1 |
Flame retardant effect of aluminum hypophosphite in heteroatom-containing polymers Savas LA, Hacioglu F, Hancer M, Dogan M Polymer Bulletin, 77(1), 291, 2020 |
2 |
Photo-electrochemical oxidation of hypophosphite and phosphorous recovery by UV/Fe2+/peroxydisulfate with electrochemical process Tian SC, Zhang ZH Chemical Engineering Journal, 359, 1075, 2019 |
3 |
Characteristics of electrodeposition of Ni and Ni-P alloys from methanesulfonate electrolytes Sknar YE, Savchuk OO, Sknar IV Applied Surface Science, 423, 340, 2017 |
4 |
Silica-supported Ni2P: Effect of preparation conditions on structure and catalytic performance in thiophene hydrodesulfurization (HDS) Lan XF, Hensen EJM, Weber T Catalysis Today, 292, 121, 2017 |
5 |
Ni2P/Al2O3 hydrodesulfurization catalysts prepared by separating the nickel compound and hypophosphite Li DP, Wang AJ, Liu CG, Prins R Catalysis Today, 292, 133, 2017 |
6 |
Solid-liquid phase equilibria of (Mg(H2PO2)(2) + H2O), (Mg(H2PO2)(2) + NaH2PO2 + H2O) and (Mg(H2PO2)(2) + MgCl2 + H2O) systems Gao SZ, Shi XY, Yin JN, Wan ZY, Zhou H, Li GB Fluid Phase Equilibria, 411, 7, 2016 |
7 |
Highly-active nickel phosphide hydrotreating catalysts prepared in situ using nickel hypophosphite precursors d'Aquino AI, Danforth SJ, Clinkingbeard TR, Ilic B, Pullan L, Reynolds MA, Murray BD, Bussell ME Journal of Catalysis, 335, 204, 2016 |
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(Solid plus liquid) phase equilibria of (Ca(H2PO2)(2) + CaCl2 + H2O) and (Ca(H2PO2)(2) + NaH2PO2 + H2O) ternary systems at T=323.15 K Cao HY, Zhou H, Bai XQ, Ma RX, Tan LN, Wang JM Journal of Chemical Thermodynamics, 93, 255, 2016 |
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Solid-liquid phase equilibria of Ca(H2PO2)(2)-CaCl2-H2O and Ca(H2PO2)(2)-NaH2PO2-H2O ternary systems at 298.15 K Tan LN, Wang JM, Zhou H, Wang LH, Wang P, Bai XQ Fluid Phase Equilibria, 388, 66, 2015 |
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Aluminum hypophosphite microencapsulated to improve its safety and application to flame retardant polyamide 6 Ge H, Tang G, Hu WZ, Wang BB, Pan Y, Song L, Hu Y Journal of Hazardous Materials, 294, 186, 2015 |