In this study, the environmental impacts of monolithic silicon heterojunction organometallic perovskite tandem cells (SHJ-PSC) and single junction organometallic perovskite solar cells (PSC) are compared with the impacts of crystalline silicon based solar cells using a prospective life cycle assessment with a time horizon of 2025. This approach provides a result range depending on key parameters like efficiency, wafer thickness, kerf loss, lifetime, and degradation, which are appropriate for the comparison of these different solar cell types with different maturity levels. The life cycle environmental impacts of SHJ-PSC and PSC solar cells are similar or lower compared to conventional crystalline silicon solar cells, given comparable lifeti...
The environmental performance of four different device assembly procedures based on hybrid halide p...
Given the superior stability, technologically developed and cost effectiveness of carbon-based perov...
Given the increasing interest in tandem silicon-based solar cells and the recent advances in lumines...
In this study, the environmental impacts of monolithic silicon heterojunction organometallic perovsk...
LCA studies of perovskite-on-silicon tandem (PST) cells have so far been heavily reliant on laborato...
With continuously increasing power conversion efficiency, metal halide perovskite solar cells have e...
Abstract: For the first time a comprehensive life cycle assessment (LCA) is reported of a large-are...
A promising route to widespread deployment of photovoltaics is to harness inexpensive yet high-effic...
A review of the life cycle sustainability of perovskite solar cells (PSCs) is presented, distinguish...
Silicon heterojunction (SHJ) cells offer high efficiencies and several advantages in the production ...
The current climate and energy crisis urgently needs solar cells with efficiencies above the 29% sin...
LCA studies of perovskite on silicon tandem PST cells have so far been heavily reliant on laborato...
International audienceThe current climate and energy crisis urgently needs solar cells with efficien...
The environmental performance of four different device assembly procedures based on hybrid halide p...
Given the superior stability, technologically developed and cost effectiveness of carbon-based perov...
Given the increasing interest in tandem silicon-based solar cells and the recent advances in lumines...
In this study, the environmental impacts of monolithic silicon heterojunction organometallic perovsk...
LCA studies of perovskite-on-silicon tandem (PST) cells have so far been heavily reliant on laborato...
With continuously increasing power conversion efficiency, metal halide perovskite solar cells have e...
Abstract: For the first time a comprehensive life cycle assessment (LCA) is reported of a large-are...
A promising route to widespread deployment of photovoltaics is to harness inexpensive yet high-effic...
A review of the life cycle sustainability of perovskite solar cells (PSCs) is presented, distinguish...
Silicon heterojunction (SHJ) cells offer high efficiencies and several advantages in the production ...
The current climate and energy crisis urgently needs solar cells with efficiencies above the 29% sin...
LCA studies of perovskite on silicon tandem PST cells have so far been heavily reliant on laborato...
International audienceThe current climate and energy crisis urgently needs solar cells with efficien...
The environmental performance of four different device assembly procedures based on hybrid halide p...
Given the superior stability, technologically developed and cost effectiveness of carbon-based perov...
Given the increasing interest in tandem silicon-based solar cells and the recent advances in lumines...