Michael B. Doran
University of Oxford
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Featured researches published by Michael B. Doran.
Chemical Communications | 2002
Michael B. Doran; Alexander J. Norquist; Dermot O'Hare
[NC4H12][(UO2)6(H2O)2(SO4)7] is the first organically templated actinide sulfate with a three-dimensional framework structure; it has channels of dimensions 8.5 A x 8.5 A, running along the [001] direction, containing tetramethylammonium cations.
Journal of Materials Chemistry | 2003
Paul M. Thomas; Alexander J. Norquist; Michael B. Doran; Dermot O'Hare
Composition space has been used to study the phase stability of organically templated uranium sulfates in the UO2(CH3CO2)2·2H2O–1,3-diaminopropane–H2SO4 system. The syntheses and structures of two new compounds, [N2C3H12][UO2(H2O)(SO4)2] (USO-1) and [N2C3H12][(UO2)2(H2O)(SO4)3] (USO-2), are reported. The relative stability of the crystalline products in this system was found to be dependent upon the reactant mole fraction in the initial reaction gel, based upon the size and location of their respective crystallisation fields in the composition space.
Solid State Sciences | 2003
Alexander J. Norquist; Michael B. Doran; Dermot O'Hare
Abstract The synthesis of uranium sulfates under hydrothermal conditions in the presence of a series of structurally related organic templating agents was investigated. 1,2-ethylenediamine, 1,3-diaminopropane, 1,4-diaminobutane, 1,5-diaminopentane and 1,6-diaminohexane were used under identical reaction conditions to elucidate the effects of variation in linear diamine chain length on the extended structures. As the chain length increases the charge density of the doubly protonated amines decreases. Four new compounds were synthesised and structurally characterised. Two types of inorganic frameworks are observed, evolving as a function of amine chain length. The compounds synthesised using 1,2-ethylenediamine and 1,3-diaminopropane contain [UO2(H2O)(SO4)4/2]n2n− chains. The use of 1,4-diaminobutane, 1,5-diaminopentane and 1,6-diaminohexane results in compounds that contain [(UO2)2(SO4)6]8− dimers. The extended structures of these compounds are correlated to the charge density of the organic templating agents.
Journal of Materials Chemistry | 2006
Kang Min Ok; Michael B. Doran; Dermot O'Hare
[N(CH3)4][(UO2)2F5] is a novel organically templated three-dimensional open-framework uranium oxide fluoride; the framework is composed of a single type of UO2F5 building unit, connected to form ten-membered ring (10-MR) channels along the [100] and [010] directions, containing tetramethylammonium cations.
Chemical Communications | 2001
Michael B. Doran; Susan Walker; Dermot O’Hare
The material (C4N2H12)(UO2)2(PO3H)2(PO2(OH)H)2 (MUPH-1) has been prepared hydrothermally; it is a three dimensional structure consisting of four intersecting elliptical shaped one-dimensional channels, the largest channel has dimensions of 13.1 x 7.2 A.
Dalton Transactions | 2003
Alexander J. Norquist; Michael B. Doran; Paul M. Thomas; Dermot O'Hare
The potential of organic amine templates to direct the synthesis of metal sulfate frameworks has been investigated. Eight novel uranyl sulfates have been prepared using a templated uranyl sulfate precursor under hydrothermal conditions. The topologis of the isolated phases vary from the molecular (0-D), to chains (1-D) to layered (2-D) frameworks. [N4C6H22]2[(UO2)2(SO4)6] (USO-10) is molecular or zero-dimensional. Two different types of one-dimensional uranyl-containing chains have been observed. [N2C4H12][UO2(H2O)(SO4)2] (USO-3), [N2C5H14][UO2(H2O)(SO4)2] (USO-4) and [N2C3H12][UO2(H2O)(SO4)2] (USO-9) contain chains based upon a [UO2(SO4)4/2] backbone. [N2C10H10][UO2(SO4)2]·H2O (USO-6) and [N2C6H18][(UO2)2(H2O)3(SO4)3] (USO-7) contain chains based upon a [UO2(SO4)3/3] backbone. Two layered or two-dimensional compounds, [N2C6H14][UO2(H2O)(SO4)2] (USO-5) and [N2C3H5]2[(UO2)2(SO4)3] (USO-8) have also been isolated. All the new phases have been characterised using a range of physical techniques including single crystal X-ray structure analysis.
Chemistry of Materials | 2002
Alexander J. Norquist; Paul M. Thomas; Michael B. Doran; Dermot O'Hare
Dalton Transactions | 2003
Alexander J. Norquist; Michael B. Doran; Paul M. Thomas; Dermot O'Hare
Inorganic Chemistry | 2003
Michael B. Doran; and Alexander J. Norquist; Dermot O'Hare
Inorganic Chemistry | 2003
Alexander J. Norquist; Michael B. Doran; Paul M. Thomas; Dermot O'Hare