Rapid hot-carrier cooling is a major loss channel in solar cells. Thermodynamic calculations reveal a 66% solar conversion efficiency for single junction cells (under 1 sun illumination) if these hot carriers are harvested before cooling to the lattice temperature. A reduced hot-carrier cooling rate for efficient extraction is a key enabler to this disruptive technology. Recently, halide perovskites emerge as promising candidates with favorable hot-carrier properties: slow hot-carrier cooling lifetimes several orders of magnitude longer than conventional solar cell absorbers, long-range hot-carrier transport (up to ≈600 nm), and highly efficient hot-carrier extraction (up to ≈83%). This review presents the developmental milestones, distills...
Methylammonium lead iodide perovskite is a promising candidate for next-generation photovoltaics. On...
Hot-carrier solar cells can overcome the Shockley-Queisser limit by harvesting excess energy from ho...
Methylammonium lead iodide perovskite is a promising candidate for next-generation photovoltaics. On...
Rapid hot-carrier cooling is a major loss channel in solar cells. Thermodynamic calculations reveal ...
In this review article, we discuss the working mechanism of hot carrier solar cells (HCSCs), their p...
In this review article, we discuss the working mechanism of hot carrier solar cells (HCSCs), their p...
In this review article, we discuss the working mechanism of hot carrier solar cells (HCSCs), their p...
International audienceLead halide perovskites are attracting a great deal of interest for optoelectr...
International audienceLead halide perovskites are attracting a great deal of interest for optoelectr...
The hot carrier solar cell (HCSC) concept has been proposed to overcome the Shockley Queisser limit ...
The hot carrier solar cell (HCSC) concept has been proposed to overcome the Shockley Queisser limit ...
The hot carrier solar cell (HCSC) concept has been proposed to overcome the Shockley Queisser limit ...
The hot carrier solar cell (HCSC) concept has been proposed to overcome the Shockley Queisser limit ...
Hybrid metal halide perovskites have emerged over the last decade as highly promising materials for ...
Hot-carrier solar cells can overcome the Shockley-Queisser limit by harvesting excess energy from ho...
Methylammonium lead iodide perovskite is a promising candidate for next-generation photovoltaics. On...
Hot-carrier solar cells can overcome the Shockley-Queisser limit by harvesting excess energy from ho...
Methylammonium lead iodide perovskite is a promising candidate for next-generation photovoltaics. On...
Rapid hot-carrier cooling is a major loss channel in solar cells. Thermodynamic calculations reveal ...
In this review article, we discuss the working mechanism of hot carrier solar cells (HCSCs), their p...
In this review article, we discuss the working mechanism of hot carrier solar cells (HCSCs), their p...
In this review article, we discuss the working mechanism of hot carrier solar cells (HCSCs), their p...
International audienceLead halide perovskites are attracting a great deal of interest for optoelectr...
International audienceLead halide perovskites are attracting a great deal of interest for optoelectr...
The hot carrier solar cell (HCSC) concept has been proposed to overcome the Shockley Queisser limit ...
The hot carrier solar cell (HCSC) concept has been proposed to overcome the Shockley Queisser limit ...
The hot carrier solar cell (HCSC) concept has been proposed to overcome the Shockley Queisser limit ...
The hot carrier solar cell (HCSC) concept has been proposed to overcome the Shockley Queisser limit ...
Hybrid metal halide perovskites have emerged over the last decade as highly promising materials for ...
Hot-carrier solar cells can overcome the Shockley-Queisser limit by harvesting excess energy from ho...
Methylammonium lead iodide perovskite is a promising candidate for next-generation photovoltaics. On...
Hot-carrier solar cells can overcome the Shockley-Queisser limit by harvesting excess energy from ho...
Methylammonium lead iodide perovskite is a promising candidate for next-generation photovoltaics. On...