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B. Gao

Researcher at University of North Carolina at Chapel Hill

Publications -  6
Citations -  806

B. Gao is an academic researcher from University of North Carolina at Chapel Hill. The author has contributed to research in topics: Carbon nanotube & Intercalation (chemistry). The author has an hindex of 6, co-authored 6 publications receiving 778 citations. Previous affiliations of B. Gao include North Carolina State University.

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Lithium intercalation into opened single-wall carbon nanotubes: storage capacity and electronic properties.

TL;DR: The effects of structure and morphology on lithium storage in single-wall carbon nanotube (SWNT) bundles were studied by electrochemistry and nuclear magnetic resonance techniques and the reversible Li storage capacity increased from LiC(6) in close-end SWNTs toLiC(3) after etching, which is twice the value observed in intercalated graphite.
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Enhanced saturation lithium composition in ball-milled single-walled carbon nanotubes

TL;DR: In this paper, the effects of processing on the structure and morphology of single-walled carbon nanotubes (SWNT) and their electrochemical intercalation with lithium were investigated.
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Assembly of 1D Nanostructures into Sub‐micrometer Diameter Fibrils with Controlled and Variable Length by Dielectrophoresis

TL;DR: In this paper, a dielectrophoresis method was proposed to manipulate, align, and assemble 1D nanostructures using alternating current (AC) electric field, where pre-formed CNTs dispersed in water are assembled into microelectrodes and sub-microme-ter diameter fibrils with variable lengths from ~ 1 lm to over 1 cm.
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Lithium intercalation into etched single-wall carbon nanotubes

TL;DR: In this article, the effects of structure and morphology on lithium storage in single-wall carbon nanotubes (SWNTs) were studied by electrochemistry, and the SWNTs were chemically etched and were intercalated with Li.
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Structure and electrochemical properties of carbon nanotube intercalation compounds

TL;DR: In this paper, the current status of carbon nanotube intercalation compounds is summarized, focusing on the structure and electrochemical properties of intercalated single-walled carbon Nanotubes (SWNTs).