TY - JOUR
T1 - Single-atom catalyst of TM@D-silicene - An effective way to reduce N2into ammonia
AU - Hou, Pengfei
AU - Huang, Yuhong
AU - Ma, Fei
AU - Zhu, Gangqiang
AU - Zhang, Jianmin
AU - Wei, Xiumei
AU - Du, Peiyuan
AU - Liu, Jing
N1 - Publisher Copyright:
© the Owner Societies.
PY - 2022/2/7
Y1 - 2022/2/7
N2 - Nowadays, the electrocatalytic nitrogen reduction reaction (NRR) still faces great challenges. It's significant to design the electrocatalysts with excellent activity and high selectivity. Herein, the 28 single atom catalysts of transition metal atoms anchored on defective silicene (TM@D-silicene) are designed for electrocatalytic ammonia synthesis under ambient conditions. Two independent screening schemes are proposed to screen the potential SAC candidate. The criteria of Ebin < 0 eV, ΔG∗N2< -0.1 eV, ΔG∗H > ΔG∗N2, and the lowest ΔG∗NNH in scheme I, as well as ΔG∗N2< -0.1 eV, smaller G∗NNH and larger G∗NH2 in scheme II are utilized in the screening procedure. Finally, Cr@D-silicene is picked out since it performs well in the aspects of N2 adsorption, selectivity and catalytic activity of NRR. Moreover, the electronic properties are systematically investigated to clarify why the Cr@D-silicene is qualified for NRR from the perspective of the strong interaction between N2 and Cr, the continuous activation of the N2 molecule, charge transfer and distribution. This work provides a new idea for electrocatalytic ammonia synthesis by using single-atom catalysts.
AB - Nowadays, the electrocatalytic nitrogen reduction reaction (NRR) still faces great challenges. It's significant to design the electrocatalysts with excellent activity and high selectivity. Herein, the 28 single atom catalysts of transition metal atoms anchored on defective silicene (TM@D-silicene) are designed for electrocatalytic ammonia synthesis under ambient conditions. Two independent screening schemes are proposed to screen the potential SAC candidate. The criteria of Ebin < 0 eV, ΔG∗N2< -0.1 eV, ΔG∗H > ΔG∗N2, and the lowest ΔG∗NNH in scheme I, as well as ΔG∗N2< -0.1 eV, smaller G∗NNH and larger G∗NH2 in scheme II are utilized in the screening procedure. Finally, Cr@D-silicene is picked out since it performs well in the aspects of N2 adsorption, selectivity and catalytic activity of NRR. Moreover, the electronic properties are systematically investigated to clarify why the Cr@D-silicene is qualified for NRR from the perspective of the strong interaction between N2 and Cr, the continuous activation of the N2 molecule, charge transfer and distribution. This work provides a new idea for electrocatalytic ammonia synthesis by using single-atom catalysts.
UR - https://www.scopus.com/pages/publications/85124056148
U2 - 10.1039/d1cp04937b
DO - 10.1039/d1cp04937b
M3 - 文章
C2 - 35078206
AN - SCOPUS:85124056148
SN - 1463-9076
VL - 24
SP - 3486
EP - 3497
JO - Physical Chemistry Chemical Physics
JF - Physical Chemistry Chemical Physics
IS - 5
ER -