2019
DOI: 10.1016/j.apsusc.2019.04.191
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Effective strategy for improving infrared emissivity of Zn-Ni porous coating

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Cited by 14 publications
(1 citation statement)
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“…The bubbles can be separated rapidly from the electrode surface, which results in agitation of the electrolyte adjacent to gas‐liquid‐solid interface and hence can reduce the bubble size [7a] . Various other bimetallic porous network have also been synthesized using DHBT technique including CuNi, [58,62] CuSn, [63] CuAg, [64] CuRu [44] and a range of bimetallic networks containing Ni (NiAg, [65] NiSn, [17c] NiCo, [66] NiCu, [62a] NiMo, [67] NiZn [68] ), Pd (AgPd, [69] PdNi [49] ) and Pt (PtPd, [43,70] AuPt, [71] CuPt [72] ).…”
Section: Dynamic Bubbles Templating Electrochemical Depositionmentioning
confidence: 99%
“…The bubbles can be separated rapidly from the electrode surface, which results in agitation of the electrolyte adjacent to gas‐liquid‐solid interface and hence can reduce the bubble size [7a] . Various other bimetallic porous network have also been synthesized using DHBT technique including CuNi, [58,62] CuSn, [63] CuAg, [64] CuRu [44] and a range of bimetallic networks containing Ni (NiAg, [65] NiSn, [17c] NiCo, [66] NiCu, [62a] NiMo, [67] NiZn [68] ), Pd (AgPd, [69] PdNi [49] ) and Pt (PtPd, [43,70] AuPt, [71] CuPt [72] ).…”
Section: Dynamic Bubbles Templating Electrochemical Depositionmentioning
confidence: 99%