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Bio-inspired metastable intermolecular nanothermite composite based on Manganese dioxide/Polydopamine/Aluminium

机译:基于二氧化锰/聚二胺/铝的生物启发型亚料分子间纳米热质复合材料

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摘要

Surface engineering of energetic particles can offer significant applications; the emergence of surface modification with polydopamine (PDA) can propose novel material science. Even though, nanothermites (metal oxide/metal) can offer surplus heat output; the reaction rate is comparatively-low as it is limited to the interplaner distance between particles. Intimate mixing between metal oxide/ metal could be accomplished via surface modification. This study reports on the facile synthesis of MnO_2 nanoparticles (NPs) of 5 nm average particle size. On the other hand, Al NPs in the shape of plates of 100 nm particle size were employed. Surface modification of Al NPs with PDA was conducted via in situ polymerization. Colloidal MnO_2 NPs integrated into PDA/A1 during the polymerization process. DPA layer was effectively-deposited on the aluminium surface and effectively-anchored MnO_2 NPs. SEM micrographs of developed MnO_2/PDA/Al nanocomposite demonstrated the successful bonding of MnO_2 to Al surface via strong PDA chemical bonding. From FTIR spectra, the sharp peaks at 1544 cm~(-1) and 1389 cm~(-1) attributed to the C=O and C-O bonds, respectively, and could be due to bond formation between Mn and oxygen in C=O, and C-O in PDA. The developed MnO_2/PDA/Al demonstrated the uniform distribution of MnO_2 NPs on Al nano-plates. This work dropped the light toward the green production of novel nanothermite hybrid with durable chemical bonding. MnO_2/PDA/Al hybrid can offer superior combustion characteristics with intimate mixing between the oxidizer and metal fuel to the molecular level.
机译:精力充沛的粒子的表面工程可以提供重要的应用;用聚二胺(PDA)的表面改性的出现可以提出新颖的材料科学。即使,纳米热质(金属氧化物/金属)可以提供剩余的热输出;反应速率相对较低,因为它限于颗粒之间的界线距离。可以通过表面改性完成金属氧化物/金属之间的贴合混合。该研究报告了5nm平均粒度的MnO_2纳米颗粒(NPS)的容易合成。另一方面,采用粒径为100nm粒径的形状的Al NP。用PDA的Al NPS的表面改性通过原位聚合进行。在聚合过程中,胶体MnO_2 NPS集成到PDA / A1中。 DPA层有效地沉积在铝表面上,并有效地锚固的MnO_2 NPS。发育MnO_2 / PDA / Al纳米复合材料的SEM显微照片通过强PDA化学键合来证明了MnO_2至Al表面的成功键合。从FTIR光谱,分别归因于C = O和CO键的1544cm〜(-1)和1389cm〜(-1)的尖峰,并且可能是由于Mn和C = O之间的键形成和pda中的co。发育的MNO_2 / PDA / A1显示了MNO_2 NPS在Al纳米板上的均匀分布。这项工作将光线朝向绿色生产的新型纳米液体杂种,具有耐用化学键合。 MNO_2 / PDA / AL杂交机可提供卓越的燃烧特性,氧化剂与金属燃料之间的密切混合到分子水平。

著录项

  • 来源
    《Journal of materials science》 |2021年第7期|9158-9170|共13页
  • 作者单位

    School of Chemical Engineering Military Technical College (MTC) Egyptian Armed Forces Cairo Egypt Nanotechnology Research Center Military Technical College (MTC) Egyptian Armed Forces Cairo Egypt;

    School of Chemical Engineering Military Technical College (MTC) Egyptian Armed Forces Cairo Egypt;

    School of Chemical Engineering Military Technical College (MTC) Egyptian Armed Forces Cairo Egypt Drug Radiation Research Department National Center for Radiation Research and Technology (NCRRT) Egyptian Atomic Energy Authority (EAEA) Cairo Egypt;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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