28 research outputs found

    Proceedings of the Virtual 3rd UK Implementation Science Research Conference : Virtual conference. 16 and 17 July 2020.

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    The macneils of Tokyo

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    The Macneils of Tokyo : the anals of the Macneil clan in Japan

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    The Debtor's Digital Autopsy Or Where's the Money!

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    Hara kiri : bunuh diri ala Jepang

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    Judul asli: Japanese ritual suicidex, 93 p. : il.; 20 cm

    Hara kiri / bunuh diri ala Jepang

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    Judul asli: Hara-kiri : Japanese ritual suicide Bibliografi hlm. 88-89x, 93 hlm. :il. ;21 cm

    Silver(I) complexation of linked 2,2'-dipyridylamine derivatives. Synthetic, solvent extraction, membrane transport and X-ray structural studies

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    Synthesis of the 2,2′-dipyridylamine derivatives di-2- pyridylaminomethylbenzene 1, 1,2-bis(di-2-pyridylaminomethyl)benzene 2, 1,3-bis(di-2-pyridylaminomethyl)benzene 3, 2,6-bis(di-2-pyridylaminomethyl) pyridine 4, 1,4-bis(di-2-pyridylaminomethyl)benzene 5, and 1,3,5-tris(di-2- pyridylaminomethyl)benzene 6 are reported together with the single-crystal X-ray structures of 2, 3, and 5. Reaction of individual salts of the type AgX (where X = NO3-, PF6-, ClO4-, or BF4-) with the above ligands has led to the isolation of thirteen Ag(i) complexes, nine of which have also been characterised by X-ray diffraction. In part, the inherent flexibility of the respective ligands has resulted in the adoption of a range of coordination arrangements. A series of liquid-liquid (H2O/CHCl3) extraction experiments of Ag(i) with varying concentrations of 1-6 in the organic phase have been undertaken, with the counter ion in the aqueous phase being respectively picrate, perchlorate and nitrate. In general, extraction efficiencies for a given ionophore followed the Hofmeister order of picrate > perchlorate > nitrate; in each case the tris-dpa derivative 6 acting as the most efficient extractant of the six systems investigated. Competitive seven-metal bulk membrane transport experiments (H2O/CHCl 3/H2O) employing the above ligands as the ionophore in the organic phase and equimolar concentrations of Co(ii), Ni(ii), Zn(ii), Cu(ii), Cd(ii), Pb(ii) and Ag(i) in the aqueous source phase were also undertaken, with transport occurring against a pH gradient. Under the conditions employed 1 and 5 yielded negligible transport of any of the metals present in the source phase while sole transport selectivity for Ag(i) was observed for 2-4 and 6. © The Royal Society of Chemistry 2006.Bianca Antonioli, David J. Bray, Jack K. Clegg, Kerstin Gloe, Karsten Gloe, Olga Kataeva, Leonard F. Lindoy, John C. McMurtrie, Peter J. Steel, Christopher J. Sumby and Marco Wenze
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