A major goal of intercalation chemistry is to intercalate high densities of guest species without disrupting the host lattice. Many intercalant concentrations, however, are limited by the charge of the guest species. Here we have developed a general solution-based chemical method for intercalating extraordinarily high densities of zero-valent copper metal into layered Bi<sub>2</sub>Se<sub>3</sub> nanoribbons. Up to 60 atom % copper (Cu<sub>7.5</sub>Bi<sub>2</sub>Se<sub>3</sub>) can be intercalated with no disruption to the host lattice using a solution disproportionation redox reaction
Modern nanoscience has focused on two-dimensional (2D) layer structure materials which have garnered...
Tetrahedral transition metal chalcogenides (TTMCs), which have a common layered structural motif tha...
A new method of intercalating organic Lewis bases, alkali hydroxides, Cu and Ag metals in to Group V...
Intercalation of exotic atoms or molecules into the layered materials remains an extensively investi...
We demonstrate the complete tunability of a general strategy to intercalate zero-valent atoms into t...
We demonstrate the intercalation of multiple zero-valent atomic species into two-dimensional (2D) la...
Intercalation is a reversible insertion process of foreign species into crystal gaps. Layered materi...
The intercalation of silver atoms into the van der Waals gap of the prototypical three-dimensional t...
Altering the physical and chemical properties of a layered material through intercalation has emerge...
Intercalation of layered materials offers an effective approach for tunning their structures and gen...
Intercalation of lithium and ammonia into the layered semiconductor Bi2Se3 proceeds via a hyperexten...
The intercalation process of iron atoms in the interface between graphene and Ru(0001) was systemati...
Properties of many layered materials, including copper- and iron-based superconductors, topological ...
Recently, graphene oxide (GO) has been taken as a host for ultra-fast self-assembly of metal nanopar...
International audienceIntercalation of Cu into layered polychalcogenide La2O2S2 was demonstrated to ...
Modern nanoscience has focused on two-dimensional (2D) layer structure materials which have garnered...
Tetrahedral transition metal chalcogenides (TTMCs), which have a common layered structural motif tha...
A new method of intercalating organic Lewis bases, alkali hydroxides, Cu and Ag metals in to Group V...
Intercalation of exotic atoms or molecules into the layered materials remains an extensively investi...
We demonstrate the complete tunability of a general strategy to intercalate zero-valent atoms into t...
We demonstrate the intercalation of multiple zero-valent atomic species into two-dimensional (2D) la...
Intercalation is a reversible insertion process of foreign species into crystal gaps. Layered materi...
The intercalation of silver atoms into the van der Waals gap of the prototypical three-dimensional t...
Altering the physical and chemical properties of a layered material through intercalation has emerge...
Intercalation of layered materials offers an effective approach for tunning their structures and gen...
Intercalation of lithium and ammonia into the layered semiconductor Bi2Se3 proceeds via a hyperexten...
The intercalation process of iron atoms in the interface between graphene and Ru(0001) was systemati...
Properties of many layered materials, including copper- and iron-based superconductors, topological ...
Recently, graphene oxide (GO) has been taken as a host for ultra-fast self-assembly of metal nanopar...
International audienceIntercalation of Cu into layered polychalcogenide La2O2S2 was demonstrated to ...
Modern nanoscience has focused on two-dimensional (2D) layer structure materials which have garnered...
Tetrahedral transition metal chalcogenides (TTMCs), which have a common layered structural motif tha...
A new method of intercalating organic Lewis bases, alkali hydroxides, Cu and Ag metals in to Group V...