Aluminum antimony (AlSb) is a promising photovoltaic material with a band gap of about 1.62 eV. However, AlSb is highly deliquescent and not stable, which has brought great difficulties to the applications. Based on the above situation, there are two purposes for preparing our Zn-doped AlSb (AlSb:Zn) thin films: One is to make P-type AlSb and the other is to find a way to suppress the deliquescence of AlSb. The AlSb:Zn thin films were prepared on glass substrates at different substrate temperatures by using the pulsed laser deposition (PLD) method. The structural, surface morphological, optical, and electrical properties of AlSb:Zn films were investigated. The crystallization of AlSb:Zn thin films was enhanced and the electrical resistivity...
Atomic layer deposition (ALD) uses surface reactions of gaseous precursors to grow thin films of mat...
AbstractZinc sulphide (ZnS) buffer layers are a cadmium free, wider energy band gap, alternative to ...
AlSb and AlAs{sub x}Sb{sub 1{minus}x} epitaxial films grown by metal-organic chemical vapor depositi...
Zinc antimonide-based nanostructured thin films were produced by Pulsed Laser Deposition (PLD) using...
The pulsed laser deposition (PLD) technique was used to deposit CZTS thin films onto SLG/Mo substrat...
Abstract — In this study Aluminum Antimonide (AlSb) thin films were synthesized by electro-depositio...
The zinc antimonide compound Zn<sub><i>x</i></sub>Sb<sub><i>y</i></sub> is one of the most efficient...
Al-doped ZnO thin films have been prepared by a novel successive chemical solution deposition techni...
Semiconducting Zinc Sulphide (ZnS) thin films were deposited on glass substrate using relatively sim...
Al-doped ZnO thin films have been prepared by a novel successive chemical solution deposition techni...
Zinc antimonide (ZnSb) is a promising thermoelectric material for the temperature range 300-600 K. Z...
We report on the deposition of Al doped ZnO (AZO) thin films on unheated polyethylene terephthalate ...
Although solar energy is the most abundant energy resource available, photovoltaic solar cells must ...
AlSb thin films, showing semiconducting properties similar to those of massive material, have been o...
Thin film Cu(In,Ga)Se2 solar cells with ALD-deposited Zn1-xSnxOy buffer layers were fabricated and t...
Atomic layer deposition (ALD) uses surface reactions of gaseous precursors to grow thin films of mat...
AbstractZinc sulphide (ZnS) buffer layers are a cadmium free, wider energy band gap, alternative to ...
AlSb and AlAs{sub x}Sb{sub 1{minus}x} epitaxial films grown by metal-organic chemical vapor depositi...
Zinc antimonide-based nanostructured thin films were produced by Pulsed Laser Deposition (PLD) using...
The pulsed laser deposition (PLD) technique was used to deposit CZTS thin films onto SLG/Mo substrat...
Abstract — In this study Aluminum Antimonide (AlSb) thin films were synthesized by electro-depositio...
The zinc antimonide compound Zn<sub><i>x</i></sub>Sb<sub><i>y</i></sub> is one of the most efficient...
Al-doped ZnO thin films have been prepared by a novel successive chemical solution deposition techni...
Semiconducting Zinc Sulphide (ZnS) thin films were deposited on glass substrate using relatively sim...
Al-doped ZnO thin films have been prepared by a novel successive chemical solution deposition techni...
Zinc antimonide (ZnSb) is a promising thermoelectric material for the temperature range 300-600 K. Z...
We report on the deposition of Al doped ZnO (AZO) thin films on unheated polyethylene terephthalate ...
Although solar energy is the most abundant energy resource available, photovoltaic solar cells must ...
AlSb thin films, showing semiconducting properties similar to those of massive material, have been o...
Thin film Cu(In,Ga)Se2 solar cells with ALD-deposited Zn1-xSnxOy buffer layers were fabricated and t...
Atomic layer deposition (ALD) uses surface reactions of gaseous precursors to grow thin films of mat...
AbstractZinc sulphide (ZnS) buffer layers are a cadmium free, wider energy band gap, alternative to ...
AlSb and AlAs{sub x}Sb{sub 1{minus}x} epitaxial films grown by metal-organic chemical vapor depositi...