Literature DB >> 15132618

Preparation and solid-state characterization of mixed-ligand coordination/organometallic oligomers and polymers of copper(I) and silver(I) using diphosphine and mono- and diisocyanide ligands.

Eric Fournier1, Frédéric Lebrun, Marc Drouin, Andreas Decken, Pierre D Harvey.   

Abstract

The dimers [Cu(2)(dppm)(2)(CN-t-Bu)(3)](BF(4))(2) and [Ag(2)(dppm)(2)(CN-t-Bu)(2)](X)(2) (X(-) = BF(4)(-), ClO(4)(-)) and the coordination polymers [[M(diphos)(CN-t-Bu)(2)]BF(4)](n) (M = Cu, Ag; diphos = bis(diphenylphosphino)butane (dppb), bis(diphenylphosphino)pentane (dpppen), bis(diphenylphosphino)hexane (dpph)), [[Ag(2)(dppb)(3)(CN-t-Bu)(2)](BF(4))(2)](n), and [[Ag(dpppen)(CN-t-Bu)]BF(4)](n) have been synthesized and fully characterized as model materials for the mixed bridging ligand polymers which exhibit the general formula [[M(diphos)(dmb)]BF(4)](n) (M = Cu, Ag; dmb = 1,8-diisocyano-p-menthane) and [[Ag(dppm)(dmb)]ClO(4)](n). The identity of four polymers ([[Ag(dppb)(CN-t-Bu)(x)]BF(4)](n) (x = 1, 2), [[Ag(2)(dppb)(3)(CN-t-Bu)(2)](BF(4))(2)](n), [[Ag(dppm)(dmb)]ClO(4)](n)) and the two dimers has been confirmed by X-ray crystallography. The structure of [[Ag(dppm)(dmb)]ClO(4)](n) exhibits an unprecedented 1-D chain of the type "[Ag(dmb)(2)Ag(dppm)(2)(2+)](n)", where d(Ag(.)Ag) values between tetrahedral Ag atoms are 4.028(1) and 9.609(1) A for the dppm and dmb bridged units, respectively. The [[Ag(dppb)(CN-t-Bu)(x)]BF(4)](n) polymers (x = 1, 2) form zigzag chains in which the Ag atoms are tri- and tetracoordinated, respectively. The [[Ag(2)(dppb)(3)(CN-t-Bu)(2)](BF(4))(2)](n) polymer, which is produced from the rearrangement of [[Ag(dppb)(CN-t-Bu)(2)]BF(4)](n), forms a 2-D structure described as a "honeycomb" pattern, where large [Ag(dppb)(+)](6) macrocycles each hosting two counterions and two acetonitrile guest molecules are observed. Properties such as glass transition temperature, morphology, thermal decomposition, and luminescence in the solid state at 293 K are reported. The luminescence bands exhibit maxima between 475 and 500 nm with emission lifetimes ranging between 6 and 55 micros. These emissions are assigned to a metal-to-ligand charge transfer (MLCT) of the type M(I) --> pi(NC)/pi(PPh(2)).

Entities:  

Year:  2004        PMID: 15132618     DOI: 10.1021/ic034806m

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  4 in total

1.  Bis[μ-bis-(diphenyl-phosphino)methane-κP:P']bis-[(4-toluene-sulfonato-κO)silver(I)] monohydrate.

Authors:  Zhen Ma; Jianhua Sun; Baoqing Liu; Miao Hu; Yanpeng Xing
Journal:  Acta Crystallogr Sect E Struct Rep Online       Date:  2008-01-04

2.  Di- and polynuclear silver(I) saccharinate complexes of tertiary diphosphane ligands: synthesis, structures, in vitro DNA binding, and antibacterial and anticancer properties.

Authors:  Veysel T Yilmaz; Elif Gocmen; Ceyda Icsel; Murat Cengiz; Sunde Y Susluer; Orhan Buyukgungor
Journal:  J Biol Inorg Chem       Date:  2013-10-17       Impact factor: 3.358

3.  Bis[μ(2)-bis-(diphenyl-phosphan-yl)methane-κP:P']bis-(μ(4)-diphenyl-phosphinato-κO:O:O':O')bis-[μ(2)-trifluoro-methane-sulfonato-(0.546/0.454)]-κO:O';κO:O-tetra-silver(I) acetonitrile disolvate.

Authors:  Li-Ping Tang; Chen Jia; Li-Li Huang; Jia-Li Xie
Journal:  Acta Crystallogr Sect E Struct Rep Online       Date:  2011-07-23

4.  Isomerism and dynamic behavior of bridging phosphaalkynes bound to a dicopper complex.

Authors:  Amélie Nicolay; Micah S Ziegler; David W Small; Rebecca Grünbauer; Manfred Scheer; T Don Tilley
Journal:  Chem Sci       Date:  2019-12-19       Impact factor: 9.825

  4 in total

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