Chem. J. Chinese Universities ›› 2000, Vol. 21 ›› Issue (1): 124.

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An ESR Investigation of the Intermediate Obtained from Oxidation of Sodium Hypophosphite in the Process of Electroless Nickel Deposition

KUANG Ya-Fei, WANG Mei-Yuan, LI Guo-Xi, HUANG Shu-Kun   

  1. College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, China
  • Received:1999-05-31 Online:2000-01-24 Published:2000-01-24

Abstract: The radical intermediate, which is produced in the process of electroless nickel plating, was detected in the presence of water-soluble trap α-4-pyridy1-N-tert-buty1 nitrone(POBN) or α-phenyl-tert-buty1 nitrone(PBN) by electron spin resonance(ESR) spectroscopy. The results obtained indicated that a 16-line(g=2.006 1, aβC—H=1.98×10-4 T, aγP—H=3.32×10-4 T, aN=aP=15.93×10-4 T) or a 18-line (g=2.004 9, aβC—H=aγP—H=2.38×10-4 T, aP=17.72×10-4 T, aN=16.20×10-4 T) ESR spectrum was observed in the process of electroless nickel plating when spin trap PBN or POBN was added. The spectra-line patterns and hyperfine coupling parameters were greatly indentical with those in the solution composed of Ti3+(0.01 mol/L)+H2O2(0.05 mol/L)+H2PO2-(0.01 mol/L)+POBN or PBN(0.01 mol/L). Therefore, the spin adducts formed in the process of electroless nickel plating could be ascribed to the adducts belonging to HPO2-· and POBN or PBN and it follows that the anion radical HPO2-·was really produced from the oxidation of sodium hypophosphite in the process of electroless nickel plating.

Key words: Anion radical HP2-·, Electroless nickel plating, ESR, Spin trapping technology

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