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Results for “"Shariff E. Kabir"”

16+ results

Hydrogenase biomimetics: Fe<sub>2</sub>(CO)<sub>4</sub>(μ-dppf)(μ-pdt) (dppf = 1,1′-bis(diphenylphosphino)ferrocene) both a proton-reduction and hydrogen oxidation catalyst

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Shishir Ghosh, Graeme Hogarth, Nathan Hollingsworth, Katherine B. Holt et al.

Journal: Chemical CommunicationsYear: 2013Citations: 108

The diiron complex Fe<sub>2</sub>(CO)<sub>4</sub>(μ-dppf)(μ-pdt) is an active catalyst for both the reduction of protons to give hydrogen and also the reverse oxidation of hydrogen and thus mimics hydrogenases which are able to catalyse both reactions.

Physical SciencesEnergyRenewable Energy, Sustainability and the EnvironmentOpen Access
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Models of the iron-only hydrogenase: Synthesis and protonation of bridge and chelate complexes [Fe2(CO)4{Ph2P(CH2)nPPh2}(μ-pdt)] (n = 2–4) – evidence for a terminal hydride intermediate

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Fatima I. Adam, Graeme Hogarth, Shariff E. Kabir, I. Richards

Journal: Comptes Rendus ChimieYear: 2008Citations: 94

Reactions of [Fe 2 (CO) 6 (μ-pdt)] (pdt = SCH 2 CH 2 CH 2 S) and diphosphines, Ph 2 P(CH 2 ) n PPh 2 ( n = 2–4) and trans -Ph 2 PCH CHPPh 2 , have been carried out under different conditions. For all, at room temperature in MeCN with added Me 3 NO·2H 2 O the diphosphine-linked complexes [{Fe 2 (CO) ...

Physical SciencesEnergyRenewable Energy, Sustainability and the Environment
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Cluster chemistry in the Noughties: new developments and their relationship to nanoparticles

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Graeme Hogarth, Shariff E. Kabir, Ebbe Nordlander

Journal: Dalton TransactionsYear: 2010Citations: 80

Over the past decade, the chemistry of low-valent transition metal clusters has again come to the fore, primarily as a result of the development of nanochemistry and the realization that large clusters are on the cusp of the nano-domain. This perspective focuses on these recent developments in low-v...

Physical SciencesMaterials ScienceMaterials Chemistry
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The chemistry of [M3(CO)10(μ-dppm)](M=Ru, Os): Activating and maintaining the trinuclear core

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Shariff E. Kabir, Graeme Hogarth

Journal: Coordination Chemistry ReviewsYear: 2008Citations: 73
Physical SciencesChemistryOrganic Chemistry
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Functionalised dithiocarbamate complexes: Synthesis and molecular structures of 2-diethylaminoethyl and 3-dimethylaminopropyl dithiocarbamate complexes [M{S2CN(CH2CH2NEt2)2} ] and [M{S2CN(CH2CH2CH2NMe2)2} ] (n= 2, M = Ni, Cu, Zn, Pd; n= 3, M = Co)

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Graeme Hogarth, Ebony-Jewel C.-R.C.R. Rainford-Brent, Shariff E. Kabir, I. Richards et al.

Journal: Inorganica Chimica ActaYear: 2008Citations: 71
Physical SciencesChemistryOrganic Chemistry
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Dinuclear iron carbonyl complexes with dithiolate ligands: X-ray structures of [Fe2(CO)6{μ-SS}] and [Fe2(CO)5{μ-SS}(PPh3)]

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Mirza M. Hasan, Michael B. Hursthouse, Shariff E. Kabir, K. M. Abdul Malik

Journal: PolyhedronYear: 2001Citations: 57
Physical SciencesEnergyRenewable Energy, Sustainability and the Environment
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Synthesis, structure and reactivity of tetranuclear square-type complexes of rhenium and manganese bearing pyrimidine-2-thiolate (pymS) ligands: versatile and efficient precursors for mono- and polynuclear compounds containing M(CO)3 (M = Re, Mn) fragments

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Shariff E. Kabir, Javed Alam, Shishir Ghosh, K. Kundu et al.

Journal: Dalton TransactionsYear: 2009Citations: 56

Reactions of M(2)(CO)(10) (M = Re, Mn) with pyrimidine-2-thiol (pymSH) in the presence of Me(3)NO afford the tetranuclear square-type complexes [M(4)(CO)(12)(micro-kappa(3)-pymS)(4)] (, M = Re; , M = Mn). Both consist of four M(CO)(3) (M = Re, Mn) units, pairs of which are joined by tridentate pyrim...

