We developed an accurate model accounting for electron-phonon interaction in colloidal quantum dot supercrystals that allowed us to identify the nature of charge carriers and the electrical transport regime. We find that in experimentally analyzed CdSe nanocrystal solids, the electron-phonon interaction is sufficiently strong that small polarons localized to single dots are formed. Charge-carrier transport occurs by small polaron hopping between the dots, with mobility that decreases with increasing temperature. While such a temperature dependence of mobility is usually considered as a proof of band transport, we show that the same type of dependence occurs in the system where transport is dominated by small polaron hopping
Quantum dots (ODs) have promising optoelectronic properties. Colloidal OD heterostructures, systems ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, September...
In semiconductors, increasing mobility with decreasing temperature is a signature of charge carrier ...
Colloidal semiconductor quantum dots connected by organic or inorganic molecules can form periodic s...
Quantum dots and conducting polymers are modern semiconductors with a high potential for application...
Conduction electrons interact with lattice vibrations, leading to coupled electron-phonon states. Th...
Conduction electrons interact with lattice vibrations, leading to coupled electron-phonon states. Th...
Conduction electrons interact with lattice vibrations, leading to coupled electron-phonon states. Th...
Motivated by recent experiments on electric transport through single molecules and quantum dots, we ...
We present a Green's function based treatment of the effects of electron-phonon coupling on transpor...
We have used Rietveld refinement technique to extract the microstructural parameters of thioglycolic...
Here we report the dielectric relaxation and anomalous ac conduction behavior of CdSe quantum dots i...
Cryogenic scanning tunneling spectroscopy is increasingly used to study the electronic structure of ...
Quantum dots (ODs) have promising optoelectronic properties. Colloidal OD heterostructures, systems ...
Understanding the impact of positional and energetic disorders in nanocrystal (NC) quantum dot thin ...
Quantum dots (ODs) have promising optoelectronic properties. Colloidal OD heterostructures, systems ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, September...
In semiconductors, increasing mobility with decreasing temperature is a signature of charge carrier ...
Colloidal semiconductor quantum dots connected by organic or inorganic molecules can form periodic s...
Quantum dots and conducting polymers are modern semiconductors with a high potential for application...
Conduction electrons interact with lattice vibrations, leading to coupled electron-phonon states. Th...
Conduction electrons interact with lattice vibrations, leading to coupled electron-phonon states. Th...
Conduction electrons interact with lattice vibrations, leading to coupled electron-phonon states. Th...
Motivated by recent experiments on electric transport through single molecules and quantum dots, we ...
We present a Green's function based treatment of the effects of electron-phonon coupling on transpor...
We have used Rietveld refinement technique to extract the microstructural parameters of thioglycolic...
Here we report the dielectric relaxation and anomalous ac conduction behavior of CdSe quantum dots i...
Cryogenic scanning tunneling spectroscopy is increasingly used to study the electronic structure of ...
Quantum dots (ODs) have promising optoelectronic properties. Colloidal OD heterostructures, systems ...
Understanding the impact of positional and energetic disorders in nanocrystal (NC) quantum dot thin ...
Quantum dots (ODs) have promising optoelectronic properties. Colloidal OD heterostructures, systems ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, September...
In semiconductors, increasing mobility with decreasing temperature is a signature of charge carrier ...