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◆ ACS Omega2026-01-25· Hydrogen storage

Reversible Hydrogen Storage Properties of Superalkali NLi <sub>4</sub> -Decorated Inorganic Graphenylene SiC

Amit Ramchiary, Bibekananda Rabha, Asitbaran Barik, Paritosh Mondal

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide Hydrogen energy has the potential to substitute for fossil-based energy; however, the primary challenge is its effective storage materials. Taking this into consideration, utilizing the quantum chemical methods, superalkali NLi 4 -decorated inorganic graphenylene SiC (IGP-SiC) has been investigated to explore the reversible hydrogen storage at the GGA-PBE level. The binding energy of NLi 4 on the top of the hexagonal ring of IGP-SiC is observed to be −4.89 eV. NLi 4 binds strongly to the IGP-SiC monolayer via electronic charge redistribution, leading to the creation of a positive charge on Li atoms, which facilitates the adsorption of H 2 through orbital interactions and van der Waals forces. The 3NLi 4 @IGP-SiC adduct can adsorb up to 45H 2, resulting in a gravimetric density of 7.69 wt % (surpassing the DOE target of 5.5 wt %) with an average adsorption energy of −0.196 eV/H 2 . Using the van’t Hoff equation, the desorption temperature is calculated to be 305 and 345 K at 5 and 12 atm pressure, respectively. Ab initio molecular dynamics (AIMD) simulation has been conducted at 300 K to check the thermal stability and reversibility of H 2 adsorption. Additionally, the climbing-image nudged band elastic (CI-NEB) method shows a hydrogen desorption energy barrier of 0.121 eV. These findings suggest that NLi 4 -decorated IGP-SiC may serve as a promising reversible hydrogen storage material for future use as per the DOE guidelines.
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Reversible Hydrogen Storage Properties of Superalkali NLi <sub>4</sub> -Decorated Inorganic Graphenylene SiC — 科研速览 Science Skim