Cesium iodide (CsI) is a well-established scintillator material that also serves as a precursor for all-inorganic halide perovskite solar absorbers, such as CsPbI3. However, the lack of conformal and scalable methods to deposit halide perovskite thin films remains a major challenge on their way to commercialization. In this work, we employ atomic layer deposition (ALD) as the key method due to its inherent scalability to large areas and complex-shaped surfaces. We demonstrate two new ALD processes for the deposition of CsI and CsPbI3 thin films. The CsI process relies on cesium bis(trimethylsilyl) amide (Cs(btsa)) and tin(IV) iodide (SnI4) as precursors and yields high-purity, uniform, and phase-pure thin films. This process works in a wide...
The excellent optoelectronic properties demonstrated by hybrid organic/inorganic metal halide perovs...
\u3cp\u3eAtomic layer deposition is widely acknowledged as a powerful technique for the deposition o...
The fabrication of different functional layers by means of atomic layer deposition is proposed for t...
Cesium iodide (CsI) is a well-established scintillator material that also serves as a precursor for ...
Halide perovskites, such as CsSnI3, are materials renowned for their exceptional optoelectronic prop...
Atomic layer deposition (ALD) enables the deposition of numerous materials in thin film form, yet th...
Atomic layer deposition (ALD) is a viable method for depositing functional, passivating, and encapsu...
Atomic layer deposition offers outstanding film uniformity and conformality on substrates with high ...
A new method to deposit perovskite thin films that benefit from the thickness control and conformali...
Atomic layer deposition (ALD) enables the deposition of numerous materials in thin film form, yet th...
The presence of a nonoptically active polymorph (yellow-phase) competing with the optically active p...
Vacuum deposition is a simple and controllable approach that aims to form higher-quality perovskite ...
Assembling halide perovskites into layered structures holds promise for addressing chemical and phas...
In recent decades, more and more attention has been paid to solar energy because of the need to ensu...
The excellent optoelectronic properties demonstrated by hybrid organic/inorganic metal halide perovs...
\u3cp\u3eAtomic layer deposition is widely acknowledged as a powerful technique for the deposition o...
The fabrication of different functional layers by means of atomic layer deposition is proposed for t...
Cesium iodide (CsI) is a well-established scintillator material that also serves as a precursor for ...
Halide perovskites, such as CsSnI3, are materials renowned for their exceptional optoelectronic prop...
Atomic layer deposition (ALD) enables the deposition of numerous materials in thin film form, yet th...
Atomic layer deposition (ALD) is a viable method for depositing functional, passivating, and encapsu...
Atomic layer deposition offers outstanding film uniformity and conformality on substrates with high ...
A new method to deposit perovskite thin films that benefit from the thickness control and conformali...
Atomic layer deposition (ALD) enables the deposition of numerous materials in thin film form, yet th...
The presence of a nonoptically active polymorph (yellow-phase) competing with the optically active p...
Vacuum deposition is a simple and controllable approach that aims to form higher-quality perovskite ...
Assembling halide perovskites into layered structures holds promise for addressing chemical and phas...
In recent decades, more and more attention has been paid to solar energy because of the need to ensu...
The excellent optoelectronic properties demonstrated by hybrid organic/inorganic metal halide perovs...
\u3cp\u3eAtomic layer deposition is widely acknowledged as a powerful technique for the deposition o...
The fabrication of different functional layers by means of atomic layer deposition is proposed for t...