The brightness, large absorption cross-section and flexibility of colloidal nanocrystal quantum-dots (QDs) make these materials promising candidates for light harvesting applications. The difficulty of efficiently extracting photogenerated carriers from the QDs however drastically limits the power conversion efficiency of NQD solar cells. A possible way to circumvent these issues is to engineer hybrid devices that utilize alternative energy transfer schemes to effectively separate light harvesting and charge extraction in different materials. In this context, hybrid bulk semiconductor/QDs devices coupled through near-field resonant energy transfer offer a promising route towards low cost ultra-thin photovoltaics. In this work, we demonstrat...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2016.This electronic v...
*S Supporting Information ABSTRACT: Quantum dots (QDs) represent one of the most promising materials...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
The brightness, large absorption cross-section and flexibility of colloidal nanocrystal quantum-dots...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
This work focuses on the utilisation of quantum dots (QDs) and resonance energy transfer to enhance ...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
In this work, we study the efficiency of the resonance energy transfer from PbS quantum dots to bulk...
In this work, we study the efficiency of the resonance energy transfer from PbS quantum dots to bulk...
2014-09-02This dissertation comprises a study aimed at understanding the competing dynamics of energ...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
We explore different geometries and different composition of semiconductor nanoparticles for the use...
Solution-processed nanomaterials such as lead sulfide (PbS) colloidal quantum dots (CQDs) combine va...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
Semiconductor quantum dots (also referred to as 'nanocrystals‘) are well suited as light-harvesting ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2016.This electronic v...
*S Supporting Information ABSTRACT: Quantum dots (QDs) represent one of the most promising materials...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
The brightness, large absorption cross-section and flexibility of colloidal nanocrystal quantum-dots...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
This work focuses on the utilisation of quantum dots (QDs) and resonance energy transfer to enhance ...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
In this work, we study the efficiency of the resonance energy transfer from PbS quantum dots to bulk...
In this work, we study the efficiency of the resonance energy transfer from PbS quantum dots to bulk...
2014-09-02This dissertation comprises a study aimed at understanding the competing dynamics of energ...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
We explore different geometries and different composition of semiconductor nanoparticles for the use...
Solution-processed nanomaterials such as lead sulfide (PbS) colloidal quantum dots (CQDs) combine va...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
Semiconductor quantum dots (also referred to as 'nanocrystals‘) are well suited as light-harvesting ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2016.This electronic v...
*S Supporting Information ABSTRACT: Quantum dots (QDs) represent one of the most promising materials...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...