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Structure and dynamics of Ti-Al-H compounds in Ti-doped NaAlH4

机译:掺钛NaAlH4中Ti-Al-H化合物的结构和动力学

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Structure and stability of pristine and modified NaAlH4 are first investigated using density functional theory (DFT) with plane-wave basis and PW91 functional. Vacancy and Ti-dopant effects in the sodium alanate bulk, (001) surface, and on-top (001) surface are then studied considering Na and interstitial lattice sites. Calculated substitution energies of Ti-doped (001) NaAlH4 surfaces have shown almost equal probability of substitution at both lattice and interstitial sites. Ti-Al-H complexes are formed depending on the accessible AlH4 groups around the Ti dopant. TiAl2H7 and TiAl2H2 complexes are found after geometry optimising doped-NaAlH4 surface models. Their stability and dynamics over time at 423 and 448K are investigated using periodic density functional molecular dynamics (DFT-MD) simulations. Results have shown increased association of Al and H with the complexes as time evolves. DFT-MD simulations show evolution from TiAl2H7 to TiAl5H7 as time and temperature increase in case of Ti dopant at Na surface site (TiSNa), and evolution from TiAl2H2 to TiAl3H6 at 423K and TiAl3H7 at 448K in case of Ti dopant on-top of the interstitial surface site (Ti -> T-I) with time.
机译:首先使用具有平面波基础和PW91功能的密度泛函理论(DFT)研究了原始和改性NaAlH4的结构和稳定性。然后考虑到钠和间隙晶格位置,研究了铝酸钠块体(001)表面和顶部(001)表面的空位和Ti掺杂效应。钛掺杂(001)NaAlH4表面的计算取代能显示出在晶格和间隙位置处几乎相等的取代概率。 Ti-Al-H配合物的形成取决于Ti掺杂剂周围可及的AlH4基团。经过几何优化掺杂的NaAlH4表面模型后,发现了TiAl2H7和TiAl2H2配合物。使用周期性密度泛函分子动力学(DFT-MD)模拟研究了它们在423和448K下随时间的稳定性和动力学。结果表明,随着时间的流逝,Al和H与络合物的缔合增加。 DFT-MD模拟显示,在Na表面位点(TiSNa)的情况下,随着时间和温度的升高,TiAl2H7向TiAl5H7的演化;在Ti掺杂剂位于顶部的情况下,在423K时从TiAl2H2演化为TiAl3H6,在448K时从TiAl3H7演化为TiAl3H7。间质表面部位(Ti-> TI)随时间变化。

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