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首页> 外文期刊>Journal of molecular graphics & modelling >Density functional theory based studies on the adsorption of rare-earth ions from hydrated nitrate salt solutions on g-C3N4 monolayer surface
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Density functional theory based studies on the adsorption of rare-earth ions from hydrated nitrate salt solutions on g-C3N4 monolayer surface

机译:基于密度的函数理论基于G-C3N4单层表面水合硝酸盐盐溶液吸附稀土离子的研究

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This article represents density functional theory (DFT) based comparative analysis on six trivalent rareearth ions (RE3+; RE: Y, La, Ce, Sm, Eu and Gd) absorption, from the respective nitrate-hexahydrate salts, on graphitic carbon nitride (g-C3N4 ) 2D monolayer, and the photocatalytic properties of the RE3+ adsorbed g-C3N4 systems (g-C3N4/RE3+) based on the ground-state electronic structure calculations. Structure, stability and coordination chemistry of two configurations of each hydrated RE-salt system are discussed in detail. Both DFT (B3LYP/SDD) and semi-empirical (Sparkle/PM7) calculations identify the central N-6 vacancy of pristine g-C(3)N(4 )as the most suitable site for RE3+ adsorption. Bader's QTAIM, Mayer bond order and charge population analyses (ADCH, CHELPG and DDEC) are performed to describe the bond characteristics within the systems under study. Thermochemical calculations suggest that the adsorption process is thermodynamically more feasible for higher atomic number (Z) RE3+ [Sm3+, Eu3+ and Gd3+], compared to lower-Z RE3+ [Y3+, La3+ and Ce3+] ions. Besides, the better photocatalytic properties of higher-Z RE3+ adsorbed g-C3N4 systems are revealed from better HOMO-LUMO delocalization, decreased HOMO-LUMO gap, increased softness, higher electrophilicity and electron transfer parameter, compared to pristine or lower-Z RE3+ adsorbed g-C3N4 systems, as obtained from Hirshfeld orbital compositions, density of states and condensed Fukui function analyses. (C) 2020 Elsevier Inc. All rights reserved.
机译:本文代表六个三价稀土离子(RE3 +; Re:Y,La,Ce,SM,SM,欧盟和Gd)吸收的密度泛函理论(DFT)的比较分析,从各个硝酸六水合物盐,石墨氮化物(G. -C3N4)2D单层,以及Re3 +吸附的G-C3N4系统(G-C3N4 / RE3 +)的光催化性质基于地态电子结构计算。详细讨论了两个水合再盐系统的两种配置的结构,稳定性和配位化学。 DFT(B3LYP / SDD)和半经验(Sparkle / PM7)计算均可鉴定原始G-C(3)N(4)的中央N-6空位,为RE3 +吸附的最合适的位点。獾的qtaim,mayer键订单和充电人口分析(ADCH,Chelpg和DDEC)是为了描述所研究的系统内的债券特征。热化学计算表明,与低Z Re3 + [Y3 +,La3 +和Ce3 +]离子相比,吸附过程对于更高的原子序数(Z)RE3 + [SM3 +,EU3 +和GD3 +]热力学上更加可行。此外,与原始或低Z + +吸附相比,从更好的Homo-Lumo临床化,降低Homo-Lumo隙,均匀,柔软度,更高的亲热性和电子转移参数,更好的光催化性能。 G-C3N4系统,从Hirshfeld轨道组合物中获得,状态密度和浓缩的福井函数分析。 (c)2020 Elsevier Inc.保留所有权利。

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