Self-Aligned Multilayered Nitrogen Vacancy Diamond Nanoparticles for High Spatial Resolution Magnetometry of Microelectronic Currents. [PDF]
Gokhale Y +14 more
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Nanodiamonds: Next generation nano-theranostics for cancer therapy. [PDF]
Priyadarshni N, Singh R, Mishra MK.
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High-Yield Production of SiV-Doped Nanodiamonds for Spectroscopy and Sensing Applications. [PDF]
Kromka A +10 more
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Diamond Nanoparticles Suppress Migration of T98G Glioblastoma Cells by Targeting ECM-Integrin Interactions and Intracellular Signaling, Leading to Extensive Proteome Alterations. [PDF]
Zawadzka K +7 more
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CVD-Engineered Nano Carbon Architectures: Mechanisms, Challenges, and Outlook. [PDF]
Hasan M +7 more
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Characterization and Mechanism Elucidation of Nano-TiO2 Composites Prepared by Gaseous Detonation Method. [PDF]
Wu L, Shi H, Wang X, Lu S, Chen X.
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Detonation Nanodiamond Soot-A Structurally Tailorable Hybrid Graphite/Nanodiamond Carbon-Based Material. [PDF]
Kurkin TS +6 more
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Nanodiamonds in biomedical research: Therapeutic applications and beyond. [PDF]
Alexander E, Leong KW.
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Submicrosecond Aggregation during Detonation Synthesis of Nanodiamond
The Journal of Physical Chemistry Letters, 2021Detonation nanodiamond (DND) is known to form aggregates that significantly reduce their unique nanoscale properties and require postprocessing to separate. How and when DND aggregates is an important question that has not been answered experimentally and could provide the foundation for approaches to limit aggregation.
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Detonation Nanodiamonds for Doping Kevlar
Journal of Nanoscience and Nanotechnology, 2010This paper reports on the first attempt to enclose diamond nanoparticles--produced by detonation--into a Kevlar matrix. A nanocomposite material (40 wt% diamond) was prepared by precipitation from an acidic solution of Kevlar containing dispersed nanodiamonds. In this material, the diamond nanoparticles (Ø = 4 nm) are entirely wrapped in a Kevlar layer
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