© 2019 American Chemical Society.Unzipping carbon nanotubes (CNTs) may offer a valuable route to synthesize graphene nanoribbon (GNR) structures with semiconducting properties. Unfortunately, currently available unzipping methods commonly rely on a random harsh chemical reaction and thereby cause significant degradation of the crystalline structure and electrical properties of GNRs. Herein, crystalline semiconducting GNRs are achieved by a synergistic, judiciously designed two-step unzipping method for N-doped CNTs (NCNTs). NCNTs are effectively unzipped by damage-minimized, dopant-specific electrochemical unzipping and subsequent sonochemical treatment into long ribbon-like nanostructures with crystalline basal planes. Owing to the nanosca...
Despite significant efforts to develop ways to produce customized carbon-based nanostructures, facil...
Despite significant efforts to develop ways to produce customized carbon-based nanostructures, facil...
© 2018 American Chemical Society. Unzipping multiwall carbon nanotubes (MWCNTs) attracted great inte...
We report a novel physicochemical route to produce highly crystalline nitrogen-doped graphene nanori...
We report a novel physicochemical route to produce highly crystalline nitrogen-doped graphene nanori...
Here we report a remarkable transformation of carbon nanotubes (CNTs) to nanoribbons composed of a f...
Here we report a remarkable transformation of carbon nanotubes (CNTs) to nanoribbons composed of a...
We describe a clean method of graphene nanoribbon (GNR) extraction from multiwall carbon nanotubes (...
We demonstrate a facile synthesis of different nanostructures by oxidative unzipping of stacked nitr...
Open, sesame! Graphene nanoribbons (GNRs) with smooth edges and controllable widths are crucial for ...
AbstractCarbon nanotubes (CNTs) have a well-defined nanostructure to exhibit high electrical conduct...
Chemical functionalization of the outer graphene layer of carbon nanotubes (CNT) has been increasing...
An easy and scalable approach is reported for the production of multi-layer graphene nanoribbons (GN...
Chemical functionalization of the outer graphene layer of carbon nanotubes (CNT) has been increasing...
Despite significant efforts to develop ways to produce customized carbon-based nanostructures, facil...
Despite significant efforts to develop ways to produce customized carbon-based nanostructures, facil...
Despite significant efforts to develop ways to produce customized carbon-based nanostructures, facil...
© 2018 American Chemical Society. Unzipping multiwall carbon nanotubes (MWCNTs) attracted great inte...
We report a novel physicochemical route to produce highly crystalline nitrogen-doped graphene nanori...
We report a novel physicochemical route to produce highly crystalline nitrogen-doped graphene nanori...
Here we report a remarkable transformation of carbon nanotubes (CNTs) to nanoribbons composed of a f...
Here we report a remarkable transformation of carbon nanotubes (CNTs) to nanoribbons composed of a...
We describe a clean method of graphene nanoribbon (GNR) extraction from multiwall carbon nanotubes (...
We demonstrate a facile synthesis of different nanostructures by oxidative unzipping of stacked nitr...
Open, sesame! Graphene nanoribbons (GNRs) with smooth edges and controllable widths are crucial for ...
AbstractCarbon nanotubes (CNTs) have a well-defined nanostructure to exhibit high electrical conduct...
Chemical functionalization of the outer graphene layer of carbon nanotubes (CNT) has been increasing...
An easy and scalable approach is reported for the production of multi-layer graphene nanoribbons (GN...
Chemical functionalization of the outer graphene layer of carbon nanotubes (CNT) has been increasing...
Despite significant efforts to develop ways to produce customized carbon-based nanostructures, facil...
Despite significant efforts to develop ways to produce customized carbon-based nanostructures, facil...
Despite significant efforts to develop ways to produce customized carbon-based nanostructures, facil...
© 2018 American Chemical Society. Unzipping multiwall carbon nanotubes (MWCNTs) attracted great inte...