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Predicted a honeycomb metallic BiC and a direct semiconducting Bi_(2)C monolayer as excellent CO_(2)adsorbents
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作者 Menghui Xi Chaozheng He +4 位作者 Houyong Yang Xi Fu Ling Fu Xiaoli Cheng Jiyuan Guo 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第5期2595-2599,共5页
We predicted two stable two-dimensional materials of carbon and bismuth elements,namely BiC and Bi_(2)C monolayers.The stabilities of two monolayers were examined by cohesive energy,Born criteria,first-principle MD si... We predicted two stable two-dimensional materials of carbon and bismuth elements,namely BiC and Bi_(2)C monolayers.The stabilities of two monolayers were examined by cohesive energy,Born criteria,first-principle MD simulations and phonon spectra,respectively.By including the spin-orbit coupling effects,the BiC monolayer is a metal and the Bi_(2)C monolayer possesses a narrow direct(indirect)band gap of 0.403(0.126)eV under the HSE06(GGA-PBE)functional.For the adsorption of CO_(2)molecules,the BiC and Bi_(2)C monolayers have three stable adsorption sites C2,T3 and T4 with the adsorption energies as-0.57,-0.51 and-0.81 eV,and the activation ability on the adsorption as T4>T3>C2.These consequences make the BiC and Bi_(2)C monolayers to be promising adsorbents to capture CO_(2)gas,the Bi_(2)C monolayer to be well photovoltaics and optoelectronics material,and the BiC monolayer to be ideal battery and electronics materials,respectively. 展开更多
关键词 First-principles calculation Global optimization method MONOLAYER Bismuth carbide compounds CO_(2)adsorbents SEMICONDUCTING
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