Despite significant advances toward accurate tuning of the size and shape of colloidal nanoparticles, the precise control of the surface chemistry thereof remains a grand challenge. It is desirable to conjugate functional bio-molecules onto the selected facets of nanoparticles owing to the versatile capabilities rendered by the molecules. We report here facet-selective conjugation of DNA molecules onto upconversion nanoparticles via ligand competition reaction. Different binding strengths of phosphodiester bonds and phosphate groups on DNA and the surfactant molecules al low one to create heterogeneous bio-chemistry surface for upconversion nanoparticles. The tailored surface properties lead to the formation of distinct self-assembly struct...
DNA-mediated multivalent interactions between colloidal particles have been extensively applied for ...
Although multifunctional upconversion imaging probes have recently attracted considerable interest i...
This paper summarizes our studies of DNA nano-compartement in recent years. Biological macromolecule...
© 2018 The Royal Society of Chemistry. Despite significant advances toward accurate tuning of the si...
The emerging upconversion nanoparticles offer a fascinating library of ultrasensitive luminescent pr...
University of Technology Sydney. Faculty of Science.Surface functionalization and conjugation hold t...
The assembly of nanoparticles into complicated, anisotropic shapes has much promise for advanced mat...
Nanomaterials with their unique optical, electrical and chemical properties are promising candidates...
In the last two decades, inorganic nanoparticles have become an active field of research due to thei...
Oligonucleotide-conjugated bio-hybrid nanomaterials with a dense DNA layer on the surface have been ...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
Precise control of biosystems requires development of materials that can dynamically change physicoc...
© 2018 The Royal Society of Chemistry. An efficient surface modification for upconversion nanopartic...
Research at the interface between biomolecules and inorganic nanocrystals has resulted in a great nu...
One of the crucial challenges in nanoscience is gaining control over the formation of the desired na...
DNA-mediated multivalent interactions between colloidal particles have been extensively applied for ...
Although multifunctional upconversion imaging probes have recently attracted considerable interest i...
This paper summarizes our studies of DNA nano-compartement in recent years. Biological macromolecule...
© 2018 The Royal Society of Chemistry. Despite significant advances toward accurate tuning of the si...
The emerging upconversion nanoparticles offer a fascinating library of ultrasensitive luminescent pr...
University of Technology Sydney. Faculty of Science.Surface functionalization and conjugation hold t...
The assembly of nanoparticles into complicated, anisotropic shapes has much promise for advanced mat...
Nanomaterials with their unique optical, electrical and chemical properties are promising candidates...
In the last two decades, inorganic nanoparticles have become an active field of research due to thei...
Oligonucleotide-conjugated bio-hybrid nanomaterials with a dense DNA layer on the surface have been ...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
Precise control of biosystems requires development of materials that can dynamically change physicoc...
© 2018 The Royal Society of Chemistry. An efficient surface modification for upconversion nanopartic...
Research at the interface between biomolecules and inorganic nanocrystals has resulted in a great nu...
One of the crucial challenges in nanoscience is gaining control over the formation of the desired na...
DNA-mediated multivalent interactions between colloidal particles have been extensively applied for ...
Although multifunctional upconversion imaging probes have recently attracted considerable interest i...
This paper summarizes our studies of DNA nano-compartement in recent years. Biological macromolecule...