• Title/Summary/Keyword: Copper bromide (Cu(I)Br)

Search Result 3, Processing Time 0.019 seconds

A Two-dimensional Grid of Copper (I) Coordination Polymer: Preparation and Structure of Bromo(pyrazine)copper(I), [CuBr(pyz)] (2차원 격자 형태의 구리 배위 고분자: Bromo(pyrazine)copper(I), [CuBr(pyz)]의 합성 및 구조)

  • Baeg, Jee-Young;Kim, Han-Na;Lee, Yeon-Kyoung
    • Korean Journal of Crystallography
    • /
    • v.15 no.1
    • /
    • pp.5-8
    • /
    • 2004
  • The hydrothermal reaction of copper(I) bromide (CuBr) and pyrazine ($C_4H_4N_2$, pyz) gave a 2-D corrdination polymer [CuBr(pyz)] (1). X-ray structure determination revealed that polymer 1 has a 2-D network based on rectangular grids, each of which has the dimensions of 4.0${\times}$5.7 ${\AA}$. Polymer 1 has channels along the b-axis.

A Study on the Kinetics of Copper Ions Reduction and Deposition Morphology with the Rotating Disk Electrode (RDE를 이용한 구리이온의 환원속도 및 전착형태에 관한 고찰)

  • Nam, Sang Cheol;Um, Sung Hyun;Lee, Choong Young;Tak, Yongsug;Nam, Chong Woo
    • Applied Chemistry for Engineering
    • /
    • v.8 no.4
    • /
    • pp.645-652
    • /
    • 1997
  • Electrochemical characteristics and kinetic parameters of copper ion reduction were investigated with a platinum rotating disk electrode (RDE) in a diffusion controlled region. Reduction of Cu(II) in sulfate had one-step two-xelectron process, while the reduction of Cu(II) in chloride solution was involved two one-electron processes. The transfer coefficient of Cu(II) in sulfate solution was lowest, and the transfer coefficient of Cu(I) in halide solutions had the value of nearly one. In chloride solutions, electrodeposition rate of Cu(II) was about one hundred times faster than Cu(I). Diffusion coefficient increased in the order of Cu(II) in chloride solution, Cu(I) in the iodide, bromide, chloride solution, Cu(II) in sulfate solution. The calculated ionic radii and activation energy for diffusion decreased in the same order as above. Morphological study on the copper electrodeposition indicated that the electrode surface became rougher as both concentration and reduction potential increases, and the roughness of the surface was analyzed with UV/VIS spectrophotometer.

  • PDF