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SUN Yue, CHEN Li-cai, ZHANG Qing-fu, YANG Xiang-dong. Study on Process of Ionized Ti-cathode in Electrolysis with Light Wate[J]. Nuclear Physics Review, 2002, 19(Suppl): 113-117. doi: 10.11804/NuclPhysRev.19.S1.113
Citation: SUN Yue, CHEN Li-cai, ZHANG Qing-fu, YANG Xiang-dong. Study on Process of Ionized Ti-cathode in Electrolysis with Light Wate[J]. Nuclear Physics Review, 2002, 19(Suppl): 113-117. doi: 10.11804/NuclPhysRev.19.S1.113

Study on Process of Ionized Ti-cathode in Electrolysis with Light Wate

doi: 10.11804/NuclPhysRev.19.S1.113
  • Received Date: 1900-01-01
  • Rev Recd Date: 1900-01-01
  • Publish Date: 2002-07-20
  • By using open system consisted in electrolyte, NaOH, Ti-ca th ode and Pt-anode, the crystal structures and compositions of material of cathod e,α-Ti, were analyzed fore-and-aft electrolysis under very long period and s mall electric current density. The results showing that α-Ti, atomic crystal w ith face-center structure became TiH 2 , ionic crystal with cubic-center s tructure, and there were two parallel process after electrolysis: chemical adsor ption occured on the surface of...
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Study on Process of Ionized Ti-cathode in Electrolysis with Light Wate

doi: 10.11804/NuclPhysRev.19.S1.113

Abstract:  By using open system consisted in electrolyte, NaOH, Ti-ca th ode and Pt-anode, the crystal structures and compositions of material of cathod e,α-Ti, were analyzed fore-and-aft electrolysis under very long period and s mall electric current density. The results showing that α-Ti, atomic crystal w ith face-center structure became TiH 2 , ionic crystal with cubic-center s tructure, and there were two parallel process after electrolysis: chemical adsor ption occured on the surface of...

SUN Yue, CHEN Li-cai, ZHANG Qing-fu, YANG Xiang-dong. Study on Process of Ionized Ti-cathode in Electrolysis with Light Wate[J]. Nuclear Physics Review, 2002, 19(Suppl): 113-117. doi: 10.11804/NuclPhysRev.19.S1.113
Citation: SUN Yue, CHEN Li-cai, ZHANG Qing-fu, YANG Xiang-dong. Study on Process of Ionized Ti-cathode in Electrolysis with Light Wate[J]. Nuclear Physics Review, 2002, 19(Suppl): 113-117. doi: 10.11804/NuclPhysRev.19.S1.113

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