“In Spectra of the Oxides and Sulphides of Triarylophosphines and Triarvlarsines”, V. Baliah et al., J. Indian Chem. Soc., vol. 67, May 1990, pp. 430-431: “Synthesis and Solid-State Structures of Substituted Arylphosphine Oxides”. Craig M. Whitaker et al., J. Org. Chem. 1995. 60, 3499-3508; “Derivatives of Triphenylphosphine and Triphenylphosphine Oxide”. Allen E. Senear et al., J. Org. Chem. 1960. 25(10). pp. 2001-2006; “Synthesis and Characterization of Epoxy-Novolac Composite-Steel Adhesives”. M.B. Bump et al., Polymer Materials Science & Engineering. V83. 2000. pp. 19-2. |
“The Mass Spectra of Some paru Substituted Triarylphosphines and Triarylphoshphine Oxides”, G. Marshall. Organic Mass Spectrometry. vol. 16. No. 6, 1981, pp. 272-274; N-Phenyl-P,P,P-triarylphospha-25-azenes. Triaarylphosphines, and Triarylphosphine Oxides. Substituent Effects on 15N, 3IP, and 13C NMR Spectra, of W-N Chou et al., J. Org. Chem. 1991-56. pp. 2762-2769: “Synthesis and Characterization of Phosphine Oxide Diol Modified Epoxy Adhesives”, M.A. Hickner et al., Polymer Preprints 2000. 412). pp. 1372-1373. |
“Synthesis and Flammability of Copoly(isophthalamide)s, II. With Pendant Phosphorus Groups”, K.G. Gravalos. Journal of Polymer Science: Part A: Polymer Chemistry. vol. 31. 1993, pp. 1355-1364; “NMR Spectral Data: A Compilation of Aromatic Proton Chemical Shifts in Mono- and Di-Substituted Benzenes”, B.L. Shapiro et al., J. Phys. Chem. Ref. Data. vol. 6, No. 3, 1977, pp. 919-991: “Sn-Zn System Lead Free Solder Paste”, Japan Printed Circuit Association, Apr. 2001. pp. 1-18. |
“Phosphorus-Containing Epoxy for Flame Retardant. I. Synthesis. Thermal, and Flame-Retardant Properties”, V-L Lin et al., Journal of Applied Polymer Science, vol. 61, 1996, pp. 613-621: “Intumescent Fire Retardant Epoxy Resins”, G. Camino. Chemistry and Technology of Polymer Additives. Chapter 7, 1999. pp. 108-134; “Chemical Modification of Epoxy Resins by Dialkyl (or Aryl) Phosphates: Evaluation of Fire Behavior and Thermal Stability”, D. Derouet et al., Journal of Applied Polymer Science. vol. 62, 1996, pp. 1855-1868. |
“Syntheses, Structure, Reactivity, and Thermal Properties of New Cyclic Phosphine Oxide Epoxy Resins Cured by Diamines”, M-D Shau et al., Journal of Polymer Science: Part A: Polymer Chemistry, vol. 34, 1996, pp. 387-396; “Structure Characterization, Reactivity, and Thermal Properties of New Cyclic Phosphine Oxide Epoxy Resin Containing Tetra-Oxirane Rings”. M-D Shau et al., Journal of Applied Polymer Science, vol. 68, 1998, pp. 1397-1409. |
“Synthesis, Characterization, and Polymerization Reactions of Abx Triarylphospine Oxide Monomers”. E. Fossum, Polymer Preprints 2000, 41(1). pp. 200-201; “Self-extinguishing Epoxy Resins without Flame Retardants: Their Potential Use in Electronics”, Y. Kiuchi et al., The 12th Annual BCC Conference on Flame Retardancy, Recent Advances in Flame Retardancy of Polymeric Materials, May 21-23, 2001: “Synthesis, Characterization, Thermal and Flame Retardant Properties of Phosphate-Based Epoxy Resins”, Y-L Liu et al., John Wiley & Sons, Inc., 1997, pp. 565-574. |
“Copper-Clad Laminates for Use as Printed Circuit Boards”. M. Perry et al., Plastics and Resisn Compositions, Royal Society of Chemistry, 1995, pp. 74-79: “Nucleophotic Constants of Diphenyl P”, Teoreticheskeye I eksperimental'naya Khimiia, v. 3(6), 1967, pp. 824-829. |