The combination of oxide and heavier chalcogenide layers in thin film photovoltaics suffers limitations associated with oxygen incorporation and sulfur deficiency in the chalcogenide layer or with a chemical incompatibility which results in dewetting issues and defect states at the interface. Here, we establish atomic layer deposition (ALD) as a tool to overcome these limitations. ALD allows one to obtain highly pure Sb2S3 light absorber layers, and we exploit this technique to generate an additional interfacial layer consisting of 1.5 nm ZnS. This ultrathin layer simultaneously resolves dewetting and passivates defect states at the interface. We demonstrate via transient absorption spectroscopy that interfacial electron recombination is on...
The sharpness of interfaces in multilayer metal–sulfide thin films synthesized by atomic layer depos...
The initial kinetics and mechanisms of photo-induced charge transfer in photovoltaic materials are c...
In perovskite solar cells, the interfaces between the perovskite and charge-transporting layers cont...
The combination of oxide and heavier chalcogenide layers in thin film photovoltaics suffers limitati...
The combination of oxide and heavier chalcogenide layers in thin film photovoltaics suffers limitati...
Antimony chalcogenides represent a family of materials of low toxicity and relative abundance, with ...
Antimony chalcogenides represent a family of materials of low toxicity and relative abundance, with ...
Solid-state dye-sensitized solar cell (ssDSCs) is an emerging technology with the potential to surpa...
Emerging photovoltaics describe the latest class of solar cells designed to satisfy mankind’s need f...
Tin monosulfide can be grown in cubic (π-SnS) and orthorhombic (α-SnS) polymorphs by low-temperature...
Tin monosulfide can be grown in cubic (pi-SnS) and orthorhombic (alpha-SnS) polymorphs by low-temper...
Tin monosulfide can be grown in cubic (pi-SnS) and orthorhombic (alpha-SnS) polymorphs by low-temper...
Tin monosulfide can be grown in cubic (pi-SnS) and orthorhombic (alpha-SnS) polymorphs by low-temper...
Tin monosulfide can be grown in cubic (pi-SnS) and orthorhombic (alpha-SnS) polymorphs by low-temper...
Kesterite Cu2ZnSnS4 (CZTS) photovoltaics have been comprehensively investigated in the past decades ...
The sharpness of interfaces in multilayer metal–sulfide thin films synthesized by atomic layer depos...
The initial kinetics and mechanisms of photo-induced charge transfer in photovoltaic materials are c...
In perovskite solar cells, the interfaces between the perovskite and charge-transporting layers cont...
The combination of oxide and heavier chalcogenide layers in thin film photovoltaics suffers limitati...
The combination of oxide and heavier chalcogenide layers in thin film photovoltaics suffers limitati...
Antimony chalcogenides represent a family of materials of low toxicity and relative abundance, with ...
Antimony chalcogenides represent a family of materials of low toxicity and relative abundance, with ...
Solid-state dye-sensitized solar cell (ssDSCs) is an emerging technology with the potential to surpa...
Emerging photovoltaics describe the latest class of solar cells designed to satisfy mankind’s need f...
Tin monosulfide can be grown in cubic (π-SnS) and orthorhombic (α-SnS) polymorphs by low-temperature...
Tin monosulfide can be grown in cubic (pi-SnS) and orthorhombic (alpha-SnS) polymorphs by low-temper...
Tin monosulfide can be grown in cubic (pi-SnS) and orthorhombic (alpha-SnS) polymorphs by low-temper...
Tin monosulfide can be grown in cubic (pi-SnS) and orthorhombic (alpha-SnS) polymorphs by low-temper...
Tin monosulfide can be grown in cubic (pi-SnS) and orthorhombic (alpha-SnS) polymorphs by low-temper...
Kesterite Cu2ZnSnS4 (CZTS) photovoltaics have been comprehensively investigated in the past decades ...
The sharpness of interfaces in multilayer metal–sulfide thin films synthesized by atomic layer depos...
The initial kinetics and mechanisms of photo-induced charge transfer in photovoltaic materials are c...
In perovskite solar cells, the interfaces between the perovskite and charge-transporting layers cont...