Colloidal semiconductor quantum dots connected by organic or inorganic molecules can form periodic supercrystals. These supercrystals can be used for various types of electronic and optical applications with properties superior to those of random quantum dots and organic polymer mixtures. We have used ab initio calculations to study the charge transport and carrier mobility in such supercrystals. Among the different possible charge transport mechanisms, we found that the phonon-assisted hopping is the most likely mechanism. The calculated carrier mobility agrees well with the experimentally measured results. Our predictions of the size and temperature dependences on the mobility are awaiting experimental confirmation
In semiconductors, increasing mobility with decreasing temperature is a signature of charge carrier ...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
The potential of semiconductors assembled from nanocrystals has been demonstrated for a broad array ...
We developed an accurate model accounting for electron-phonon interaction in colloidal quantum dot s...
Understanding the impact of positional and energetic disorders in nanocrystal (NC) quantum dot thin ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, September...
Quantum dots and conducting polymers are modern semiconductors with a high potential for application...
Hybrid organic:inorganic materials have emerged as a novel class of electronic and optoelectronic me...
Electron occupation of the lowest electronic state of the conduction band (1S(e)) of a semiconductin...
Hybrid organic:inorganic materials have emerged as a novel class of electronic and optoelectronic me...
Hybrid organic:inorganic materials have emerged as a novel class of electronic and optoelectronic me...
A Monte Carlo model is developed for the hopping conductance in arrays of quantum dots (QDs). Hoppin...
Semiconductor nanocrystals (NCs), which can have a variety of sizes, shapes and chemical composition...
Semiconductor nanocrystals (NCs), which can have a variety of sizes, shapes and chemical composition...
In semiconductors, increasing mobility with decreasing temperature is a signature of charge carrier ...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
The potential of semiconductors assembled from nanocrystals has been demonstrated for a broad array ...
We developed an accurate model accounting for electron-phonon interaction in colloidal quantum dot s...
Understanding the impact of positional and energetic disorders in nanocrystal (NC) quantum dot thin ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, September...
Quantum dots and conducting polymers are modern semiconductors with a high potential for application...
Hybrid organic:inorganic materials have emerged as a novel class of electronic and optoelectronic me...
Electron occupation of the lowest electronic state of the conduction band (1S(e)) of a semiconductin...
Hybrid organic:inorganic materials have emerged as a novel class of electronic and optoelectronic me...
Hybrid organic:inorganic materials have emerged as a novel class of electronic and optoelectronic me...
A Monte Carlo model is developed for the hopping conductance in arrays of quantum dots (QDs). Hoppin...
Semiconductor nanocrystals (NCs), which can have a variety of sizes, shapes and chemical composition...
Semiconductor nanocrystals (NCs), which can have a variety of sizes, shapes and chemical composition...
In semiconductors, increasing mobility with decreasing temperature is a signature of charge carrier ...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...
Colloidal quantum dots (CQDs) are nanoscale building blocks for bottom-up fabrication of semiconduct...