Title of article
Microstructure and electrochemical properties of some synthetic carbons
Author/Authors
Suh ، نويسنده , , Min Chul and Jung، نويسنده , , Yongju and Kwak، نويسنده , , Juhyoun and Shim، نويسنده , , Sang Chul، نويسنده ,
Issue Information
دوماهنامه با شماره پیاپی سال 1999
Pages
10
From page
195
To page
204
Abstract
Four kinds of synthetic carbons were prepared by vacuum pyrolysis of black polyacene-based polymers: poly[(Z)-1-methoxy-4-phenyl-1-buten-3-yne]-750 [poly(MPB EY)-750], poly(1,4-diphenyl-1-buten-3-yne)-750 [poly(DPBEY)-750], poly[5-(2-pyridyl)-2,4-pentadiyn-1-ol]-800 [poly(PyPDO)-800], and poly(2,4-hexadiyn-1,6-diol)-800 (PHDO-800). The carbonization yields and electrochemical properties of carbons were dependent on precursor polymers. The relationship between the structure of synthetic carbons and electrochemical behavior was investigated by transmission electron microscopy (TEM), discharge/charge tests and cyclic voltammetry studies. Precursor polymers from enynes yielded synthetic carbons with many defect sites. Poly(DPBEY)-750, poly(PyPDO)-800, and PHDO-800 show smaller charge capacities than graphite (372 mA h/g), while a large charge capacity of 496 mA h/g is observed from poly(MPBEY)-750 in the first cycle. Poly(PyPDO)-800 displays very large capacity on cyclic voltammetry tests compared to other carbon samples indicating that the kinetics of lithium insertion/deinsertion in poly(PyPDO)-800 is faster than those of other carbons.
Keywords
Capacity , Pyrolysis , metathesis , Graphite-like pyropolymer , Lithium insertion
Journal title
Synthetic Metals
Serial Year
1999
Journal title
Synthetic Metals
Record number
2071991
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