Functional groups and their associated charges are responsible for the binding and release of molecules from the surfaces of particles in nanodiamond colloids. In this work, we describe a combined set of experimental and computational techniques that are used to characterize these functional groups quantitatively. The surfaces of the particles examined during this study are amphoteric, as one would expect for surfaces made of carbon, with high concentrations of phenols, pyrones, and sulfonic acid groups; the average 50-nm-diameter nanodiamond aggregate has approximately 22000 phenols, 7000 pyrones, and 9000 sulfonic acids. The aggregates also have at least 2000 fixed positive charges, stabilized within pyrones and/or chromenes. No evidence ...
The role of organo-modifying molecular chains in the formation of molecular films of organo-modified...
The functionalization of small diameter (ca. 50 nm) polycarboxylated nanodiamond particles using ami...
© 2018 Fluorescent nanodiamonds (NDs) are strong contenders as bio-labels for life science imaging, ...
Molecular dynamics simulations of nanoparticles (NPs) are increasingly used to study their interacti...
In this paper, the origin of positive zeta potential exhibited by nanodiamond particles is explained...
Diamonds approaching the nanoscale have the potential for use as probe materials as their optical pr...
The formation behavior of organized organo-modified nanodiamond films and polymer nanocomposites has...
Nanodiamonds are diamond particles measured in nanometers. The ideal nanodiamond molecule should hav...
International audienceCombining numerous unique assets, nanodiamonds are promising nanoparticles for...
anks to their unique properties and high biocompatibilities, fluorescent nanodiamonds are promising ...
The electronic properties of chemically functionalized nanodiamonds are studied using density functi...
Thesis (Ph.D.)--University of Washington, 2020Nanoparticles have consumed the attention of inorganic...
The role of organo-modifying molecular chains in the formation of molecular films of organo-modified...
Nanomaterials hold tremendous potential enabling new unexpected applications and pushing the horizon...
Nanodiamonds (NDs) are emerging as a promising platform for theranostic particles because they unite...
The role of organo-modifying molecular chains in the formation of molecular films of organo-modified...
The functionalization of small diameter (ca. 50 nm) polycarboxylated nanodiamond particles using ami...
© 2018 Fluorescent nanodiamonds (NDs) are strong contenders as bio-labels for life science imaging, ...
Molecular dynamics simulations of nanoparticles (NPs) are increasingly used to study their interacti...
In this paper, the origin of positive zeta potential exhibited by nanodiamond particles is explained...
Diamonds approaching the nanoscale have the potential for use as probe materials as their optical pr...
The formation behavior of organized organo-modified nanodiamond films and polymer nanocomposites has...
Nanodiamonds are diamond particles measured in nanometers. The ideal nanodiamond molecule should hav...
International audienceCombining numerous unique assets, nanodiamonds are promising nanoparticles for...
anks to their unique properties and high biocompatibilities, fluorescent nanodiamonds are promising ...
The electronic properties of chemically functionalized nanodiamonds are studied using density functi...
Thesis (Ph.D.)--University of Washington, 2020Nanoparticles have consumed the attention of inorganic...
The role of organo-modifying molecular chains in the formation of molecular films of organo-modified...
Nanomaterials hold tremendous potential enabling new unexpected applications and pushing the horizon...
Nanodiamonds (NDs) are emerging as a promising platform for theranostic particles because they unite...
The role of organo-modifying molecular chains in the formation of molecular films of organo-modified...
The functionalization of small diameter (ca. 50 nm) polycarboxylated nanodiamond particles using ami...
© 2018 Fluorescent nanodiamonds (NDs) are strong contenders as bio-labels for life science imaging, ...