Conclusions
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1.
New catalysts, Pd-Sn compounds, were synthesized and fixed to macroporous anion exchangers. They are active in hydrogenation and isomerization reactions of 1-hexene.
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2.
The catalytic properties of the Pd-Sn systems depends on the structure of the fixed compound (cluster, complex), the nature and state of the exchanger functional groups (Cl-or OH-form), and the reaction conditions (pH, PH2).
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3.
The cluster [Pd4(SnCl2)2(SnCl3)8]5− on the highly basic anion exchanger AV-17-2P (Cl-form) catalyzes mainly the hydrogenation reaction, while the complex [Pd(SnCl3)4]2− catalyzes the isomerization reaction.
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4.
The complex [Pd(SnCl3 4)]2−, fixed to the weakly basic anion exchanger AN-221 (OH-form), is active in the isomerization and hydrogenation of 1-hexene under mild conditions.
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Translated from Izvestiya Akademii Nauk SSSR, Seriya Khimicheskaya, No. 4, pp. 773–776, April, 1989.
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Sharf, V.Z., Panfilova, L.D., Borunova, N.V. et al. Study of the catalytic activity of metal complexes fixed on solid supports. 7. Synthesis of Pd-Sn complexes attached to macroporous anion exchangers and study of their activity in the hydrogenation of 1-hexene. Russ Chem Bull 38, 695–698 (1989). https://doi.org/10.1007/BF00953271
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DOI: https://doi.org/10.1007/BF00953271