Abstract Surface-functionalized polymer beads encoded with molecular luminophores and nanocrystalline emitters such as semiconductor nanocrystals, often referred to as quantum dots (QDs), or magnetic nanoparticles are broadly used in the life sciences as reporters and carrier beads. Many of these applications require a profound knowledge of the chemical nature and total number of their surface functional groups (FGs), that control bead charge, colloidal stability, hydrophobicity, and the interaction with the environment and biological systems. For bioanalytical applications, also the number of groups accessible for the subsequent functionalization with, e.g., biomolecules or targeting ligands is relevant. In this study, we explore the influ...
Seminconducting nanoparticles, also known as quantum dots or quantum rods depending on the shape, ha...
Colloidal semiconductor nanocrystals, also known as Quantum Dots (QDs), posses unique properties due...
Nanocrystals as functional materials rely heavily on their ability to interface with their immediate...
Luminescence-encoded microbeads are important tools for many applications in the life and material s...
This thesis describes the design and synthesis of homopolymers and copolymers for tuning surface pro...
This thesis describes the design and synthesis of homopolymers and copolymers for tuning surface pro...
For an optimum performance of colloidal nanocrystal devices for a variety of applications such as ph...
Quantum dots (QDs) and polymeric nanoparticles (NPs) are considered good binomials for the developme...
Quantum dots (QDs) and polymeric nanoparticles (NPs) are considered good binomials for the developme...
Quantum dots (QDs) and polymeric nanoparticles (NPs) are considered good binomials for the developme...
Quantum dots (QDs) and polymeric nanoparticles (NPs) are considered good binomials for the developme...
Chapter 1: Functionalization of nanocrystals is essential for their practical application, but synth...
Chapter 1: Functionalization of nanocrystals is essential for their practical application, but synth...
Current quantum dot surface modification strategies rely heavily on ligand exchange that removes the...
ConspectusSemiconductor quantum dots (QDs), also known as nanocrystals, have unique photophysical pr...
Seminconducting nanoparticles, also known as quantum dots or quantum rods depending on the shape, ha...
Colloidal semiconductor nanocrystals, also known as Quantum Dots (QDs), posses unique properties due...
Nanocrystals as functional materials rely heavily on their ability to interface with their immediate...
Luminescence-encoded microbeads are important tools for many applications in the life and material s...
This thesis describes the design and synthesis of homopolymers and copolymers for tuning surface pro...
This thesis describes the design and synthesis of homopolymers and copolymers for tuning surface pro...
For an optimum performance of colloidal nanocrystal devices for a variety of applications such as ph...
Quantum dots (QDs) and polymeric nanoparticles (NPs) are considered good binomials for the developme...
Quantum dots (QDs) and polymeric nanoparticles (NPs) are considered good binomials for the developme...
Quantum dots (QDs) and polymeric nanoparticles (NPs) are considered good binomials for the developme...
Quantum dots (QDs) and polymeric nanoparticles (NPs) are considered good binomials for the developme...
Chapter 1: Functionalization of nanocrystals is essential for their practical application, but synth...
Chapter 1: Functionalization of nanocrystals is essential for their practical application, but synth...
Current quantum dot surface modification strategies rely heavily on ligand exchange that removes the...
ConspectusSemiconductor quantum dots (QDs), also known as nanocrystals, have unique photophysical pr...
Seminconducting nanoparticles, also known as quantum dots or quantum rods depending on the shape, ha...
Colloidal semiconductor nanocrystals, also known as Quantum Dots (QDs), posses unique properties due...
Nanocrystals as functional materials rely heavily on their ability to interface with their immediate...