Although 2D|3D has shown potential for application in multifunctional devices, the principle of operation for multifunction devices (SOLAR Cell-LED: SOLED) has not yet been revealed. However, most studies have reported that the devices have only one auspicious characteristic. Here in this study the SOLED devices are monitored and investigated in a 2D|3D heterostructure with a multidimensional perovskite. It is fond that a 2D|3D heterostructure with a multidimensional perovskite interface induces carrier transmission from the interface, increasing the density of electrons and holes, and increasing their recombination. An interface-engineered perovskite 2D|3D-heterojunction structure is employed to realize the multifunctional photonic device ...
The addition of large hydrophobic cations to lead halide perovskites has significantly enhanced the ...
The continuous increase of energy demand and emission of greenhouse gases from the conventional foss...
Halide perovskites are emerging as valid alternatives to conventional photovoltaic active materials ...
Herein, the optoelectronic properties of interface-engineered perovskite 2D|3D-heterojunction struct...
Interface engineering and design is paramount in the optimization of a multilayer device stack. This...
Interface engineering and design is paramount in the optimization of a multilayer device stack. This...
Insufficient charge extraction at the interfaces between light-absorbing perovskites and charge tran...
In recent years, a huge success on photovoltaic and light emitting has been achieved in the field of...
Halide perovskite heterojunctions rationally integrate the chemical and physical properties of multi...
As perovskite solar cells (PSCs) are highly efficient, demonstration of high-performance printed dev...
Halide perovskites with low-dimensionalities (2D or quasi-2D) have demonstrated outstanding stabilit...
Dimensionally-engineered perovskite heterostructures are highly attractive, as recently shown to be ...
Two-dimensional (2D) metal halide perovskites can co-construct with the state-of-the-art three-dimen...
© 2022 American Chemical Society.Minimizing bulk and interfacial nonradiative recombination losses i...
The success of using 2D Ruddlesden Popper metal halide perovskites MHPs in optoelectronic devices ...
The addition of large hydrophobic cations to lead halide perovskites has significantly enhanced the ...
The continuous increase of energy demand and emission of greenhouse gases from the conventional foss...
Halide perovskites are emerging as valid alternatives to conventional photovoltaic active materials ...
Herein, the optoelectronic properties of interface-engineered perovskite 2D|3D-heterojunction struct...
Interface engineering and design is paramount in the optimization of a multilayer device stack. This...
Interface engineering and design is paramount in the optimization of a multilayer device stack. This...
Insufficient charge extraction at the interfaces between light-absorbing perovskites and charge tran...
In recent years, a huge success on photovoltaic and light emitting has been achieved in the field of...
Halide perovskite heterojunctions rationally integrate the chemical and physical properties of multi...
As perovskite solar cells (PSCs) are highly efficient, demonstration of high-performance printed dev...
Halide perovskites with low-dimensionalities (2D or quasi-2D) have demonstrated outstanding stabilit...
Dimensionally-engineered perovskite heterostructures are highly attractive, as recently shown to be ...
Two-dimensional (2D) metal halide perovskites can co-construct with the state-of-the-art three-dimen...
© 2022 American Chemical Society.Minimizing bulk and interfacial nonradiative recombination losses i...
The success of using 2D Ruddlesden Popper metal halide perovskites MHPs in optoelectronic devices ...
The addition of large hydrophobic cations to lead halide perovskites has significantly enhanced the ...
The continuous increase of energy demand and emission of greenhouse gases from the conventional foss...
Halide perovskites are emerging as valid alternatives to conventional photovoltaic active materials ...