Quantum dots (QDs) are of prevalent scientific and technological consideration because of their tunable size and thus frequency change (band-gap energy) in the NIR optical region. QDs have exceptional properties such as optical, physiochemical, electrical, and capacity to be bound to biomolecules. These selective size-dependent attributes of QDs assist them with having versatile applications in optoelectronic and biomedical fields. Their capacity to emit light at various frequencies because of an outer stimulus makes quantum dots perfect for use in imaging, diagnostics, tests for individual particles, and medication transportation frameworks. Ongoing advances in quantum dot design incorporate the potential for these nanocrystals to become t...
Fluorescent quantum dots (Qdots) are a new class of semiconductor nanomaterials typically in the siz...
Semiconductor quantum dots (QDs) are nanometre-scale crystals, which have unique photophysical prope...
The purpose of this communication is to make a bibliographic review of Quantum Dots methods and the...
Biosensors can be developed using quantum dots (QDs). An inorganic nucleus with organic molecules at...
Colloidal semiconductor nanocrystals, also known as Quantum Dots (QDs), posses unique properties due...
Quantum dots (QDs) are luminescent semiconductor nanocrystals that have extraordinary luminescence e...
Quantum dots (QDs) are fluorescent nanocrystals with superb photo-physical properties. Applications ...
Quantum Dots (QDs) are ultra-fine nanometer-sized semiconductor particles with a core-shell structur...
Semiconductor quantum dots are quickly becoming a critical diagnostic tool for discerning cellular f...
In the twenty-first century, nanotechnology has become cutting-edge technology. It is interdisciplin...
Cristian T Matea,1,* Teodora Mocan,1,2,* Flaviu Tabaran,1,3,* Teodora Pop,1,4,* Ofelia Mosteanu,1,4,...
This chapter provides a short review of quantum dots (QDs) physics, applications, and perspectives. ...
Surface modified and bioconjugated quantum dots (QDs) are of central importance in biomedical appli...
Quantum dots (QDs) are nanoscale semiconductor crystals that possess special characteristics, and th...
Quantum dots are semiconducting nanocrystals that exhibit extraordinary optical properties. QD have ...
Fluorescent quantum dots (Qdots) are a new class of semiconductor nanomaterials typically in the siz...
Semiconductor quantum dots (QDs) are nanometre-scale crystals, which have unique photophysical prope...
The purpose of this communication is to make a bibliographic review of Quantum Dots methods and the...
Biosensors can be developed using quantum dots (QDs). An inorganic nucleus with organic molecules at...
Colloidal semiconductor nanocrystals, also known as Quantum Dots (QDs), posses unique properties due...
Quantum dots (QDs) are luminescent semiconductor nanocrystals that have extraordinary luminescence e...
Quantum dots (QDs) are fluorescent nanocrystals with superb photo-physical properties. Applications ...
Quantum Dots (QDs) are ultra-fine nanometer-sized semiconductor particles with a core-shell structur...
Semiconductor quantum dots are quickly becoming a critical diagnostic tool for discerning cellular f...
In the twenty-first century, nanotechnology has become cutting-edge technology. It is interdisciplin...
Cristian T Matea,1,* Teodora Mocan,1,2,* Flaviu Tabaran,1,3,* Teodora Pop,1,4,* Ofelia Mosteanu,1,4,...
This chapter provides a short review of quantum dots (QDs) physics, applications, and perspectives. ...
Surface modified and bioconjugated quantum dots (QDs) are of central importance in biomedical appli...
Quantum dots (QDs) are nanoscale semiconductor crystals that possess special characteristics, and th...
Quantum dots are semiconducting nanocrystals that exhibit extraordinary optical properties. QD have ...
Fluorescent quantum dots (Qdots) are a new class of semiconductor nanomaterials typically in the siz...
Semiconductor quantum dots (QDs) are nanometre-scale crystals, which have unique photophysical prope...
The purpose of this communication is to make a bibliographic review of Quantum Dots methods and the...