A new experimental setup for studying charge transfer in Quantum Dot (QD) films has been designed, built and tested. The setup combines three spectroscopic methods; Raman, Fluorescence and Absorption Spectroscopy. First data on a Cadmium Selenide (CdSe) films reveals that radiative emission quenches while charging, attributed to Auger-decay. When fully discharged, the emission remains partly quenched, indicating that not all electrons are removed. Since charge transfer is a fundamental process in solar cells, the setup could be essential for designing and optimizing cost efficient future QD based solar cells
Given a rapidly developing world, the need exists for inexpensive renewable energy alternatives to h...
DoctorColloidal quantum dots (CQDs) are emerging photovoltaic materials displaying exclusive charact...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Quantum dots (QDs) are nano-crystal semiconductors (1-100 nm) in which charge carriers (electrons an...
Films of colloidal quantum dots (QDs) show great promise for application in optoelectronic devices. ...
Abstract- Low dimensional semiconductor crystals structures otherwise known as quantum dots are in p...
Quantum dots (QDs) semiconductor of size below its exciton Bohr radius shows fascinating effect of q...
Solar cells are in focus for decades due to their capability to convert solar energy into electrical...
Semiconductor quantum dots (also referred to as 'nanocrystals‘) are well suited as light-harvesting ...
In order to meet the clean energy demands of future generations, solar energy conversion must be ach...
This thesis explores the understanding of the chemistry and physics of colloidal quantum dots for pr...
Solar cells are in focus for decades due to their capability to convert solar energy into electrical...
Our work focuses on experimental and theoretical studies aimed at establishing a fundamental underst...
The balance between our demands of energy and the energy we are consuming is not in equilibrium anym...
Colloidal nanocrystals or quantum dots (QDs) have attained immense scientific interest as light sens...
Given a rapidly developing world, the need exists for inexpensive renewable energy alternatives to h...
DoctorColloidal quantum dots (CQDs) are emerging photovoltaic materials displaying exclusive charact...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Quantum dots (QDs) are nano-crystal semiconductors (1-100 nm) in which charge carriers (electrons an...
Films of colloidal quantum dots (QDs) show great promise for application in optoelectronic devices. ...
Abstract- Low dimensional semiconductor crystals structures otherwise known as quantum dots are in p...
Quantum dots (QDs) semiconductor of size below its exciton Bohr radius shows fascinating effect of q...
Solar cells are in focus for decades due to their capability to convert solar energy into electrical...
Semiconductor quantum dots (also referred to as 'nanocrystals‘) are well suited as light-harvesting ...
In order to meet the clean energy demands of future generations, solar energy conversion must be ach...
This thesis explores the understanding of the chemistry and physics of colloidal quantum dots for pr...
Solar cells are in focus for decades due to their capability to convert solar energy into electrical...
Our work focuses on experimental and theoretical studies aimed at establishing a fundamental underst...
The balance between our demands of energy and the energy we are consuming is not in equilibrium anym...
Colloidal nanocrystals or quantum dots (QDs) have attained immense scientific interest as light sens...
Given a rapidly developing world, the need exists for inexpensive renewable energy alternatives to h...
DoctorColloidal quantum dots (CQDs) are emerging photovoltaic materials displaying exclusive charact...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...