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爆轰纳米金刚石的透明胶体:物理、化学和生物学性质

Transparent Colloids of Detonation Nanodiamond: Physical, Chemical and Biological Properties.

作者信息

Batsanov Stepan S, Gavrilkin Sergey M, Dan'kin Dmitry A, Batsanov Andrei S, Kurakov Alexander V, Shatalova Tatiana B, Kulikova Inna M

机构信息

National Research Institute for Physical-Technical Measurements, Mendeleevo 141570, Russia.

Fritsch Laboratory Instruments, Moscow Branch, Moscow 115093, Russia.

出版信息

Materials (Basel). 2023 Sep 15;16(18):6227. doi: 10.3390/ma16186227.

Abstract

Aqueous suspensions (colloids) containing detonation nano-diamond (DND) feature in most applications of DND and are an indispensable stage of its production; therefore, the interaction of DND with water is actively studied. However, insufficient attention has been paid to the unique physico-chemical and biological properties of transparent colloids with DND content (≤0.1%), which are the subject of this review. Thus, such colloids possess giant dielectric permittivity which shows peculiar temperature dependence, as well as quasi-periodic fluctuations during slow evaporation or dilution. In these colloids, DND interacts with water and air to form cottonwool-like fibers comprising living micro-organisms (fungi and bacteria) and DND particles, with elevated nitrogen content due to fixation of atmospheric N. Prolonged contact between these solutions and air lead to the formation of ammonium nitrate, sometimes forming macroscopic crystals. The latter was also formed during prolonged oxidation of fungi in aqueous DND colloids. The possible mechanism of N fixation is discussed, which can be attributable to the high reactivity of DND.

摘要

含有爆轰纳米金刚石(DND)的水悬浮液(胶体)在DND的大多数应用中都有体现,并且是其生产过程中不可或缺的阶段;因此,人们积极研究DND与水的相互作用。然而,对于DND含量≤0.1%的透明胶体的独特物理化学和生物学特性,关注还不够,而这正是本综述的主题。因此,这类胶体具有巨大的介电常数,其呈现出特殊的温度依赖性,以及在缓慢蒸发或稀释过程中的准周期性波动。在这些胶体中,DND与水和空气相互作用,形成包含活的微生物(真菌和细菌)和DND颗粒的棉絮状纤维,由于大气氮的固定,其氮含量升高。这些溶液与空气的长时间接触会导致硝酸铵的形成,有时会形成宏观晶体。后者在DND水胶体中真菌的长时间氧化过程中也会形成。文中讨论了氮固定的可能机制,这可能归因于DND的高反应活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3234/10532683/29d950abb4f2/materials-16-06227-g001.jpg

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