In this study we present a three-step process for the low-temperature chemical bath deposition of crystalline ZnO films on glass substrates. The process consists of a seeding step followed by two chemical bath deposition steps. In the second step (the first of the two bath deposition steps), a natural polysaccharide, namely hyaluronic acid, is used to manipulate the morphology of the films. Previous experiments revealed a strong influence of this polysaccharide on the formation of zinc oxide crystallites. The present work aims to transfer this gained knowledge to the formation of zinc oxide films. The influence of hyaluronic acid and the time of its addition on the morphology of the resulting ZnO film were investigated. By meticulous adjust...
Chemical bath deposition of ZnO thin films using six different complexing agents, namely ammonia, hy...
Zinc oxide (ZnO) thin films were grown on glass and copper substrates by the Successive Ionic ...
The zinc oxide (ZnO) thin films were deposited onto the glass substrates by a novel chemical method,...
In this study we present a three-step process for the low-temperature chemical bath deposition of cr...
A chemical bath deposition (CBD) technique was utilized in the synthesis of the Zinc oxide (ZnO) thi...
In this study we investigated the influence of an organic polystyrene brush on the deposition of ZnO...
Nanostructured zinc oxide synthesized using an easy and low temperature chemical bath deposition met...
Chemical Bath Deposition (CBD) is a simple aqueous solution and easy and reproducible method employe...
Zinc oxide films derived from drop-coating solutions of zinc acetate in ethanol followed by chemical...
Advances in nanotechnology is strongly dependent on research innovative nanostructured materials in ...
Zinc oxide thin films have been deposited onto glass substrates from zinc sulfate, ammonia and thiou...
In this work, spindle/flower-like zinc oxide (ZnO) nanostructured arrays have been directly grown on...
Among semiconductors, zinc oxide (ZnO) has received great attention due to its wide band-gap and hig...
Chemical bath deposition of ZnO thin films using six different complexing agents, namely ammonia, hy...
In this study, the chemical bath deposition (CBD) method was used to deposit a ZnO membrane on an in...
Chemical bath deposition of ZnO thin films using six different complexing agents, namely ammonia, hy...
Zinc oxide (ZnO) thin films were grown on glass and copper substrates by the Successive Ionic ...
The zinc oxide (ZnO) thin films were deposited onto the glass substrates by a novel chemical method,...
In this study we present a three-step process for the low-temperature chemical bath deposition of cr...
A chemical bath deposition (CBD) technique was utilized in the synthesis of the Zinc oxide (ZnO) thi...
In this study we investigated the influence of an organic polystyrene brush on the deposition of ZnO...
Nanostructured zinc oxide synthesized using an easy and low temperature chemical bath deposition met...
Chemical Bath Deposition (CBD) is a simple aqueous solution and easy and reproducible method employe...
Zinc oxide films derived from drop-coating solutions of zinc acetate in ethanol followed by chemical...
Advances in nanotechnology is strongly dependent on research innovative nanostructured materials in ...
Zinc oxide thin films have been deposited onto glass substrates from zinc sulfate, ammonia and thiou...
In this work, spindle/flower-like zinc oxide (ZnO) nanostructured arrays have been directly grown on...
Among semiconductors, zinc oxide (ZnO) has received great attention due to its wide band-gap and hig...
Chemical bath deposition of ZnO thin films using six different complexing agents, namely ammonia, hy...
In this study, the chemical bath deposition (CBD) method was used to deposit a ZnO membrane on an in...
Chemical bath deposition of ZnO thin films using six different complexing agents, namely ammonia, hy...
Zinc oxide (ZnO) thin films were grown on glass and copper substrates by the Successive Ionic ...
The zinc oxide (ZnO) thin films were deposited onto the glass substrates by a novel chemical method,...