a Muhammad Yousaf,‡b Muhammad Akbar,c Asma Noor,d Hu Enyi,b M.A.K Yousaf Shah, b Qadeer Akbar Sial,e Naveed Mushtaqb and Yuzheng Lu *f Abstract High-performing electrolytes at low operating temperatures have become an inevitable trend in the development of low-temperature solid oxide fuel cells (LT-SOFCs).
Application of Two-dimensional Materials in Perovskite Solar Cells; Recent Progress, Challenges and Prospective Solutions
Application of Two-dimensional Materials in Perovskite Solar Cells; Recent Progress, Challenges and Prospective Solutions Perovskite solar cells (per-SCs) with high performance and cost-effective solution processing have been the center of interest for researchers in the past decade. Power conversion efficiencies (PCEs) have been gradually improved up to 25.2% with relatively improved stability, which is an unparalleled progress in all generations of solar cell (SC) technology.
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