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Infrared absorption study of surface functional groups providing chemical modification of nanodiamonds by divalent copper ion complexes

机译:表面官能团的红外吸收研究,通过二价铜离子配合物对纳米金刚石进行化学修饰

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摘要

Infrared (IR) absorption data evidence the presence of multiple carboxyl and anhydride groups together with hydroxyl and C(sp~3)-H groups in the dried copper-modified detonation nanodiamonds (DND). Insignificant differences in IR spectra of initially purified and copper-modified nanodiamonds indicate that in the ion exchange process Cu~(2+) ions substitute protons just in a small fraction of the entire amount of carboxyl groups on the DND surface. Surface anhydride groups appear as the result of mutual conversion of the neighboring carboxyl groups into the anhydride ones. The observation of specific shape of IR absorption spectrum of DND is a good practical rule for primary selection of detonation nanodiamonds with oxygen-containing functional groups well suitable for targeted surface modification by double-charged metal ions.
机译:红外(IR)吸收数据证明在干燥的铜改性爆轰纳米金刚石(DND)中存在多个羧基和酸酐基团以及羟基和C(sp〜3)-H基团。最初纯化和铜修饰的纳米金刚石的IR光谱无显着差异,表明在离子交换过程中,Cu〜(2+)离子仅在DND表面羧基总量的一小部分取代质子。表面酸酐基团是相邻羧基相互转化为酸酐基团的结果。 DND红外吸收光谱的特定形状的观察是一个很好的实践规则,适用于初次选择具有含氧官能团的爆轰纳米金刚石,该纳米金刚石非常适合通过双电荷金属离子进行目标表面改性。

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