2006
DOI: 10.1016/j.mee.2006.10.036
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Properties of 50nm electroless films Ag–W–oxygen before and after low temperature, low activation energy resistivity decay

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Cited by 5 publications
(2 citation statements)
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“…Now that tungsten(VI) is not deposited via the reduction, but being "carried" as discussed above, we attempt to propose an analogous doping mode that the incorporation of W element may occur during silver deposition through chemisorption-chemical bonding of oxygen atoms of tungstate dimer with silver, as described in Figure 5. 29,30 has primarily proved this conclusion. They reported that co-segregation of W and oxygen during electroless deposition at the grain/cluster of grain interfaces was non-metallic phases (Ag 2 W 2 O 7 ) rather than WO 3 polymorphs, and the phase of AgO was present in Ag-O-W films.…”
Section: Possible Doping Mode Of Wmentioning
confidence: 78%
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“…Now that tungsten(VI) is not deposited via the reduction, but being "carried" as discussed above, we attempt to propose an analogous doping mode that the incorporation of W element may occur during silver deposition through chemisorption-chemical bonding of oxygen atoms of tungstate dimer with silver, as described in Figure 5. 29,30 has primarily proved this conclusion. They reported that co-segregation of W and oxygen during electroless deposition at the grain/cluster of grain interfaces was non-metallic phases (Ag 2 W 2 O 7 ) rather than WO 3 polymorphs, and the phase of AgO was present in Ag-O-W films.…”
Section: Possible Doping Mode Of Wmentioning
confidence: 78%
“…(2) More importantly, in a silver-tungsten binary system, the obtained tungsten phase is tungsten oxide rather than tungsten metal. 29,30 In addition, with only several percent content of tungsten in a silver-tungsten binary composition, however, the content in iron-group and tungsten alloys can amount to twenty percents.…”
Section: Possible Doping Mode Of Wmentioning
confidence: 99%