材料科学
化学吸附
复合数
分解
钡
焓
吸收(声学)
钛酸钡
氢
化学工程
吸附
铁电性
活化能
巴(单位)
氧气
钛
无机化学
镁
分析化学(期刊)
动力学
纳米颗粒
热分解
杂质
纳米材料
氧化物矿物
作者
Joshua Adedeji Bolarin (11383679),Zhao Zhang (52732),Hujun Cao (1850161),Zhi Li (72309),Teng He (1787068),Ping Chen (89712)
出处
期刊:
[Figshare (United Kingdom)]
日期:2021-09-03
标识
DOI:10.1021/acs.jpcc.1c05560.s001
摘要
This\npaper seeks to present notable insights into the catalytic\nbehavior of a ferroelectric BaTiO3 nanomaterial at the\nboundary plane in the separation of MgH2 starting from\n185 °C. The synergy between mechanical milling and enhanced electronic\ndistribution at the surface of BaTiO3 aided magnesium to\na remarkable absorption of 4.5 wt % H2 at room temperature\nunder 30 bar within 20 h. The composite released H2 ∼\n5.7 wt % in 15 min at 310 °C and ∼5.1 wt % in 90 min at\n250 °C. The lowered activation energy of decomposition was calculated\nto be ∼60 kJ/mol with a decomposition enthalpy of 72.3 kJ/mol-H2. The composite reversibly produced ∼5.7 wt % H2 across 20 cycles in less than 120 h at 300 °C. As revealed\nby detailed experimental results, the interplay between +4 and +3\nstates of titanium at “111” twin boundaries of BaTiO3, and the formation of oxygen vacancies, play an important\nrole in improving the sorption kinetics and the reversibility of Mg/MgH2. Meanwhile, the anomalous ferroelectric character of the\n+2 state of barium around Ti–O and Mg after milling of BaTiO3 is also believed to slightly enhance MgH2 desorption\nenthalpy via a chemisorption process. Our findings have brought MgH2 a few steps closer to practical applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI