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Featured researches published by M. Puchalska.


New Journal of Chemistry | 2010

Copper(I) iodide complexes containing new aliphatic aminophosphine ligands and diimines—luminescent properties and antibacterial activity

Radosław Starosta; Magdalena Florek; Jarosław Król; M. Puchalska; Andrzej Kochel

The new, water soluble, aminomethylphosphines were synthesized from P(CH2OH)3 and alkylpiperazines: P(CH2N(CH2CH2)2NCH3)3 (1) and P(CH2N(CH2CH2)2NCH2CH3)3 (2). Described already in literature P(CH2N(CH2CH2)2O)3 (3) were also obtained. The spectroscopic 1H, 31P and 13C NMR analyses and crystallographic studies of 1, 2 and 3 demonstrate that all these compounds have similar structures and spectroscopic properties, which almost do not depend on aliphatic rings in the molecules. Heteroleptic copper(I) iodide complexes with phosphines mentioned above and 2,2′-bipyridine (bpy): [CuI(bpy)P(CH2N(CH2CH2)2NCH3)3] (1B), [CuI(bpy)P(CH2N(CH2CH2)2NCH2CH3)3] (2B), [CuI(bpy)P(CH2N(CH2CH2)2O)3] (3B) or 1,10-phenanthroline (phen): [CuI(phen)P(CH2N(CH2CH2)2NCH3)3] (1P), [CuI(phen)P(CH2N(CH2CH2)NCH2CH3)3] (2P), [CuI(phen)P(CH2N(CH2CH2)2O)3] (3P) were also synthesized. All complexes were characterized by 1H, 31P and 13C NMR spectroscopy also. Molecular structures of 1P·PhCH3 and 3P·0.5Cu2I2(phen)2 were determined from single crystal X-ray diffraction studies. Upon excitation at 470 nm, all complexes in the solid state exhibit red photoluminescence due to charge transfer transition. The luminescence of phen complexes is higher than the luminescence of bpy ones. The presented phosphines and copper(I) complexes were screened for their in vitro antibacterial and antifungal activity against Escherichia coli, Pseudomonas aeruginosa, Staphylococcus aureus strains and Candida albicans. All the copper complexes exhibit significant antibacterial activity against Staphylococcus aureus strains. The activity of 1,10-phenanthroline complexes is higher than 2,2′-bipyridine complexes.


New Journal of Chemistry | 2012

Solid state luminescence of copper(I) (pseudo)halide complexes with neocuproine and aminomethylphosphanes derived from morpholine and thiomorpholine

Radosław Starosta; Urszula K. Komarnicka; M. Puchalska; Maciej Barys

The copper(I) iodide or copper(I) isothiocyanate complexes with 2,9-dimethyl-1,10-phenanthroline (dmp) and two interesting aminomethylphosphanes: P(CH2N(CH2CH2)2O)3 (1) and novel P(CH2N(CH2CH2)2S)3 (2): CuI(dmp)P(CH2N(CH2CH2)2O)3 (1I), which was presented in our previous papers, CuI(dmp)P(CH2N(CH2CH2)2S)3 (2I), CuNCS(dmp)P(CH2N(CH2CH2)2O)3 (1T) and CuNCS(dmp)P(CH2N(CH2CH2)2S)3 (2T) are discussed in this work. The chemical structures of three new complexes were determined in solution by means of NMR spectroscopy and in solid state using X-ray measurements. For all presented complexes the coordination geometry about the Cu(I) centre is pseudo-tetrahedral showing the small flattening and large rocking distortions. All compounds crystallize as the discrete dimers bound by π-stacking interactions between dmp rings, which strongly depend on the phosphane ligand. Investigated complexes exhibit orange photoluminescence in the solid state of highly diversified intensity, position of the luminescence band and the lifetimes. On the basis of TDDFT calculations, the CT bands observed in UV-Vis spectra are assigned to the two mixed transitions from the CuX (X = I or NCS) bond with a small admixture of the CuP bond to π* orbitals of the dmp ligand: (MX,MPR3)LCT. However, emission bands can be interpreted to be of (MX)LCT type.


Dalton Transactions | 2011

Structures, electronic properties and solid state luminescence of Cu(I) iodide complexes with 2,9-dimethyl-1,10-phenanthroline and aliphatic aminomethylphosphines or triphenylphosphine

Radosław Starosta; M. Puchalska; Joanna Cybińska; Maciej Barys; Anja V. Mudring


Journal of Luminescence | 2013

Infrared and cooperative luminescence in Yb3+ doped calcium aluminate CaAl4O7

M. Puchalska; Marcin Sobczyk; J. Targowska; A. Watras; Eugeniusz Zych


Optical Materials | 2004

Spectroscopic properties and luminescence enhancement of lanthanide mixed complexes Lnβ3L in zirconia glasses

Renata Reisfeld; J. Legendziewicz; M. Puchalska; Tsiala Saraidarov


Materials Chemistry and Physics | 2014

Effect of charge compensation on up-conversion and UV excited luminescence of Eu3+ in Yb3+–Eu3+ doped calcium aluminate CaAl4O7

M. Puchalska; Eugeniusz Zych; Marcin Sobczyk; A. Watras; P.J. Dereń


Optical Materials | 2010

Optical properties of Eu3+-doped CaAl4O7 synthesized by the Pechini method

M. Puchalska; Y. Gerasymchuk; Eugeniusz Zych


Inorganica Chimica Acta | 2004

Pyridine-2,6-dicarboxylate and perchlorate bridged hydrogen bonded 1D chains involving manganese(III)-cyclam moiety: synthesis, X-ray crystal structures and magnetic study ☆

Nizamuddin Shaikh; Anangamohan Panja; Pradyot Banerjee; Maria Kubiak; Zbigniew Ciunik; M. Puchalska; J. Legendziewicz; Pavel Vojtíšek


Journal of Alloys and Compounds | 2008

Magnetic studies of lanthanide complexes with amino acids

M. Puchalska; Jerzy Mrozinski; J. Legendziewicz


Journal of Luminescence | 2012

Effect of Na+ co-dopant and activator concentration on luminescent properties of CaGa4O7:Eu3+

M. Puchalska; Eugeniusz Zych

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A. Watras

Polish Academy of Sciences

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P.J. Dereń

Polish Academy of Sciences

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