Carrier multiplication is a non-radiative recombination mechanism that leads to the generation of two or more electron–hole pairs after absorption of a single photon. By reducing the occurrence of dissipative effects, this process can be exploited to increase solar cell performance. In this work, we introduce two different theoretical fully ab initio tools that can be adopted to study carrier multiplication in nanocrystals. The tools are described in detail and compared. Subsequently, we calculate carrier multiplication lifetimes in H- and OH-terminated silicon nanocrystals, pointed out the role played by the passivation on the carrier multiplication processes
An important challenge in the field of renewable energy is the development of novel nanostructured s...
An illumination-dependent analysis of silicon nanocrystal p-i-n solar cells is presented within the ...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
Carrier multiplication is a non-radiative recombination mechanism that leads to the generation of t...
One of the most important goals in the field of renewable energy is the development of original sola...
Carrier Multiplication (CM) is a Coulomb-driven non-radiative recombination mechanism which leads to...
We present density functional theory calculations of carrier multiplication properties in a system o...
The conversion of solar radiation into electric current with high efficiency is one of the most impo...
We present density functional theory calculations of carrier multiplication properties in a system o...
A range of the distinctive physical properties, comprising high surface-to-volume ratio, possibility...
Carrier multiplication is an important process which can enhance the efficiency of photovoltaic and ...
Carrier multiplication by generation of two or more electron-hole pairs following the absorption of ...
We present density functional theory calculations of carrier multiplication processes in a system of...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
The enhancement of carrier multiplication in semiconductor nanocrystals attracts a great deal of att...
An important challenge in the field of renewable energy is the development of novel nanostructured s...
An illumination-dependent analysis of silicon nanocrystal p-i-n solar cells is presented within the ...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
Carrier multiplication is a non-radiative recombination mechanism that leads to the generation of t...
One of the most important goals in the field of renewable energy is the development of original sola...
Carrier Multiplication (CM) is a Coulomb-driven non-radiative recombination mechanism which leads to...
We present density functional theory calculations of carrier multiplication properties in a system o...
The conversion of solar radiation into electric current with high efficiency is one of the most impo...
We present density functional theory calculations of carrier multiplication properties in a system o...
A range of the distinctive physical properties, comprising high surface-to-volume ratio, possibility...
Carrier multiplication is an important process which can enhance the efficiency of photovoltaic and ...
Carrier multiplication by generation of two or more electron-hole pairs following the absorption of ...
We present density functional theory calculations of carrier multiplication processes in a system of...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
The enhancement of carrier multiplication in semiconductor nanocrystals attracts a great deal of att...
An important challenge in the field of renewable energy is the development of novel nanostructured s...
An illumination-dependent analysis of silicon nanocrystal p-i-n solar cells is presented within the ...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...