Metal segregation in bimetallic clusters and its possible role in synergism and bifunctional catalysis
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry
Reference104 articles.
1. Cluster synthesis. 35. On the way to high-nuclearity platinum-osmium cluster complexes. Synthesis and structural characterizations of Pt2Os3(CO)9(COD)2(.mu.-H)2 and Pt4Os6(CO)21(COD)(.mu.-H)2 (COD = cycloocta-1,5-diene)
2. Cluster synthesis. 38. Formation of high-nuclearity platinum-osmium cluster complexes. Synthesis, structural characterizations, and interrelationships of Pt4Os6(CO)22(COD), Pt5Os6(CO)21(COD)2, Pt4Os6(CO)19(COD)2, and Pt7Os6(CO)21(COD)2, (COD = cycloocta-1,5-diene)
3. High-nuclearity platinum-osmium alloy cluster complexes. Synthesis and structural characterizations of Pt4Os6(CO)22(COD) and Pt5Os6(CO)21(COD)2
4. Cluster synthesis. 40. New high-nuclearity platinum-ruthenium carbonyl cluster complexes. Synthesis and structural characterizations of Ru8Pt2(CO)23(.mu.3-H)2, Ru7Pt3(CO)22(.mu.3-H)2, and Ru8Pt2(CO)21(.mu.3-.eta.2-CO)2(dppe)(.mu.-H)2 with a new type of triply bridging CO ligand and a new layered cluster complex Ru6Pt3(CO)21(.mu.-CO)(.mu.3-H)2
5. Cluster synthesis. 39. New platinum-ruthenium carbonyl cluster complexes with bridging hydride ligands. Synthesis and structural characterizations of Ru4Pt(CO)13(COD)(.mu.-H)2, Ru3Pt(CO)9(.mu.-CO)(COD)(.mu.-H)2, Ru4Pt2(CO)11(COD)2(.mu.3-H)2, and Ru5Pt5(CO)18(COD)2(.mu.-H)2 (COD = cycloocta-1,5-diene)
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