论文标题
在K和CA中装饰4-6-8二苯基纸中的超高可逆氢存储
Ultrahigh reversible hydrogen storage in K and Ca decorated 4-6-8 biphenylene sheet
论文作者
论文摘要
通过应用密度功能理论(DFT)和Ab-Initio分子动力学(AIMD)模拟,我们可以预测K和Ca装饰的单层单层双苯基纸(BPS)的超高氢存储能力。我们将各种碱和碱地球金属(包括Na,Be,mg,k,ca)保持在BPS的不同位点,发现K和Ca原子更喜欢在BPS上单独结合而不是形成簇。结果发现,二苯基薄片的2x2x1超级细胞可以吸附八个K,或八个Ca原子,每个K或CA原子都可以吸附5 H $ _2 $,从而分别高于DOE-US的需求量高于DOE-US的需求,分别为11.90%或11.63%。 K和CA装饰的BPS的平均吸附能量分别为-0.24 eV和-0.33 eV,适用于可逆H $ _2 $存储的合适范围。氢分子在电离金属原子附近偏振,因此通过静电和范德华相互作用将金属原子附着。我们估计了H $ _2 $的解吸温度,发现吸附的H $ _2 $可用于可逆使用。我们发现,使用攀岩图像弹性弹性带(CI-NEB)方法计算出足够的2.52 eV的能量屏障。这种能量屏障可以防止CA原子的聚类问题。使用AIMD模拟研究了K和CA装饰的BPS结构的坚固性。
By applying density functional theory (DFT) and ab-initio molecular dynamics (AIMD) simulations, we predict the ultrahigh hydrogen storage capacity of K and Ca decorated single-layer biphenylene sheet (BPS). We have kept various alkali and alkali earth metals, including Na, Be, Mg, K, Ca, at different sites of BPS and found that K and Ca atoms prefer to bind individually on the BPS instead of forming clusters. It was found that 2x2x1 supercell of biphenylene sheet can adsorb eight K, or eight Ca atoms, and each K or Ca atom can adsorb 5 H$_2$, leading to 11.90 % or 11.63 % of hydrogen uptake, respectively, which is significantly higher than the DOE-US demands of 6.5 %. The average adsorption energy of H$_2$ for K and Ca decorated BPS is -0.24 eV and -0.33 eV, respectively, in the suitable range for reversible H$_2$ storage. Hydrogen molecules get polarized in the vicinity of ionized metal atoms hence get attached to the metal atoms through electrostatic and van der Waals interactions. We have estimated the desorption temperatures of H$_2$ and found that the adsorbed H$_2$ can be utilized for reversible use. We have found that a sufficient energy barrier of 2.52 eV exists for the movement of Ca atoms, calculated using the climbing-image nudged elastic band (CI-NEB) method. This energy barrier can prevent the clustering issue of Ca atoms. The solidity of K and Ca decorated BPS structures were investigated using AIMD simulations.