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20篇 您的检索式:作者名="Jerzykiewicz"
    题名 作者 年代 出处 被引量
1Toxic contaminants in polyoxyethylene alkylamines显示文摘Wala-Jwezykidwicz A Jerzykiewicz W Kedzierzyn-Koierzun-Koile/Polandznafi A 1999Tenside1999,36,3:1
2EPR investigations of structure of humic acids from compost, soil, peat and soft brown coal upon oxidation and metal uptake显示文摘JEZIERSKI A CZECHOWSKI F JERZYKIEWICZ M 2000Applied Magnetic Resonance2000,18,1:1
3EPR investigations of structure ofhumic acids from compost, soil, peat and soft brown coal upon oxidation and metal uptake显示文摘Jezierski A Czechowski F Jerzykiewicz M 2000Applied Magnetic Resonance2000,18,1:1
4Highly efficient magnesium initiators for lactide polymerization显示文摘EJFLER J KOBYLKA M JERZYKIEWICZ L B 2005Dalton Transactions2005,11,:1
5Formation of new radicals in humic acids uponinteraction Pb(II)ions显示文摘MARIA JERZYKIEWICZ 2004Geoderma2004,122,:1
6Upper Triassic foreland sequences of the Ordos Basin in China, in stratigraphie evolution of foreland basins 显示文摘LI Si-tian YANG Shi-gong Jerzykiewicz T 1995SEPM Special Publiction1995,,52:1
7The effect of Hg(Ⅱ ) ions on the free radicals of humic substances and their model compounds 显示文摘JERZYKIEWICZ M 2013Chemosphere2013,92,4:1
8EPR investigations of structure of humic acids from compost, soil, peat and soft brown coal upon oxidation and metal uptake显示文摘JEZIERSKI A CZECHOWSKI F JERZYKIEWICZ M 2000Applied Magnetic Resonance2000,18,1:1
9Fluorescence behaviour of Zn and Ni complexes of humic acids from different sources显示文摘Rosaria Provenzano M D' Orazio V Jerzykiewicz M 2004Chemosphere2004,55,6:1
10Toxic contaminantsinpolyoxyethylenealkylamines显示文摘Wala-Jerzykiewicz A Jerzykiewicz W Sobczynska A 1999Tenside1999,36,3:1
11Fluorescence behaviour of Zn and Ni complexes of humic acids from different sources 显示文摘Provenzano M R D'Orazio V Jerzykiewicz M 2004Chemosphere2004,55,6:1
12Electron paramagnetic resonance(EPR) studies on stable and transient radicals in humic acids from compost, soil, peat and brown coal显示文摘Jezierski A Czechowski F Jerzykiewicz M 2000Spectrochimica Acta Part A2000,56,:1
13Formation of New Radicals in Humic Acids upon Interaction Pb(Ⅱ) Ions显示文摘Jerzykiewicz Maria 2004Geoderma2004,122,24:1
14Electron paramagnetic resonance(EPR) studies on stable and transient radicals in humic acids from compost, soil, peat and brown coal显示文摘Jezierski A Czechowski F Jerzykiewicz M 2000Spectrochimica Acta Part A2000,56,:1
15Formation of new radicals in humic acids upon interaction Pb(Ⅱ) ions显示文摘Jerzykiewicz M 2004Geoderma2004,122,:1
16Upper Triassic foreland sequences of the Ordos Basin in China, in stratiigraphic evolution of Foreland Basins 显示文摘LI Si-tian YANG Shi-gong Tom Jerzykiewicz 1995SEPM Special Publication1995,52,:1
17Fluorescence behaviour of Zn and Ni complexes ofhumic acids from different sources显示文摘Maria Rosaria Provenzano Valeria D'Orazio Mafia Jerzykiewicz 2004Chemosphere2004,55,6:1
18Formation of new radicals in humic acids upon interaction Pb(Ⅱ) ions显示文摘Maria Jerzykiewicz 2004Gooderma2004,122,:1
19Formation of new radicals in humic acids upon interaction Pb(Ⅱ)ions显示文摘JERZYKIEWICZ M 2004Gooderma2004,122,:1
20How minor structural changes generate major consequences in photophysical properties of RE coordination compounds;resonance effect,LMCT state显示文摘Lanthanide coordination compounds of the formula Na[Ln(L)4](1 Ln),where Ln=La^3+,Eu^3+,Gd^3+,Tb^3+,L=[L]-and HL=dimethyl(4-methylphenylsulfo nyl)amidophosphate,were synthesized.Their structural and spectro scopic properties were discussed in detail based on X-ray diffraction measurements,IR spectroscopy,absorption and emission spectroscopy at 293 and 77 K and theoretical calculations of the intramolecular energy transfer(IET)rates.DFT calculations were used to investigate the 1 Ln electronic properties re quired to calculate the transition rates.30 and 22 pathways of intramolecular nonradiative energy transfer were examined in the case of 1 Eu and 1 Tb,respectively.It is shown that the main pathway for sensitization of the lanthanide emission is either the triplet(1 Eu)or singlet(1 Tb)transfer,occurring mainly through the exchange mechanism.The energy rates for energy transfer from S1 and T1 equal WS=1.53×10^5 s^-1(1 Eu),WT=5.14×10^6 s^-1(1 Eu)and WS=4.09×10^7 s^-1(1 Tb),WT=6.88×10^5 s^-1(1 Tb).The crucial role of the 7 F5 level in the energy transfer process of 1 Tb and the participation of the LMCT state in the depopulation of the ligand singlet state of 1 Eu were demonstrated.The influence of the resonance effect on the splitting of the7 F1 level in 1 Eu was analyzed.By comparing the properties of 1 Ln with the properties of 2 Ln coordination compounds,sharing the same ligand and crystallizing in the same crystallographic system(monoclinic),but with a different space group,it is demonstrated how slight structural changes can affect the photophysical properties of Ln compounds.Ewa Kasprzycka Albano N.Carneiro Neto Viktor A.Trush Lucjan Jerzykiewicz Vladimir M.Amirkhanov Oscar L.Malta Janina Legendziewicz Paula Gawryszewska 2020Journal of Rare Earths2020,38,5:0
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