催化作用
脱氢
粒径
集聚经济
材料科学
化学工程
色散(光学)
粒子(生态学)
氢
钛
多相催化
氢气储存
航程(航空)
基质(化学分析)
纳米颗粒
纳米技术
粒度分布
无机化学
二氧化钛
离子
氢化镁
催化剂载体
作者
Xizhe Lu,Fang Cheng,Gangqiang Wu,Zhendong Yao,Y.F. Cui,Chao Li
标识
DOI:10.1016/j.ijhydene.2026.153633
摘要
MgH 2 is a hydrogen storage material with high hydrogen absorption/release temperatures and poor kinetics. Although a large number of catalysts capable of optimizing the performance of MgH 2 have been developed in recent years, there are relatively few studies focus on its size effect. In this work, TiO 2 particles with the similar morphology but different sizes were synthesized. It shows that reducing particle size within a certain range (from 1.3 μm to 60 nm) can dramatically enhance the catalytic effect of TiO 2 on MgH 2 . However, when the catalyst size reduces from 60 to 25 nm, due to the severe agglomeration of nanoparticles, there is a little improvement in the dehydrogenation temperature, but an obvious improvement in dynamics. It can be seen in solid-state catalytic systems, merely considering particle size while ignoring the problem of agglomeration and dispersion form of the catalyst in the matrix cannot achieve the best catalytic effect. • TiO 2 with different particle size of 25 nm, 60 nm and 1.3 μm was synthesized. • The 25 nm TiO 2 demonstrated the most notable improvement in performance. • Multivalent titanium ions reduced the E a of de-/hydrogenation reaction of MgH 2 .
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