Physical SciencesChemistryOrganic Chemistry
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Physico-chemical study of the effects of electrolytes and hydrotropes on the clouding development of TX-100 and ceftriaxone sodium drug mixture

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Md. Nazrul Islam, Malik Abdul Rub, Md. Rafikul Islam, Md. Abdul Goni et al.

Journal: Journal of Molecular LiquidsYear: 2023Citations: 52
Physical SciencesChemistryOrganic Chemistry
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Electron deficient bonding of benzoheterocycles to triosmium clusters: synthesis and applications to organic chemistry

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Md. Joynal Abedin, Brian Bergman, Richard Holmquist, Ryan Smith et al.

Journal: Coordination Chemistry ReviewsYear: 1999Citations: 51
Physical SciencesChemistryOrganic Chemistry
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Hydrogenase biomimetics with redox-active ligands: Electrocatalytic proton reduction by [Fe2(CO)4(κ2-diamine)(μ-edt)] (diamine = 2,2′-bipy, 1,10-phen)

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Shishir Ghosh, Ahibur Rahaman, Katherine B. Holt, Ebbe Nordlander et al.

Journal: PolyhedronYear: 2016Citations: 39

Diiron complexes bearing redox active diamine ligands have been studied as models of the active site of [FeFe]-hydrogenases. Heating [Fe2(CO)6(μ-edt)] (edt = 1,2-ethanedithiolate) with 2,2′-bipyridine (2,2′-bipy) or 1,10-phenanthroline (1,10-phen) in MeCN in the presence of Me3NO leads to the format...

Physical SciencesEnergyRenewable Energy, Sustainability and the EnvironmentOpen Access
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Association behavior and physico-chemical parameters of a cetylpyridinium bromide and levofloxacin hemihydrate mixture in aqueous and additive media

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Md. Mohosin Ali, Tajmul Hasan, Javed Masood Khan, Dileep Kumar et al.

Journal: RSC AdvancesYear: 2023Citations: 38

compensation variables were also determined. All the parameters computed in the present investigation are illustrated with proper logic.

Physical SciencesChemistryOrganic ChemistryOpen Access
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Some pyridine-2-thiolato and 6-methylpyridine-2-thiolato complexes of manganese: crystal structure of [Mn2(μ-pyS)2(CO)6] (pyS = pyridine-2-thiolato ligand)

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Shariff E. Kabir, Manzurul Karim, Kalipada Kundu, Saeed Ullah et al.

Journal: Journal of Organometallic ChemistryYear: 1996Citations: 38
Physical SciencesChemistryOrganic Chemistry
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Reactions of rhenium and manganese carbonyl complexes with 1,8-bis(diphenylphosphino)naphthalene: Ligand chelation, C–H and C–P bond-cleavage reactions

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Shariff E. Kabir, Faruque Ahmed, Shishir Ghosh, Mohammad R. Hassan et al.

Journal: Journal of Organometallic ChemistryYear: 2008Citations: 37
Physical SciencesChemistryInorganic Chemistry
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New Mixed‐Metal Carbonyl Complexes Containing Bridging 2‐Mercapto‐1‐methylimidazole Ligand

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Shishir Ghosh, Shariff E. Kabir, Salina Pervin, G.M.G. Hossain et al.

Journal: Zeitschrift für anorganische und allgemeine ChemieYear: 2008Citations: 33

Abstract Reaction of [Mn 2 (CO) 10 ] with 2‐mercapto‐1‐methylimidazole in the presence of Me 3 NO at 25 °C afforded two new dimanganese complexes [Mn 2 (CO) 6 ( μ ‐SN 2 C 4 H 5 ) 2 ] ( 1 ) and [Mn 2 (CO) 7 ( μ ‐SN 2 C 4 H 5 ) 2 ] ( 2 ). Compound 1 consists of two μ ‐SN 2 C 4 H 5 ligands, each bound ...

Physical SciencesChemical EngineeringProcess Chemistry and Technology
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Investigation of the impacts of simple electrolytes and hydrotrope on the interaction of ceftriaxone sodium with cetylpyridinium chloride at numerous study temperatures

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Md. Nazrul Islam, Malik Abdul Rub, Maha M. Alotaibi, Md. Tuhinur R. Joy et al.

Journal: Chemical PapersYear: 2023Citations: 32

Herein, interactions between cetylpyridinium chloride (CPC) and ceftriaxone sodium (CTS) were investigated applying conductivity technique. Impacts of the nature of additives (e.g. electrolytes or hydrotrope (HDT)), change of temperatures (from 298.15 to 323.15 K), and concentration variation of CTS...

Physical SciencesChemistryOrganic ChemistryOpen Access
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