纳米颗粒
催化作用
分解
光离子化
热分解
退火(玻璃)
材料科学
化学工程
质谱法
碳氢化合物
铝
活化能
化学
光化学
物理化学
纳米技术
复合材料
有机化学
电离
工程类
色谱法
离子
作者
Souvick Biswas,Dababrata Paul,Nureshan Dias,Kallista Kunzler,Musahid Ahmed,Michelle L. Pantoya,Ralf I. Kaiser
标识
DOI:10.1021/acs.jpca.4c02023
摘要
High-energy-density aluminum nanoparticles (AlNPs) upon thermal annealing followed by superquenching result in elevated stress levels in the metallic core and reduced surface energy at the core-shell interface. Isomer-selective vacuum ultraviolet-based photoionization mass spectrometry coupled to a high-temperature chemical microreactor reveals that these stress-altered AlNPs (SA-AlNPs) exhibit distinctive temperature-dependent reactivities toward catalytic decomposition of the hydrocarbon jet fuel exo-tetrahydrodicyclopentadiene (JP-10, C10H16) compared to untreated AlNPs (UN-AlNPs). SA-AlNPs show a delayed initiation of the decomposition for JP-10 by 200 K relative to the UN-AlNPs; however, the full decomposition is achieved at a 100 K lower temperature. Furthermore, there are fewer oxygenated products that are generated from the alumina surface-induced heterogeneous oxidation process and a larger fraction of closed- and open-shell hydrocarbons. Chemical insight bridging the reactivity order of SA-AlNPs at low and high temperatures, simultaneously, is obtained via a detailed examination of the product branching ratios obtained in this study.
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