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Chemistry – A European Journal, ISSN 0947-6539, 12/2018, Volume 24, Issue 70, pp. 18705 - 18717
From the reaction of manganese halides with the chiral Schiff bases obtained by condensation of o‐vanillin and (R)‐ or (S)‐phenylglycinol, 11 complexes based... 
Schiff bases | magnetic properties | circular dichroism | chirality | manganese | SERIES | MANGANESE CLUSTERS | COMPLEXES | BRIDGES | CRYSTAL-STRUCTURES | CD SPECTRA | CHEMISTRY, MULTIDISCIPLINARY | SUPRAMOLECULAR CHIRALITY | FAMILY | NUCLEARITY | LIGAND | Optical properties | Magnetic properties | Imines | Halides | Chirality | Cages | Magnetism | Vanillin | Manganese
Journal Article
Journal Article
Environmental Science and Technology, ISSN 0013-936X, 04/2015, Volume 49, Issue 7, pp. 4310 - 4316
Journal Article
Zeitschrift für anorganische und allgemeine Chemie, ISSN 0044-2313, 06/2008, Volume 634, Issue 6‐7, pp. 1005 - 1010
Solvothermal reaction of [MnCl2(cyclam)]Cl with GeSe2 at a 1:1 molar ratio in CH3OH/H2O (1/1) at 150 °C affords the dimanganese(II) complex... 
Tin | Coordination polymers | Germanium | Selenidometalates | Solvothermal synthesis | Manganese | coordination polymers | ANIONS | selenidometalates | ELECTRONIC-PROPERTIES | SELENOSTANNATE(IV) | NETWORK | CRYSTAL-STRUCTURE | germanium | manganese | CHEMISTRY, INORGANIC & NUCLEAR | ELEMENTS | LIGANDS | SELENIDE | tin | METAL | solvothermal synthesis
Journal Article
Chemical Communications, ISSN 1359-7345, 03/2013, Volume 49, Issue 25, pp. 2515 - 2517
A polyoxometalate (POM)-based {(Mn2Mn6Mn4II)-Mn-IV-Mn-III} complex with single-molecule magnet (SMM) behaviour was prepared, exhibiting the largest known Mn... 
GROUND-STATE | CLUSTERS | MANGANESE | BUILDING-BLOCKS | BEHAVIOR | COMPLEXES | NANOMAGNETS | RELAXATION | POLYOXOANIONS | NANOTUBES | CHEMISTRY, MULTIDISCIPLINARY | Manganese | Material chemistry | Chemical Sciences
Journal Article
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 09/2017, Volume 56, Issue 17, pp. 10559 - 10569
Journal Article
12. Systematic exploration of N,C coordination effects on the ORR performance of Mn–Nx doped graphene catalysts based on DFT calculations (Electronic supplementary information (ESI) available: Relations HMnvs. ΔEf and μNvs. ΔEf for various Mn–Nx structures (Fig. S1); the free energy diagrams of ORR pathways on the three types of Mn–N2C2/D structures (Fig. S2); the PDOS plots calculated for various four-coordination sites after the OH adsorption (Fig. S3); optimized models of different Mn–Nx structures and their corresponding ideal O2, OOH, O and OH adsorption configurations (Table S1); adsorption free energies of the key ORR intermediate species on the surface sites associated with various TM–Nx structures and Pt(111) (Table S2); free energy variations of the ORR pathways for different TM–Nx structures and their corresponding theoretical overpotentials (Table S3); the O2 adsorption configurations in different binding types associated with the three- and four-coordination structures (Table S4); binding energy of O2 in different binding types, the atomic distance between Mn, C, N, and O atoms and the height of Mn atoms with respect to the graphene basal plane of each Mn–Nx structure after the O2 adsorption (Table S5); Mulliken charge population of Mn, N, C and O atoms of each Mn–Nx structure with an adsorbed O2 (Table S6); and the energy level of each peak with respect to the Fermi energy level in the PDOS plots of OH adsorbed on the three-coordination and four-coordination sites (Table S7). See DOI: 10.1039/c9cp02155h)
Physical Chemistry Chemical Physics : PCCP, ISSN 1463-9076, 01/2019, Volume 21, Issue 24, pp. 12826 - 12836
A single-atom TM–Nx (TM = Fe, Co, Mn, etc.) embedded graphene matrix is known for its excellent activity and durability in oxygen reduction reaction (ORR)... 
Energy levels | Coordination | Catalysts | Surface chemistry | Basal plane | Iron | Free energy | Chemical reduction | Electronic structure | Pathways | Adsorption | Energy | Graphene | Platinum | Density functional theory | Catalysis | Configurations | Manganese
Journal Article
physica status solidi (b), ISSN 0370-1972, 09/2014, Volume 251, Issue 9, pp. 1694 - 1699
Journal Article