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Hydroxylated Detonation Nanodiamond: FTIR, XPS, and NMR Studies

机译:羟基化爆轰纳米金刚石:FTIR,XPS和NMR研究

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摘要

Detailed and unambiguous characterization of the surface structure of detonation nanodiamond (DND) particles remains one of the most challenging tasks for the preparation of chemically functionalized nanodiamonds. In the present paper, a combination of FTIR, NMR, and XPS was used to characterize DND particles that were treated in a reduction reaction that results in the enrichment of hydroxyl and hydroxymethyl functional groups. FTIR spectra and quantum-chemistry modeling demonstrated that the vacuum treatment of the sample, with the purpose of the removing adsorbed water and other volatile contaminates, is mandatory to obtain the correct data on the nature and relative content of the -OH surface groups on DND. C and H NMR spectra show signals from the diamond core, hydroxyl, hydrocarbon groups, and moisture on the diamond surface. NMR data were taken for as-prepared DNDs, as well as those that were driedunder vacuum conditions of 10~(-4) Torr, in order to distinguish between the NMR signal contributions due to moisture and other hydrogen-containing groups.
机译:爆轰纳米金刚石(DND)颗粒表面结构的详细,明确的表征仍然是制备化学功能化纳米金刚石的最具挑战性的任务之一。在本文中,FTIR,NMR和XPS的组合用于表征在还原反应中处理的DND颗粒,该反应导致羟基和羟甲基官能团的富集。 FTIR光谱和量子化学建模表明,对样品进行真空处理(以去除吸附的水和其他挥发性污染物为目的)对于获得DND上-OH表面基团的性质和相对含量的正确数据是强制性的。 C和H NMR谱显示来自金刚石芯,羟基,烃基和金刚石表面上的水分的信号。为区分所制备的DND以及在10〜(-4)Torr真空条件下干燥的DND,获取NMR数据,以便区分由于水分和其他含氢基团引起的NMR信号贡献。

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