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Filamentation of diamond nanoparticles treated in underwater corona discharge

机译:水下电晕放电处理的金刚石纳米粒子的细节

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Diamond nanoparticles (DNPs), also known as nanodiamonds, have attracted significant interest in recent years due to a number of potential applications. Their particular usage requires proper surface engineering. In this work, DNPs with a nominal diameter of 5 nm were treated using underwater pulsed streamer corona discharge. A reactor with a needle-to-plate electrode system was employed. The electrolytic conductivity of aqueous DNPs suspensions (0.37 g l ~(?1) ) was adjusted by NaCl to 100 and 500 μS cm ~(?1) . The discharge-treated particles predominantly formed several mm long filaments consisting of agglomerates with submicron diameter, independent of the solution conductivity and the treatment time. The treatment of DNPs decreased the sp ~(2) -bonded carbon atoms, as evaluated by XPS for more conductive solution. For both solutions, oxidation of the DNP surface was observed. FTIR measurements showed evolution of new bands at 800–950 cm ~(?1) and 1261 cm ~(?1) , which were attributed to the formation of epoxides via the attack of HO _(2) ˙ radicals on surface CC double bonds.
机译:由于许多潜在的应用,金刚石纳米粒子(DNPs)也称为纳米金刚石,这近年来引起了重大兴趣。他们的特殊用途需要适当的表面工程。在这项工作中,使用水下脉冲飘带电晕放电处理具有标称直径为5nm的DNP。采用具有针对板电极系统的反应器。通过NaCl至100和500μscm〜(β1)调节水溶液水溶液(0.37g l〜(α1))的电解电导率。排出处理的颗粒主要形成几毫米长的长丝,由亚微米直径的附聚物组成,与溶液电导率无关,以及治疗时间。 DNP的处理降低了SP〜(2)粘附的碳原子,如XPS评估的,以获得更多导电溶液。对于这两种溶液,观察到DNP表面的氧化。 FTIR测量显示出在800-950cm〜(α1)和1261cm〜(α1)的新带的演变,其归因于通过HO _(2)的攻击形成环氧化物的表面CC双键的激进。

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