Results 51 to 60 of about 2,398 (172)
The negative electron affinity of diamond allows to emit highly reductive electrons. By introducing intra‐bandgap states and an optimized electron transfer mechanism by surface functionalization with Ru(bpy)3, the formation of solvated electrons is achieved upon solar irradiation.
Benjamin Kiendl +20 more
wiley +1 more source
Plasma & Microwaves as Greener Options for Nanodiamond Purification: Insight Into Cytocompatibility
The potential biomedical applications of nanodiamond have been considered over the last few decades. However, there is still uncertainty regarding the extent to which the surface characteristics of this material can influence potential applications.
Dimitar P. Mitev +5 more
doaj +1 more source
Comparative Analyses of Commercial Detonation Nanodiamonds [PDF]
Colloidal stability is one of crucial factors for many applications of nanodiamond. Despite recent development, nanodiamonds available on the market often exhibit a high impurity content, wide size distribution of aggregates and low resistance to sedimentation.
A.P. Puzyr +5 more
openaire +1 more source
Detonation nanodiamonds form a network that entangles silver nanoparticles into stable nanocomplexes. The structure can fine‐tune and enhance plasmonic absorption through nearfield electromagnetic interactions but prevents silver particle aggregation. The study shows how the arrangement and concentration of particles affect light absorption, offering a
Vendula Hrnčířová +4 more
wiley +1 more source
Self‐Assembled Fluorescent Nanodiamond Layers for Quantum Imaging
We developed a simple, scalable method for coating surfaces with fluorescent nanodiamonds. By optimizing the coating process, we created uniform, dense layers that enable high‐resolution magnetic imaging using the nitrogen‐vacancy (NV) center in nanodiamonds. This approach enables the development of cost‐effective quantum‐sensing and imaging substrates
Katherine Chea +8 more
wiley +1 more source
Nanodiamond additives are dispersed in the aqueous electrolyte to organize water molecules, suppress gas evolution and metal corrosion, and guide zinc to deposit more uniformly. Together with enhanced thermal conductivity for fast heat removal, this strategy reduces temperature rise and degradation, enabling safer, more durable rechargeable zinc metal ...
Jiayan Zhu +7 more
wiley +1 more source
Here, we employed organic additives and binders to disperse or passivate hydrogen‐terminated nanodiamonds, thereby addressing the issue of aggregation formation when they are cast on ITO substrate as an electron transport layer in organic solar cells. This results in better film quality, as well as improved device performance and stability.
Aurelien Sokeng Djoumessi +11 more
wiley +1 more source
THERMAL DECOMPOSITION OF POLYMER COMPOSITE OF POLYTETRAFLUOROETHYLENE AND DETONATION NANODIAMONDS
The effect of nanodiamond filler on the thermal decomposition of polytetrafluoroethylene composites under vacuum pyrolysis was studied by means of thermodesoption mass spectrometry.
A.P. Koscheev +3 more
doaj +1 more source
ELECTRICAL ChARGES AS CATALySTS OF ChEMICAL REACTIONS ON A SOLID SuRFACE [PDF]
Purpose. To determine the change dependency of the potential energy of the chemical bond of a diatomic molecule on the value of the point charge and its distance to the bond using quantum mechanical calculation. Methodology.
Baskevych, O.S. +3 more
core
Nanodiamond–silicon nitride composites for CO2 capture technology
Abstract Innovative nanodiamond (ND)–silicon nitride polymer‐derived ceramics with different concentrations of nanocarbon phase were developed within the present work and their performance as adsorbent materials for CO2 was established. The novel preparative approach consists in the synthesis of a polysilsesquiazane in the presence of different ...
Alexander Kempf, Gabriela Mera
wiley +1 more source

