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Featured researches published by Mariusz Kubus.


Inorganic Chemistry | 2018

Quasi-2D Heisenberg Antiferromagnets [CuX(pyz)2](BF4) with X = Cl and Br

Mariusz Kubus; Arianna Lanza; Rebecca Scatena; Leonardo Humberto Rezende dos Santos; Björn Wehinger; Nicola Casati; Christoph Fiolka; Lukas Keller; Piero Macchi; Christian Rüegg; Karl Krämer

Two Cu2+ coordination polymers [CuCl(pyz)2](BF4) 1 and [CuBr(pyz)2](BF4) 2 (pyz = pyrazine) were synthesized in the family of quasi two-dimensional (2D) [Cu(pyz)2]2+ magnetic networks. The layer connectivity by monatomic halide ligands results in significantly shorter interlayer distances. Structures were determined by single-crystal X-ray diffraction. Temperature-dependent X-ray diffraction of 1 revealed rigid [Cu(pyz)2]2+ layers that do not expand between 5 K and room temperature, whereas the expansion along the c-axis amounts to 2%. The magnetic susceptibility of 1 and 2 shows a broad maximum at ∼8 K, indicating antiferromagnetic interactions within the [Cu(pyz)2]2+ layers. 2D Heisenberg model fits result in J∥ = 9.4(1) K for 1 and 8.9(1) K for 2. The interlayer coupling is much weaker with | J⊥| = 0.31(6) K for 1 and 0.52(9) K for 2. The electron density, experimentally determined and calculated by density functional theory, confirms the location of the singly occupied orbital (the magnetic orbital) in the tetragonal plane. The analysis of the spin density reveals a mainly σ-type exchange through pyrazine. Kinks in the magnetic susceptibility indicate the onset of long-range three-dimensional magnetic order below 4 K. The magnetic structures were determined by neutron diffraction. Magnetic Bragg peaks occur below TN = 3.9(1) K for 1 and 3.8(1) K for 2. The magnetic unit cell is doubled along the c-axis ( k = 0, 0, 0.5). The ordered magnetic moments are located in the tetragonal plane and amount to 0.76(8) μB/Cu2+ for 1 and 0.6(1) μB/Cu2+ for 2 at 1.5 K. The moments are coupled antiferromagnetically both in the ab plane and along the c-axis. The Cu2+ g-tensor was determined from electron spin resonance spectra as g x = 2.060(1), g z = 2.275(1) for 1 and g x = 2.057(1), g z = 2.272(1) for 2 at room temperature.


Acta Crystallographica Section B Structural Crystallography and Crystal Chemistry | 2014

Structure of a new chloroauric acid

Mariusz Kubus; Markus Ströbele; Meyer Hj

The new tetrachloroaurate ethanol hydrate HAuCl4·0.65C2H5OH·1.35H2O was prepared from chloroauric acid trihydrate in ethanol. The compound crystallizes in the triclinic space group P bar 1 (No. 2). The [AuCl4](-) units in the structure have approximately square-planar symmetry, forming chains parallel to the crystallographic b-axis direction.


Journal of Luminescence | 2013

Synthesis and luminescent properties of red-emitting phosphors: ZnSiF6·6H2O and ZnGeF6·6H2O doped with Mn4+

Mariusz Kubus; David Enseling; Thomas Jüstel; H.-Jürgen Meyer


Zeitschrift für anorganische und allgemeine Chemie | 2013

A Low‐Temperature Synthesis Route for CaAlSiN3 Doped with Eu2+

Mariusz Kubus; H.‐Juergen Meyer


Journal of Non-crystalline Solids | 2009

Tb3+ luminescence enhancement of YAG:Tb3+ nanocrystals embedded in silica xerogel

Mariusz Kubus; H.-Jürgen Meyer; Lorenz Kienle; Andrzej M. Kłonkowski


Zeitschrift für anorganische und allgemeine Chemie | 2010

Rare Earth Carbodiimide Silicates: RE2(CN2)(SiO4)

Mariusz Kubus; Jochen Glaser; Andrzej M. Kłonkowski; H.‐Juergen Meyer


Materials Chemistry and Physics | 2015

Luminescence enhancement in composite material: CaWO4:Tb3+ nanocrystals incorporated into silica xerogel

Mariusz Kubus; Andrzej M. Kłonkowski; Andriy Lotnyk; Lorenz Kienle


Materials Research Bulletin | 2015

Synthesis of new structurally related cyanamide compounds LiM(CN2)2 where M is Al3+, In3+ or Yb3+

Mariusz Kubus; Robert Heinicke; Markus Ströbele; David Enseling; Thomas Jüstel; H.-Jürgen Meyer


Dalton Transactions | 2015

Structural and luminescence studies of the new nitridomagnesoaluminate CaMg2AlN3

Mariusz Kubus; K. Levin; Scott Kroeker; David Enseling; Thomas Jüstel; Hans-Jürgen Meyer


European Journal of Inorganic Chemistry | 2013

A Luminescent Material: La3Cl(CN2)O3 Doped with Eu3+ or Tb3+ Ions

Mariusz Kubus; David Enseling; Thomas Jüstel; H.-Jürgen Meyer

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David Enseling

Münster University of Applied Sciences

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Thomas Jüstel

Münster University of Applied Sciences

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