Literature DB >> 19053237

Crystal structures and vibrational spectroscopy of copper(I) thiourea complexes.

Graham A Bowmaker1, John V Hanna, Chaveng Pakawatchai, Brian W Skelton, Yupa Thanyasirikul, Allan H White.   

Abstract

Several synthetic strategies using copper(I) starting materials or copper(II) compounds and an in situ sulfite reductant have been used to systematically explore the chemistry of copper(I) complexes with thiourea and substituted thiourea ligands. This has resulted in the discovery of several new complexes and methods for the bulk synthesis of some previously reported complexes that had been prepared adventitiously in small quantity. The new complexes are (tu = thiourea, dmtu = N,N'-dimethylthiourea, etu = ethylenethiourea): [I(4)Cu(4)(tu)(6)].H(2)O, [Cu(4)(tu)(10)](NO(3)).tu.3H(2)O, [BrCu(dmtu)(3)], [ICu(dmtu)(3)](2), [BrCu(etu)(2)](2), [ICu(etu)(2)], [ICu(etu)(2)](3). [I(4)Cu(4)(tu)(6)].H(2)O has an adamantanoid structure, with four terminal iodide ligands and six doubly bridging tu ligands. In contrast to this, [Cu(4)(tu)(10)](NO(3)).tu.3H(2)O contains a tetranuclear cluster in which four of the tu ligands are terminal and the other six are doubly bridging. [BrCu(dmtu)(3)] is a mononuclear complex with tetrahedral coordination of copper by one bromide and three dmtu ligands, whereas [Cu(dmtu)(3)](2)I(2) has a centrosymmetric dimeric cation with two uncoordinated iodides, four terminal dmtu and two doubly bridging dmtu ligands, [(dmtu)(2)Cu(mu-S-dmtu)(2)Cu(dmtu)(2)]I(2). A reversal of this monomer to dimer trend from bromide to iodide is seen for the etu counterparts: [BrCu(etu)(2)](2) is a centrosymmetric dimer with two doubly bridging etu ligands, [(etu)BrCu(mu-S-etu)(2)CuBr(etu)], whereas [ICu(etu)(2)] is a trigonal planar monomer, although the novel [I(3)Cu(3)(etu)(6)] is also defined. Infrared and Raman spectra of the synthesized complexes were recorded and the metal-ligand vibrational frequencies have been assigned in many cases. The results confirm previously observed correlations between the vibrational frequencies and the corresponding bond lengths for complexes of the unsubstituted tu ligand. A mechanochemical/infrared method was used to synthesize [I(3)Cu(3)(etu)(6)] from CuI and etu, and to demonstrate the polymorphic transition from [ICu(etu)(2)] to [I(3)Cu(3)(etu)(6)].

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Year:  2009        PMID: 19053237     DOI: 10.1021/ic801310r

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


  3 in total

1.  Mononuclear Tricoordinate Copper(I) and Silver(I) Halide Complexes of a Sterically Bulky Thiourea Ligand and a Computational Insight of Their Interaction with Human Insulin.

Authors:  Awal Noor; Sadaf Qayyum; Farukh Jabeen; Ashfaq Ur Rehman
Journal:  Molecules       Date:  2022-06-30       Impact factor: 4.927

2.  Hexa-kis-(μ(3)-1-methyl-thio-urea-κ(3)S:S:S)hexa-kis-[iodidocopper(I)].

Authors:  Saeed Ahmad; Muhammad Mufakkar; Islam Ullah Khan; Hoong-Kun Fun; Abdul Waheed
Journal:  Acta Crystallogr Sect E Struct Rep Online       Date:  2012-10-24

3.  Copper-Promoted One-Pot Approach: Synthesis of Benzimidazoles.

Authors:  S N Murthy Boddapati; Ramana Tamminana; Ravi Kumar Gollapudi; Sharmila Nurbasha; Mohamed E Assal; Osamah Alduhaish; Mohammed Rafiq H Siddiqui; Hari Babu Bollikolla; Syed Farooq Adil
Journal:  Molecules       Date:  2020-04-14       Impact factor: 4.411

  3 in total

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