نتایج جستجو برای: 3. mn

تعداد نتایج: 1841416  

2011
K. T. Jacob G. Rajitha Y. Waseda

Thermodynamic properties of Mn O , Mn 3 4 2O and MnO 3 2 are reassessed based on new measurements and selected data from the literature. Data for these oxides are available in most thermodynamics compilations based on older calorimetric measurements on heat capacity and enthalpy of formation, and high-temperature decomposition studies. The older heat capacity measurements did not extend below 5...

Journal: :Optics letters 2002
Yunping Yang Karsten Buse Demetri Psaltis

The dynamic range, sensitivity, and dark decay of holographic recording of wavelength 458 nm in LiNbO(3) crystals doped with 0.2-at. % Mn with different oxidation states have been measured. The measured sensitivity is 0.5 cm/J and is found to be independent of the oxidation state, and the largest M/# obtained is 12/mm (extraordinary light polarization; light wavelength, 458 nm). This combinatio...

Journal: :Inorganic chemistry 2013
Shreya Mukherjee Khalil A Abboud Wolfgang Wernsdorfer George Christou

The comproportionation reaction between Mn(II) and Mn(VII) reagents under acidic conditions has been investigated in the presence of pivalic acid as a route to new high oxidation state manganese pivalate clusters containing some Mn(IV). The reaction of Mn(O(2)CBu(t))(2) and NBu(n)(4)MnO(4) with an excess of pivalic acid in the presence of Mn(ClO(4))(2) and NBu(n)(4)Cl in hot MeCN led to the iso...

Journal: :Journal of the American Chemical Society 2013
Jacob S Kanady Jose L Mendoza-Cortes Emily Y Tsui Robert J Nielsen William A Goddard Theodor Agapie

The oxygen-evolving complex (OEC) of photosystem II contains a Mn(4)CaO(n) catalytic site, in which reactivity of bridging oxidos is fundamental to OEC function. We synthesized structurally relevant cuboidal Mn(3)MO(n) complexes (M = Mn, Ca, Sc; n = 3,4) to enable mechanistic studies of reactivity and incorporation of μ(3)-oxido moieties. We found that Mn(IV)(3)CaO(4) and Mn(IV)(3)ScO(4) were u...

Journal: :Inorganic chemistry 2006
Connie C Lu Jonas C Peters

This paper presents aspects of the coordination chemistry of mono- and divalent manganese complexes supported by the anionic tris(phosphino)borate ligand, [PhBP(i)(Pr)3] (where [PhBP(i)(Pr)3] = [PhB(CH(2)P(i)Pr2)3]-). The Mn(II) halide complexes, [PhBP(i)(Pr)3]MnCl (1) and [PhBP(i)(Pr)3]MnI (2), have been characterized by X-ray diffraction, SQUID magnetometry, and EPR spectroscopy. Compound 2 s...

Journal: :Inorganic chemistry 2010
Constantinos C Stoumpos Ross Inglis Olivier Roubeau Harikleia Sartzi Alexandros A Kitos Constantinos J Milios Guillem Aromí Anastasios J Tasiopoulos Vasilios Nastopoulos Euan K Brechin Spyros P Perlepes

The use of phenyl-2-pyridyl ketone oxime and di-2-pyridyl ketone oxime in Mn chemistry has led to hexanuclear clusters with unprecedented (Mn(II)(4)Mn(III)Mn(IV)) or extremely rare (Mn(II)Mn(III)(5) and Mn(II)(3)Mn(III)(3)) metal oxidation-state combinations and uncommon structural motifs.

2015
Wenyong Zhang Parashu Kharel Shah R. Valloppilly Ralph A. Skomski David J. Sellmyer W. Y. Zhang P. Kharel D. J. Sellmyer

Synthesis and magnetism of single-phase Mn-Ga films" (2015). David Sellmyer Publications. 252. Single-phase noncubic Mn-Ga films with a thickness of about 200 nm were fabricated by an in situ annealing of [Mn(x)/Ga(y)/Mn(x)] 5 multilayers deposited by e-beam evaporation. Mn-Ga alloys prepared in three different compositions Mn 2 Ga 5 and Mn 2 Ga were found to crystallize in the tet-ragonal tP14...

2012
R. S. Ningthoujam R. K. Vatsa Amit Kumar Badri N. Pandey

Application of Magnetic Nanoparticles (MN) has emerged as a potential mode of hyperthermia, a modality for cancer therapy, in which temperature of a tumor is increased beyond physiological temperature up to 40-43 °C. We have prepared Fe 3 O 4 magnetic nanoparticles (Fe 3 O 4 -MN), which were surface-functionalized with polyethylene glycol (Fe 3 O 4 -PEG-MN) and oleic acid (Fe 3 O 4 -OAMN) to ma...

Journal: :Dalton transactions 2010
Ferdi Karadas Carolina Avendano Matthew G Hilfiger Andrey V Prosvirin Kim R Dunbar

Derivatives of the single molecule magnet (SMM) {[Re(triphos)(CN)(3)](4)[MnCl](4)} (Re(4)Mn(4)) {[Re(triphos)(CN)(3)](4)[Mn(CH(3)CN)](4)}(ClO(4))(4) (2) and {[Re(triphos)(CN)(3)](4)[Mn(ClO(4))](3)[Mn(CH(3)OH)(CH(3)O)]} (3), were prepared by reacting [Et(4)N][Re(triphos)(CN)(3)] (1) with Mn(ClO(4))(2)·6H(2)O. Reaction of sodium dicyanamide, NaN(CN)(2), with compound 2 in CH(2)Cl(2) results in th...

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