A new method of intercalating organic Lewis bases, alkali hydroxides, Cu and Ag metals in to Group V layered dichalcogenide single crystals at room temperature is reported. It involves electrolytic reduction, in a suitable electrolysis cell, using the dichalcogenide as cathode and generation of the fresh intercalate species at the cathode surface. The organic intercalated complexes exhibit superconductivity like the parent dichalcogenides below 4.2°K
Intercalation is a reversible insertion process of foreign species into crystal gaps. Layered materi...
Organic molecule-intercalated layered iron-based monochalcogenides are presently the subject of inte...
After the isolation and discovery of the extraordinary properties of graphene, tremendous interest h...
The development of graphene and the nanotechnology revolution brought new interest in Layered transi...
Intercalation of layered materials offers an effective approach for tunning their structures and gen...
Layered materials consist of covalently bonded layers separated by van der Waals gaps. They have att...
Transition metal dichalcogenides (TMDs) are quasi-two-dimensional layered compounds that exhibit str...
Transition metal dichalcogenides (TMDs) are quasi-two-dimensional layered compounds that exhibit str...
Intercalation of alkali metals is widely studied to introduce a structural phase transition from 2H ...
Transition metal dichalcogenide (TMD) nanomaterials, especially the mono- or few-layer ones, have re...
International audienceIntercalation of alkali atoms within the lamellar transition metal dichalcogen...
Electrochemical method has been used to insert K/Na into FeSe lattice to prepare alkali-intercalated...
This thesis describes an investigation of the structural and some physical properties of a number of...
The crystalline phase of layered transition metal dichalcogenides (TMDs) directly determines their m...
The reactivity of two dimensional solids towards the intercalation process depends on factors such a...
Intercalation is a reversible insertion process of foreign species into crystal gaps. Layered materi...
Organic molecule-intercalated layered iron-based monochalcogenides are presently the subject of inte...
After the isolation and discovery of the extraordinary properties of graphene, tremendous interest h...
The development of graphene and the nanotechnology revolution brought new interest in Layered transi...
Intercalation of layered materials offers an effective approach for tunning their structures and gen...
Layered materials consist of covalently bonded layers separated by van der Waals gaps. They have att...
Transition metal dichalcogenides (TMDs) are quasi-two-dimensional layered compounds that exhibit str...
Transition metal dichalcogenides (TMDs) are quasi-two-dimensional layered compounds that exhibit str...
Intercalation of alkali metals is widely studied to introduce a structural phase transition from 2H ...
Transition metal dichalcogenide (TMD) nanomaterials, especially the mono- or few-layer ones, have re...
International audienceIntercalation of alkali atoms within the lamellar transition metal dichalcogen...
Electrochemical method has been used to insert K/Na into FeSe lattice to prepare alkali-intercalated...
This thesis describes an investigation of the structural and some physical properties of a number of...
The crystalline phase of layered transition metal dichalcogenides (TMDs) directly determines their m...
The reactivity of two dimensional solids towards the intercalation process depends on factors such a...
Intercalation is a reversible insertion process of foreign species into crystal gaps. Layered materi...
Organic molecule-intercalated layered iron-based monochalcogenides are presently the subject of inte...
After the isolation and discovery of the extraordinary properties of graphene, tremendous interest h...