Nitrogen-vacancy (NV) centers in nanodiamond (ND) particles are an attractive material for photonic, quantum information, and biological sensing technologies due to their optical propertiesbright single photon emission and long spin coherence time. To harness these features in practical devices, it is essential to realize efficient methods to assemble and pattern NDs at the micro-/nanoscale. In this work, we report the large scale patterned assembly of NDs on a Au surface by creating hydrophobic and hydrophilic regions using self-assembled monolayer (SAM). Hydrophobic regions are created using a methyl (−CH<sub>3</sub>) terminated SAM of octadecanethiol molecules. Evaporating a water droplet suspension of NDs on the SAM patterned surface a...
© 2014 American Chemical Society. In this paper, new steps toward a better understanding and utiliza...
Nanodiamonds containing fluorescent nitrogen-vacancy centers are increasingly attracting interest fo...
Nanodiamonds containing negatively charged nitrogen-vacancy (NV–) centers are versatile nanosensors ...
Symposium V: Design and hierarchical assemblies of nanomaterials (nanoparticles, carbon materials, m...
© 2016 The Royal Society of Chemistry. Arrays of fluorescent nanoparticles are highly sought after f...
Pillar-like structures of nanodiamonds on a silicon substrate are self-assembled for the first time ...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Nanodiamonds (NDs) with excellent biocompatibility, specific optical and electron spin properties ge...
Nanodiamonds hosting colour centres are a promising material platform for various quantum technologi...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Nanodiamonds with dimensions down to a few tens of nanometers containing nitrogen-vacancy (NV) color...
Control over the quantum states of individual luminescent nitrogen-vacancy (NV) centres in nanodiamo...
Nanodiamonds containing negatively charged nitrogen-vacancy (NV–) centers are versatile nanosensors ...
Colour centres in nanodiamonds have many properties such as chemical and physical stability, biocomp...
Micro-manipulations of nanodiamonds (NDs) containing Nitrogen-Vacancy (NV) centers are here reviewed...
© 2014 American Chemical Society. In this paper, new steps toward a better understanding and utiliza...
Nanodiamonds containing fluorescent nitrogen-vacancy centers are increasingly attracting interest fo...
Nanodiamonds containing negatively charged nitrogen-vacancy (NV–) centers are versatile nanosensors ...
Symposium V: Design and hierarchical assemblies of nanomaterials (nanoparticles, carbon materials, m...
© 2016 The Royal Society of Chemistry. Arrays of fluorescent nanoparticles are highly sought after f...
Pillar-like structures of nanodiamonds on a silicon substrate are self-assembled for the first time ...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Nanodiamonds (NDs) with excellent biocompatibility, specific optical and electron spin properties ge...
Nanodiamonds hosting colour centres are a promising material platform for various quantum technologi...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Nanodiamonds with dimensions down to a few tens of nanometers containing nitrogen-vacancy (NV) color...
Control over the quantum states of individual luminescent nitrogen-vacancy (NV) centres in nanodiamo...
Nanodiamonds containing negatively charged nitrogen-vacancy (NV–) centers are versatile nanosensors ...
Colour centres in nanodiamonds have many properties such as chemical and physical stability, biocomp...
Micro-manipulations of nanodiamonds (NDs) containing Nitrogen-Vacancy (NV) centers are here reviewed...
© 2014 American Chemical Society. In this paper, new steps toward a better understanding and utiliza...
Nanodiamonds containing fluorescent nitrogen-vacancy centers are increasingly attracting interest fo...
Nanodiamonds containing negatively charged nitrogen-vacancy (NV–) centers are versatile nanosensors ...