Transparent conductors (TCs) are materials, which are characterized by high transmission of light and simultaneously very high electrical DC conductivity. These materials play a crucial role, and made possible numerous applications in the fields of electro-optics, plasmonics, biosensing, medicine, and “green energy”. Modern applications, for example in the field of touchscreen and flexible displays, require that TCs are also mechanically strong and flexible. TC can be broadly classified into two categories: uniform and non-uniform TC. The uniform TC can be viewed as conventional metals (or electron plasmas) with plasma frequency located in the infrared frequency range (e.g. transparent conducting oxides), or ultra-thin metals with large pla...
Recently, two-dimensional (2D) nanomaterials have received huge attention because of their attractiv...
As the race for the development of novel Transparent Conducting Materials (TCMs) compatible with a n...
With the development of new generations of optoelectronic devices that combine high performance and ...
Transparent conductors (TCs) are materials, which are characterized by high transmission of light an...
Transparent conductors are important as the top electrode for a variety of optoelectronic devices, i...
There have been efforts to develop alternative transparent conductors to replace indium tin oxide (I...
Although transparent conductive oxides such as indium tin oxide (ITO) are widely employed as transpa...
International audienceTransparent electrodes (TEs) are pivotal components in many modern devices suc...
Transparent conducting electrodes (TCEs) require high transparency and low sheet resistance for appl...
AbstractNovel types of Transparent Conductive Materials (TCMs) based on metal nanostructures are dis...
Transparent electrodes (TE) constitute a key component of optoelectronic devices such as solar cells...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
Transparent conducting materials (TCMs) are essential components for a variety of optoelectronic dev...
Since product life cycles of displays become shorter the electronic industry is seeking for the usag...
The increasing demand for optoelectronic applications coupled with novel areas of their application ...
Recently, two-dimensional (2D) nanomaterials have received huge attention because of their attractiv...
As the race for the development of novel Transparent Conducting Materials (TCMs) compatible with a n...
With the development of new generations of optoelectronic devices that combine high performance and ...
Transparent conductors (TCs) are materials, which are characterized by high transmission of light an...
Transparent conductors are important as the top electrode for a variety of optoelectronic devices, i...
There have been efforts to develop alternative transparent conductors to replace indium tin oxide (I...
Although transparent conductive oxides such as indium tin oxide (ITO) are widely employed as transpa...
International audienceTransparent electrodes (TEs) are pivotal components in many modern devices suc...
Transparent conducting electrodes (TCEs) require high transparency and low sheet resistance for appl...
AbstractNovel types of Transparent Conductive Materials (TCMs) based on metal nanostructures are dis...
Transparent electrodes (TE) constitute a key component of optoelectronic devices such as solar cells...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
Transparent conducting materials (TCMs) are essential components for a variety of optoelectronic dev...
Since product life cycles of displays become shorter the electronic industry is seeking for the usag...
The increasing demand for optoelectronic applications coupled with novel areas of their application ...
Recently, two-dimensional (2D) nanomaterials have received huge attention because of their attractiv...
As the race for the development of novel Transparent Conducting Materials (TCMs) compatible with a n...
With the development of new generations of optoelectronic devices that combine high performance and ...