Exploring the hydrogen storage possibility of the pristine, defected and metals decorated o-B2N2 monolayers: Insights from DFT simulations

被引:27
作者
Chodvadiya, Darshil [1 ]
Kanabar, Shreya [1 ]
Chakraborty, Brahmananda [2 ,3 ]
Jha, Prafulla K. [1 ]
机构
[1] Maharaja Sayajirao Univ Baroda, Fac Sci, Dept Phys, Vadodara 390002, Gujarat, India
[2] Bhabha Atom Res Ctr, High Pressure & Synchrotron Radiat Phys Div, Trombay, Mumbai 400008, Maharashtra, India
[3] Homi Bhabha Natl Inst, Mumbai 400094, India
关键词
Hydrogen storage; Transition metals; o-B; 2; N; monolayer; Desorption temperature; Gravimetric storage capacity; GRAPHENE; BN; CAPACITY;
D O I
10.1016/j.ijhydene.2023.11.326
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
To explore the possibility of hydrogen storage, we conducted dispersion-corrected density functional theory (DFT-D3) simulations on pristine, defected and metals (including Na and K alkali metals, Be, Mg and Ca alkalineearth metals and Sc, Ti, Y and Zr transition metals) decorated orthorhombic diboron dinitride (o-B2N2) monolayers. The results suggest that the pristine, defected and metals (Na, K, Be, Mg, Ca, Sc, Y and Zr) decorated oB2N2 monolayers are not desirable medium for storage of hydrogen. However, the Ti decorated o-B2N2 monolayer showed promising potential for hydrogen storage medium. The Ti atom displayed a significant binding energy (Eb) of -2.79 eV with the o-B2N2 monolayer, causing a reduced band gap and increased conductivity. In the case of Ti decorated o-B2N2 monolayer, the adsorption energy (Ead) for first hydrogen adsorption is -0.47 eV, meeting the department of energy (DoE)'s criteria. In addition, a charge donation from the Ti metal to o-B2N2 monolayer has been observed through PDOS, Lo center dot wdin charge transfer and charge density difference. The two Ti decorated o-B2N2 monolayer can bind a total of thirty-four hydrogen molecules within the DoE's limit, with Ead of -0.31 eV/H2 and 396 K of desorption temperature. The calculated gravimetric storage capacity is 11.21 %, which is remarkably higher than the DoE's specified range. Ab initio molecular dynamics calculations predict a favourable thermal stability of two Ti decorated o-B2N2 monolayer at 396 K. As a summary, this research highlights the promising prospects of the Ti decorated o-B2N2 monolayer as an efficient medium for highcapacity hydrogen storage.
引用
收藏
页码:958 / 968
页数:11
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