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Deaggregation and Ultradispersion of Detonation Nanodiamonds in Polar Solvent Using Physicochemical Treatments
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HOME > J Powder Mater > Volume 20(6); 2013 > Article
물리화학적 처리를 통한 극성 용매 내 나노다이아몬드의 탈응집 및 분산성 향상 연구
김창규, 이경자, 이창규
Deaggregation and Ultradispersion of Detonation Nanodiamonds in Polar Solvent Using Physicochemical Treatments
Changkyu Kim, Gyoung-Ja Lee, Changkyu Rhee
Journal of Powder Materials 2013;20(6):479-486
DOI: https://doi.org/10.4150/KPMI.2013.20.6.479
1한국원자력연구원 원자력재료개발부
2한국원자력연구원 원자력재료개발부
3한국원자력연구원 원자력재료개발부
1Nuclear Materials Research Division, Korea Atomic Energy Research Institute (KAERI)
2Nuclear Materials Research Division, Korea Atomic Energy Research Institute (KAERI)
3Nuclear Materials Research Division, Korea Atomic Energy Research Institute (KAERI)
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In the present work, physicochemical treatments were introduced for de-aggregation and stable dispersion of detonation nanodiamonds (DND) in polar solvents. The DNDs in water exhibited a particle size of 138 nm and high dispersion stability without particular treatment. However, the DNDs in ethanol were severely aggregated to several micrometers in size and showed poor dispersion stability with time. To break down aggregates of DNDs and enhance the dispersion stability of them in ethanol, mechanical force and chemical surfactant were introduced as functions of zirconia ball size, kind of surfactant and amount of surfactant added. From the analyses of average particle size and Turbiscan results, it was suggested that the size of DNDs in ethanol can be reduced by only mechanical force; however, the DNDs were re-aggregated due to high surface activity. The long-term dispersion stability can be achieved by applying mechanical force to break down the aggregates of DNDs and by preventing re-aggregation of them using proper surfactant.

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