2008
DOI: 10.1016/j.jallcom.2007.11.120
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Hydrogenation properties and microstructure of Ti–Mn-based alloys for hybrid hydrogen storage vessel

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Cited by 40 publications
(27 citation statements)
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“…Those alloys consisted of the C14 Laves phase, the BCC phase, and the minor phase of FCC. The FCC phase corresponded to oxide of Ti-V-Mn as mentioned in the latest report [4]. In the similar case, (Zr 0.75 Ti 0.25 ) 3 (MnV) 3 O of the -carbide type oxide A 3 B 3 O precipitated in as-cast of Zr 0.75 Ti 0.25 MnV alloy has been reported by Hout et al [17].…”
Section: Resultssupporting
confidence: 76%
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“…Those alloys consisted of the C14 Laves phase, the BCC phase, and the minor phase of FCC. The FCC phase corresponded to oxide of Ti-V-Mn as mentioned in the latest report [4]. In the similar case, (Zr 0.75 Ti 0.25 ) 3 (MnV) 3 O of the -carbide type oxide A 3 B 3 O precipitated in as-cast of Zr 0.75 Ti 0.25 MnV alloy has been reported by Hout et al [17].…”
Section: Resultssupporting
confidence: 76%
“…1 [4,5,[11][12][13][14]. Among the Ti-V-Mn alloys, a Ti0.5V0.5Mn alloy showed the excellent effective hydrogen capacity and the suitable hydrogen equilibrium pressure for using in a hybrid hydrogen storage ves- sel [4]. The hydrogen absorption/desorption pressures were in the ranges of 0.6-1.0 MPa/0.2-0.4 MPa at 243 K. The hydrogen capacity was 1.8 wt% at 243 K and did not saturated under H 2 of 7 MPa.…”
Section: Resultsmentioning
confidence: 99%
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“…BCC alloys of systems Ti-V-Mn and Ti-V-Cr have been intensively studied for hydrogen storage [37][38][39][40][41][42]. They could also be used as catalyst for magnesium [43].…”
Section: Ti-based Bccmentioning
confidence: 99%