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Chemicals, plastics and rubber industries

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A novel approach to prepare poly(3,4-ethylenedioxythiophene) nanoribbons between V2O5 layers by microwave irradiation

Article Abstract:

Microwave-assisted preparation of PEDOT/V2O5 nanocomposites are studied and the usefulness of the hybrid material as a high-energy-density cathode for lithium batteries are demonstrated in comparison with pristine V2O5. The method of rapid synthesis of efficient hybrid materials for rechargeable lithium batteries using microwave irradiation could be extended to other similar systems, providing new opportunities and challenges in the field of microwave synthesis.

Author: Vijayamohanan, K., Gopinath, Chinnakonda S., Murugan, A. Vadivel, Kwon, C. W., Campet, G., Kale, B. B., Mandale, A. B., Sainker, S. R.
Publisher: American Chemical Society
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2004
Usage, Irradiation, Radiation chemistry, Irradiation (Radiation exposure)

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High rate reversibility anode materials of lithium batteries from vapor-grown carbon nanofibers

Article Abstract:

The high-rate capability of lithium ion insertion-reinsertion reactions in carbon nanofibers was demonstrated. The morphology of carbon nanofibers with structural and surface defects, due to the mixed features of disordered and graphical carbon, plays an important role in both the enhancement of the lithium ion storage and the rate determination reactions during the topotactic process.

Author: Bingqing Wei, Subramanian, V., Hongwei Zhu
Publisher: American Chemical Society
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2006
TEXTILE MILL PRODUCTS, Textile Mills, Fibers, Fibres, Anodes

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High-resolution (super 7)Li solid-state NMR study of Li(sub x)V(sub 2)O(sub 5) cathode electrodes for Li-rechargeable batteries

Article Abstract:

Electronic environments of Li(sub x)V(sub 2)O(sub 5) cathodes from Li-rechargeable battery cells at charged, discharged and over cycled states are studied. The mechanism of the capacity degradation of the battery is discussed.

Author: Riqiang Fu, Chaohui Ye, Zhiru Ma, Jim P. Zheng, G.Au, Plichta, E.J.
Publisher: American Chemical Society
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2003
Analysis, Nuclear magnetic resonance, Chemistry, Physical and theoretical, Physical chemistry

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Subjects list: Research, Electric properties, Lithium cells, Lithium batteries
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