Search Results - "Tiekink, Edward R.T."

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  1. 1

    Supramolecular assembly based on “emerging” intermolecular interactions of particular interest to coordination chemists by Tiekink, Edward R.T.

    Published in Coordination chemistry reviews (15-08-2017)
    “…•Heavy element compounds offer distinct possibilities for directed self-assembly.•Secondary bonding, e.g. tetrel, pnictogen and chalcogen bonding, is…”
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  2. 2
  3. 3

    Supramolecular assembly of molecular gold(I) compounds: An evaluation of the competition and complementarity between aurophilic (Au⋯Au) and conventional hydrogen bonding interactions by Tiekink, Edward R.T.

    Published in Coordination chemistry reviews (01-09-2014)
    “…Conventional hydrogen bonding interactions predominate in the supramolecular association of gold(I) compounds functionalised with groups capable of forming…”
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  4. 4

    Targeted syntheses of homo- and heterotrinuclear complexes involving MII–NiII–MII (M=Ni, Cu, and Pd) nonlinear core: Structure, spectroscopy, magnetic and redox studies by Mandal, Debdas, Abtab, Sk Md Towsif, Audhya, Anandalok, Tiekink, Edward R.T., Endo, Akira, Clérac, Rodolphe, Chaudhury, Muktimoy

    Published in Polyhedron (22-03-2013)
    “…A methodology has been developed for the synthesis of both homo- and heterotrinuclear complexes [LNi{M(Ln)}2](ClO4)2·H2O (1–6) involving Ni(II)M(II)2 (M=Ni,…”
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  5. 5

    On the Coordination Role of Pyridyl-Nitrogen in the Structural Chemistry of Pyridyl-Substituted Dithiocarbamate Ligands by Tiekink, Edward R.T.

    Published in Crystals (Basel) (01-03-2021)
    “…A search of the Cambridge Structural Database was conducted for pyridyl-substituted dithiocarbamate ligands. This entailed molecules containing both an NCS2−…”
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  6. 6

    Synthesis and Staphylococcus aureus biofilm inhibitory activity of indolenine-substituted pyrazole and pyrimido[1,2-b]indazole derivatives by Hong Yap, Cheng, Qaiyum Ramle, Abdul, Khai Lim, See, Rames, Avinash, Tee Tay, Sun, Peng Chin, Sek, Voon Kiew, Lik, R.T. Tiekink, Edward, Fei Chee, Chin

    Published in Bioorganic & medicinal chemistry (15-11-2023)
    “…[Display omitted] •45 indolenine-substituted pyrazoles and pyrimido[1,2-b]indazoles were evaluated.•Preliminary SAR analysis in the inhibition of S. aureus…”
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  7. 7

    Exploring the Topological Landscape Exhibited by Binary Zinc-triad 1,1-dithiolates by Tiekink, Edward

    Published in Crystals (Basel) (01-07-2018)
    “…The crystal chemistry of the zinc-triad binary 1,1-dithiolates, that is, compounds of xanthate [−S2COR], dithiophosphate [−S2P(OR)2], and dithiocarbamate…”
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  8. 8

    In vitro anti-bacterial and time kill evaluation of binuclear tricyclohexylphosphanesilver(I) dithiocarbamates, {Cy3PAg(S2CNRR′)}2 by Tan, Yi Jiun, Tan, Yee Seng, Yeo, Chien Ing, Chew, Jactty, Tiekink, Edward R.T.

    Published in Journal of inorganic biochemistry (01-03-2019)
    “…Four binuclear phosphanesilver(I) dithiocarbamates, {cyclohexyl3PAg(S2CNRR′)}2 for R = R′ = Et (1), CH2CH2 (2), CH2CH2OH (3) and R = Me, R′ = CH2CH2OH (4) have…”
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  9. 9

    Ring strain in boroxine rings: computational and experimental considerations by Beckmann, Jens, Dakternieks, Dainis, Duthie, Andrew, Lim, Allan E.K, Tiekink, Edward R.T

    Published in Journal of organometallic chemistry (01-08-2001)
    “…B3LYP/6-311+G(d) calculations indicate that (HBO) 3 ( 4) and (HBO) 4 ( 5) possess (zero-point energy corrected) strain enthalpies of 11.4 and 31.6 kJ mol −1,…”
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  10. 10

    Triphenyltin(IV) benzoates with diazenyl/imino scaffold exhibiting remarkable apoptosis mediated by reactive oxygen species by Basu Baul, Tushar S., Dutta, Dhrubajyoti, Duthie, Andrew, Prasad, Ritika, Rana, Nishant Kumar, Koch, Biplob, Tiekink, Edward R.T.

    Published in Journal of inorganic biochemistry (01-08-2017)
    “…The cytotoxic potency of a series of triphenyltin(IV) compounds of general composition [Ph3Sn(Ln)] (1–6) has been probed in vitro employing MDA-MB-231 (human…”
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  11. 11

    Crystal structure of [(Z)-O-isopropyl N-(4-chlorophenyl)thiocarbamato-κS]-(triphenylphosphine-κP)-gold(I), C28H26AuClNOPS by Yeo, Chien Ing, Tiekink, Edward R.T.

    “…AuClNOPS, monoclinic, (no. 14), = 9.7445(3) Å, = 12.4105(4) Å, = 21.9727(9) Å, = 100.113(1)°, = 2615.96(16) Å , = 4, ) = 0.0292, ) = 0.0677, = 100 K…”
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  12. 12

    Crystal structure of [2-carboxybenzene-1-thiolato-S]-(triethylphosphane-P)-gold(I), C13H20AuO2PS by Yeo, Chien Ing, Tiekink, Edward R.T.

