We compare electrochemically modified or thiol-functionalized single-crystal samples of the topological insulator (TI) Bi2Te0.9Se2.1 to freshly cleaved/air-exposed control samples and use X-ray photoelectron spectroscopy (XPS) to investigate the extent of any surface oxidation. XPS spectra for a TI sample maintained at an appropriate potential for 2 h demonstrate the feasibility of protecting the TI surface from oxidation while working in an electrochemical environment. Deliberate electrochemical oxidation, in contrast, generates prominent Bi, Te, and Se peaks associated with oxidation. However, this change is reversible, as further XPS spectra following electrochemical reduction are similar to those measured for an in situ cleaved sample. ...
Recently, in 2007, a new electronic phase was discovered – termed as Topological Insulator (TI) – a ...
We report a systematic study of bulk and surface chemical doping effects on single Dirac cone topolo...
This dissertation seeks to understand the novel physical properties of a new class of materials call...
We compare electrochemically modified or thiol-functionalized single-crystal samples of the topologi...
We use electrochemical scanning tunneling microscopy (EC-STM) to image single-crystal surfaces of th...
Surface Oxidation of Bi<sub>2</sub>(Te,Se)<sub>3</sub> Topological Insulators Depends on Cleavage Ac...
We investigated the effect of surface oxides on charge transport properties in a topological insulat...
The long term stability of functional properties of topological insulator materials is crucial for ...
Charge transport in topological insulators is notably influenced by moisture and air in the surround...
The long-term stability of functional properties of topological insulator materials is crucial for t...
Bismuth selenide (Bi(2)Se(3)) is a topological insulator with metallic surface states (SS) residing ...
The stability of the surface of vacuum-cleaved topological insulator Bi2Se3 single crystals is inves...
We investigated the topological insulator (TI) Bi2Te3 in four different environments (ambient, ultra...
Topological insulators possess time reversal symmetry protected metallic surface states over the ins...
Materials that are topological insulators (TI) manifest a novel state for their electrons. They poss...
Recently, in 2007, a new electronic phase was discovered – termed as Topological Insulator (TI) – a ...
We report a systematic study of bulk and surface chemical doping effects on single Dirac cone topolo...
This dissertation seeks to understand the novel physical properties of a new class of materials call...
We compare electrochemically modified or thiol-functionalized single-crystal samples of the topologi...
We use electrochemical scanning tunneling microscopy (EC-STM) to image single-crystal surfaces of th...
Surface Oxidation of Bi<sub>2</sub>(Te,Se)<sub>3</sub> Topological Insulators Depends on Cleavage Ac...
We investigated the effect of surface oxides on charge transport properties in a topological insulat...
The long term stability of functional properties of topological insulator materials is crucial for ...
Charge transport in topological insulators is notably influenced by moisture and air in the surround...
The long-term stability of functional properties of topological insulator materials is crucial for t...
Bismuth selenide (Bi(2)Se(3)) is a topological insulator with metallic surface states (SS) residing ...
The stability of the surface of vacuum-cleaved topological insulator Bi2Se3 single crystals is inves...
We investigated the topological insulator (TI) Bi2Te3 in four different environments (ambient, ultra...
Topological insulators possess time reversal symmetry protected metallic surface states over the ins...
Materials that are topological insulators (TI) manifest a novel state for their electrons. They poss...
Recently, in 2007, a new electronic phase was discovered – termed as Topological Insulator (TI) – a ...
We report a systematic study of bulk and surface chemical doping effects on single Dirac cone topolo...
This dissertation seeks to understand the novel physical properties of a new class of materials call...