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High-yield fabrication and properties of 1.4 nm nanodiamonds with narrow size distribution

机译:窄尺寸分布的1.4 nm纳米金刚石的高产率制备和性能

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摘要

Detonation nanodiamonds (DNDs) with a typical size of 5 nm have attracted broad interest in science and technology. Further size reduction of DNDs would bring these nanoparticles to the molecular-size level and open new prospects for research and applications in various fields, ranging from quantum physics to biomedicine. Here we show a controllable size reduction of the DND mean size down to 1.4 nm without significant particle loss and with additional disintegration of DND core agglutinates by air annealing, leading to a significantly narrowed size distribution (±0.7 nm). This process is scalable to large quantities. Such molecular-sized DNDs keep their diamond structure and characteristic DND features as shown by Raman spectroscopy, infrared spectroscopy, STEM and EELS. The size of 1 nm is identified as a limit, below which the DNDs become amorphous.
机译:典型的5 nm爆轰纳米金刚石(DND)引起了科学技术的广泛兴趣。 DND的进一步减小将使这些纳米颗粒达到分子尺寸水平,并为从量子物理学到生物医学等各个领域的研究和应用打开新的前景。在这里,我们显示DND平均尺寸的可控尺寸减小至1.4 nm,而没有明显的颗粒损失,并且通过空气退火使DND核心凝集物进一步崩解,从而导致尺寸分布明显变窄(±0.7 nm)。此过程可大规模扩展。如拉曼光谱,红外光谱,STEM和EELS所示,此类分子大小的DND保持其钻石结构和DND特征。 1 nm的大小被确定为极限,低于此极限,DND变为非晶态。

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