Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, making them attractive for low-cost visible and near-infrared sensing. A significant challenge in achieving high detectivity in PPDs is lowering the dark current density (JD) and noise current (in). This is commonly accomplished using charge-blocking layers to reduce charge injection. By analyzing the temperature dependence of JD for lead-tin based PPDs with different bandgaps and electron-blocking layers (EBL), we demonstrate that while EBLs eliminate electron injection, they facilitate undesired thermal charge generation at the EBL-perovskite interface. The interfacial energy offset between the EBL and the perovskite determines the magnitude...
Organohalide perovskites have emerged as promising light-sensing materials because of their superior...
Hybrid organic–inorganic perovskites have attracted intensive interest as active materials for high-...
Abstract Photodetectors built from conventional bulk materials such as silicon, III–V or II–VI compo...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Quasi-2D perovskites (q2D PVKs) have emerged as attractive materials for optoelectronic devices, suc...
Low-dimensional perovskites attract increasing interest due to tunable optoelectronic properties and...
Low-dimensional perovskites attract increasing interest due to tunable optoelectronic properties and...
Low-dimensional perovskites attract increasing interest due to tunable optoelectronic properties and...
Tuning halide composition in perovskites is a powerful approach demonstrated to enhance the performa...
Abstract Organic–inorganic halide perovskites have demonstrated significant light detection potentia...
Tuning halide composition in perovskites is a powerful approach demonstrated to enhance the performa...
Organohalide perovskites have emerged as promising light-sensing materials because of their superior...
Hybrid organic–inorganic perovskites have attracted intensive interest as active materials for high-...
Abstract Photodetectors built from conventional bulk materials such as silicon, III–V or II–VI compo...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Metal halide perovskite photodiodes (PPDs) offer high responsivity and broad spectral sensitivity, m...
Quasi-2D perovskites (q2D PVKs) have emerged as attractive materials for optoelectronic devices, suc...
Low-dimensional perovskites attract increasing interest due to tunable optoelectronic properties and...
Low-dimensional perovskites attract increasing interest due to tunable optoelectronic properties and...
Low-dimensional perovskites attract increasing interest due to tunable optoelectronic properties and...
Tuning halide composition in perovskites is a powerful approach demonstrated to enhance the performa...
Abstract Organic–inorganic halide perovskites have demonstrated significant light detection potentia...
Tuning halide composition in perovskites is a powerful approach demonstrated to enhance the performa...
Organohalide perovskites have emerged as promising light-sensing materials because of their superior...
Hybrid organic–inorganic perovskites have attracted intensive interest as active materials for high-...
Abstract Photodetectors built from conventional bulk materials such as silicon, III–V or II–VI compo...