    “…AuO PS, triclinic, 1̄ (no. 2), = 7.7509(2) Å, = 12.7840(3) Å, = 15.8689(4) Å, = 89.087(2)°, = 87.065(2)°, = 84.797(2)°, = 1563.78(7) Å , = 4, ) = 0.0282, ) =…”
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  13. 13

    Crystal structure of tetrakis (N-(2-hydroxyethyl)-N-isopropylcarbamodithioato-κS,S′)-(μ2(2-(pyridin-4-yl)vinyl)pyridine-κN,N′)dicadmium(II), C36H58Cd2N6O4S8 by Yeo, Chien Ing, Tiekink, Edward R.T.

    “…Cd , monoclinic, (no. 14), = 7.82927(4) Å, = 11.64209(5) Å, = 26.2493(1) Å, = 95.6985(4)°, = 2380.775(18) Å , = 2, ) = 0.0158, ) = 0.0411, = 100(2) K…”
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  14. 14

    Crystal structure of (μ2-1,1′-bis(diphenylphosphino)butane-κ2P,P′)-bis[(Z)-N-(3-fluorophenyl)-O-methylthiocarbamato-κS]-di-gold(I), C44H42Au2F2N2O2P2S2 by Yeo, Chien Ing, Tiekink, Edward R.T.

    “…Au , triclinic, 1̄ (no. 2), = 8.8035(2) Å, = 11.4764(3) Å, = 21.2293(6) Å, = 83.550(2)°, = 82.256(2)°, = 83.793(2)°, = 2102.40(10) Å , = 2, ) = 0.0268, ) =…”
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  15. 15

    Crystal structure of (μ2-1,1′-bis(diphenylphosphino)ferrocene-P,P′)-bis[(Z)-O-isopropyl N-(4-chlorophenyl)thiocarbamato-S]-di-gold(I) acetonitrile di-solvate, C54H50Au2Cl2FeN2O2P2S2⋅2(C2H3N) by Yeo, Chien Ing, Tiekink, Edward R.T.

    “…Au Cl FeN , triclinic, 1̄ (no. 2), = 8.5422(3) Å, = 13.2143(4) Å, = 14.0226(4)) Å, = 65.764(3)°, = 78.311(2)°, = 80.090(3)°, = 1406.39(8) Å , = 1, ) = 0.0213,…”
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  16. 16

    Crystal structure of (μ2-1,1′-bis(diphenylphosphino)hexane-κ2P,P′)-bis[(Z)-N-(3-fluorophenyl)-O-methylthiocarbamato-κS]digold(I), C46H46Au2F2N2O2P2S2 by Yeo, Chien Ing, Tiekink, Edward R.T.

    “…Au , triclinic, 1̄ (no. 2), = 8.2496(3) Å, = 11.4366(4) Å, = 12.9504(4) Å, = 109.171(3)°, = 92.496(3)°, = 100.208(3)°, = 1128.98(7) Å , = 1, ) = 0.0246, ) =…”
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  17. 17

    Crystal structure of the co-crystal N,N′-bis(4-pyridylmethyl)oxalamide and 2,3,5,6-tetrafluoro-1,4-di-iodobenzene (1/1), C14H14N4O2⋅C6F4I2 by Tan, Sang Loon, Tiekink, Edward R.T.

    “…, triclinic, 1̄ (no. 2), = 5.0726(1) Å, = 10.9432(2) Å, = 19.8090(3) Å, = 104.475(2)°, = 90.427(2)°, = 92.908(2)°, = 1063.10(3) Å , = 2, ) = 0.0329, ) =…”
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  18. 18

    Crystal structure of catena-[(bis(O,O′-diethyl dithiophosphato-S,S′)-μ2-1,2-bis(3-pyridylmethylene)hydrazine-N,N′)zinc(II)], {C20H30N4O4P2S4Zn}n by Tan, Yee Seng, Tiekink, Edward R.T.

    “…Zn, triclinic, 1̄ (no. 2), = 8.01840(1) Å, = 8.4326(1) Å, = 23.5086(2) Å, = 80.478(1)°, = 80.679(1)°, = 76.112(1)°, = 1509.37(3) Å , = 2, ) = 0.0449, ) =…”
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  19. 19

    Crystal structure of the co-crystal 2-[(2-carboxyphenyl)disulfanyl]benzoic acid – 3-chlorobenzoic acid (2/1), C35H25ClO10S4 by Tan, Sang Loon, Tiekink, Edward R.T.

    “…ClO , triclinic, 1̄ (no. 2), = 7.9798(2) Å, = 10.2392(3) Å, = 20.6956(4) Å, = 103.632(2)°, = 96.082(2)°, = 96.053(2)°, = 1619.13(7) Å , = 2, ) = 0.0493, ) =…”
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  20. 20

    Crystal structure of catena-[(μ2-pyrazine-κ2N:N′)-bis(O,O′-di-ethyldithiophosphato-κ2S,S′)cadmium(II)], {C12H24CdN2O4P2S4}n by Tan, Yee Seng, Tiekink, Edward R.T.

    “…CdN , monoclinic, 2/ (no. 13), = 11.7844(2) Å, = 7.6063(1) Å, = 13.1965(2) Å, = 111.594(2)°, = 1099.86(3) Å , = 2, ) = 0.0171, ) = 0.0467, = 100 K…”
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