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Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical Transactions A Volume 368(1915):1455-1472 March 28, 2010 ©2010 by The Royal Society

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Page 1: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents

by Daniel G. MacDonald, and John F. Corrigan

Philosophical Transactions AVolume 368(1915):1455-1472

March 28, 2010

©2010 by The Royal Society

Page 2: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Common coordination modes of chalcogenide (E2−) ligands.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 3: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [Cd10Te4(SePh)12(PPr2Ph)4]: black, Cd; light grey, Te; medium grey, Se; small grey spheres, C, P.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 4: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [Cu72Se14(SPh)36(OAc)8(PPh3)6]: black, Cu; light grey, Se; medium grey, S; small grey spheres, C, O and P.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 5: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [Cu22Se6(S-p-C6H4NO2)10(PPh3)8]: black, Cu; light grey, Se; medium grey, S; small grey spheres, C, O, P. NO2 on phenyl rings emphasized for clarity.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 6: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [Ag76Se13(S-p-C6H4NMe2)50(PPh3)6.5]: black, Cu; light grey, Se; medium grey, S; small grey spheres, C, O, P. NMe2 on phenyl rings emphasized for clarity.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 7: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [nBuSn(O)OC(O)(C5H4)Fe(C5H5)]6: black, Sn; light grey, O; medium grey, Fe; small grey spheres, C.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 8: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [Sn8O4(Fe(C5H5(O)CO)2)6]: black, Sn; light grey, O; medium grey, Fe; small grey spheres, C.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 9: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structures of (a) [Cu4(μ2-FcSe2)2(PnPr3)4], (b) [Cu8(μ2-FcSe2)4(PPh2Et)4] and (c) [Cu4(μ2-Se{O}CFc)4(PPh3)4]: black, Cu; light grey, Se; medium grey, Fe; small grey spheres C,

P.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 10: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [Ag4(FcSe2)3]2−: black, Ag; light grey, Se; medium grey, Fe; small grey spheres C.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 11: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of (a) [Ag8(Se2Fc)4(PnPr3)4] and (b) [Ag16(Se2Fc)8(PPh2Et)6]: black, Ag; light grey, Se; medium grey, Fe; small grey spheres C, P.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 12: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [Cu20Se6(Se2Fc)4(PPr3)10]: black, Cu; light grey, Se; medium grey, Fe; small grey spheres C, P.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 13: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [Cu36Se12(Se2Fc)6(PnPr3)10(Ph2P(CH2)3SH)2]: black, Cu; light grey, Se; medium grey, Fe; small grey spheres C, P. S atoms emphasized for clarity.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society

Page 14: Metal chalcogenide nanoclusters with ‘tailored’ surfaces via ‘designer’ silylated chalcogen reagents by Daniel G. MacDonald, and John F. Corrigan Philosophical

Molecular structure of [Cu40Se12(Se2Fc)8(PPh3)9]: black, Cu; light grey, Se; medium grey, Fe; small grey spheres C, P.

Daniel G. MacDonald, and John F. Corrigan Phil. Trans. R. Soc. A 2010;368:1455-1472

©2010 by The Royal Society