Interface-enhanced Li ion conduction in a LiBH4-SiO2 solid electrolyte

Authors
Choi, Yong SeokLee, Young-SuOh, Kyu HwanCho, Young Whan
Issue Date
2016-08-28
Publisher
ROYAL SOC CHEMISTRY
Citation
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, v.18, no.32, pp.22540 - 22547
Abstract
We have developed a fast solid state Li ion conductor composed of LiBH4 and SiO2 by means of interface engineering. A composite of LiBH4-SiO2 was simply synthesized by high energy ball-milling, and two types of SiO2 (MCM-41 and fumed silica) having different specific surface areas were used to evaluate the effect of the LiBH4/SiO2 interface on the ionic conductivity enhancement. The ionic conductivity of the ball-milled LiBH4-MCM-41 and LiBH4-fumed silica mixture is as high as 10(-5) S cm(-1) and 10(-4) S cm(-1) at room temperature, respectively. In particular, the conductivity of the latter is comparable to the LiBH4 melt-infiltrated into MCM-41. The conductivities of the LiBH4-fumed silica mixtures at different mixing ratios were analyzed employing a continuum percolation model, and the conductivity of the LiBH4/SiO2 interface layer is estimated to be 10(5) times higher than that of pure bulk LiBH4. The result highlights the importance of the interface and indicates that significant enhancement in ionic conductivity can be achieved via interface engineering.
Keywords
NANOCONFINED LIBH4; LITHIUM BATTERIES; ELECTRICAL-CONDUCTIVITY; PERCOLATION THEORY; HYDROGEN RELEASE; LIBH4-CA(BH4)(2); COMPOSITES; OXIDES; MODEL; NMR; NANOCONFINED LIBH4; LITHIUM BATTERIES; ELECTRICAL-CONDUCTIVITY; PERCOLATION THEORY; HYDROGEN RELEASE; LIBH4-CA(BH4)(2); COMPOSITES; OXIDES; MODEL; NMR; Lithium borohydride; Percolation; Silica; Solid electrolyte; Ionic conductivity; Interface
ISSN
1463-9076
URI
https://pubs.kist.re.kr/handle/201004/123771
DOI
10.1039/c6cp03563a
Appears in Collections:
KIST Article > 2016
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