Efficient Hybrid Solar Cells Based on Meso-Superstructured Organometal Halide Perovskites
Эффективные гибридные солнечные элементы на основе мезосверхструктурированных органометаллических галогенидных перовскитов
2012-10-05
SCID: 54.1/9b5pbhxy
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hybrid solar cellsmeso-superstructured solar cellsmesoporous aluminaorganometal halide perovskitespower conversion efficiency
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Abstract (AI)
The energy costs associated with separating tightly bound excitons (photoinduced electron-hole pairs) and extracting free charges from highly disordered low-mobility networks represent fundamental losses for many low-cost photovoltaic technologies. We report a low-cost, solution-processable solar cell, based on a highly crystalline perovskite absorber with intense visible to near-infrared absorptivity, that has a power conversion efficiency of 10.9% in a single-junction device under simulated full sunlight. This "meso-superstructured solar cell" exhibits exceptionally few fundamental energy losses; it can generate open-circuit photovoltages of more than 1.1 volts, despite the relatively narrow absorber band gap of 1.55 electron volts. The functionality arises from the use of mesoporous alumina as an inert scaffold that structures the absorber and forces electrons to reside in and be transported through the perovskite.
Key Findings
1
A low-cost, solution-processable meso-superstructured perovskite solar cell achieved 10.9% power conversion efficiency under simulated full sunlight.
2
Mesoporous alumina acts as an inert scaffold that structures the perovskite and confines electron residence and transport within the perovskite.
3
The architecture demonstrates exceptionally few fundamental energy losses compared with photovoltaic technologies based on tightly bound excitons and disordered, low-mobility networks.
4
The device generated open-circuit photovoltages above 1.1 V despite the absorber’s relatively narrow 1.55 eV band gap.
5
The highly crystalline organometal halide perovskite absorber provides intense visible-to-near-infrared absorption while avoiding substantial exciton-separation and charge-extraction losses.
Research Object
meso-superstructured organometal halide perovskite solar cells using a mesoporous alumina scaffold
Research Subject
photovoltaic charge generation, transport, and energy-loss performance, including absorptivity, open-circuit voltage, and power conversion efficiency
Publication Details
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2012-10-05
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