Zobrazeno 1 - 10
of 28
pro vyhledávání: '"Krisztina Frey"'
Publikováno v:
Catalysts, Vol 11, Iss 5, p 577 (2021)
Progress in non-covalent/self-assembled immobilization methods on (photo)electrode materials for molecular catalysts could broaden the scope of attainable systems. While covalent linkage (though considered more stable) necessitates functional groups
Externí odkaz:
https://doaj.org/article/90ef8e495be441a9b15f7c1b44abccc7
Autor:
Dongyu Liu, Miklós Németh, Márta M. Móricz, József S. Pap, Tímea Benkó, Mingtao Li, Lionel Vayssieres, Krisztina Frey, Éva Kováts, Nóra V. May, Dávid Lukács
Publikováno v:
Catalysis Science & Technology. 11:6411-6424
A molecular pre-catalyst complex, [CuII(indH)(OClO3)(NCCH3)](ClO4)·CH3CN (1·CH3CN) with the 3N pincer ligand 1,3-bis(2′-pyridyl)iminoisoindoline (indH) was immobilized on indium tin oxide (ITO) transparent conducting substrate to generate O2 elec
Autor:
József S. Pap, Dávid Lukács, Tímea Benkó, Levente Illés, Miklós Németh, Krisztina Frey, Sahir M. Al-Zuraiji
Publikováno v:
Reactions
Volume 1
Issue 1
Pages 3-36
Volume 1
Issue 1
Pages 3-36
Pincer ligands occupy three coplanar sites at metal centers and often support both stability and reactivity. The five-coordinate [FeIIICl2(tia-BAI)] complex (tia-BAI&minus
= 1,3-bis(2&rsquo
thiazolylimino)isoindolinate(&minus
)) was co
= 1,3-bis(2&rsquo
thiazolylimino)isoindolinate(&minus
)) was co
Autor:
Miklós Németh, Tímea Benkó, József S. Pap, Levente Illés, Sahir M. Al-Zuraiji, Attila Sulyok, Krisztina Frey
Publikováno v:
Journal of Catalysis. 381:615-625
Herein, we compare the electrochemical and electrocatalytic properties of two selected, water-insoluble Fe(II) coordination complexes made with the non-symmetric, bidentate ligands, 2-(2′-pyridyl)benzimidazole (PBI) in [Fe(PBI)3](OTf)2 (1, OTf− =
Publikováno v:
Catalysts, Vol 11, Iss 577, p 577 (2021)
Progress in non-covalent/self-assembled immobilization methods on (photo)electrode materials for molecular catalysts could broaden the scope of attainable systems. While covalent linkage (though considered more stable) necessitates functional groups
Autor:
Dániel Oszetzky, Cs.S. Daróczi, G. Molnár, Krisztina Frey, Attila Nagy, I. Dézsi, G. Pető, L. F. Kiss, Alpár Horváth, Zsolt Endre Horváth
Publikováno v:
Vacuum. 175:109270
The crystal structure, the magnetic properties, and the valence band density of states of an oxide dispersion strengthened (ODS) steel with nominal composition of Fe–18%Cr–13%Ni-2.5%Mo-3.2%Si-0.1%C +1 wt% Y2O3 was investigated applying volumetric
Publikováno v:
Reaction Kinetics, Mechanisms and Catalysis. 115:45-65
SiO2 supported Au–Ag nanoparticles prepared by the adsorption of bimetallic colloids of various Ag/Au molar ratio (0/100, 13/87, 23/77, 33/67, 51/49, 100/0) were characterized and studied in selective glucose oxidation reaction earlier (Benko et al
Autor:
Andrea Beck, Dávid Ferenc Srankó, Tímea Benkó, O. Geszti, Boglárka Maróti, György Sáfrán, Krisztina Frey, Zoltán Schay
Publikováno v:
Applied Catalysis A: General. 479:103-111
SiO2 supported Ag–Au bimetallic catalysts were prepared by sol adsorption method with 10/90, 20/80, 33/67, and 50/50 Ag/Au molar ratios. Reduction of HAuCl4 in Ag sol resulted in alloyed Ag–Au colloid particles and that structure remained after c
Autor:
E. Kótai, Krisztina Frey, A. Szanyo, G.-Y. Molnar, George Kaptay, Gábor Petö, Attila Tóth, Zsófia Baji
Publikováno v:
Journal of Nanoscience and Nanotechnology. 12:5009-5015
The possibility of fabricating nanoparticles by ion bombardment was investigated by the ion bombardment of indium films on oxide covered Si and Cr surfaces. The different masses of implanting specimen ensured the different energy transfer while the s
Autor:
S.P. Chenakin, György Sáfrán, Viacheslav Iablokov, Rafal Szukiewicz, János Osán, Krisztina Frey, István E. Sajó, Norbert Kruse
Publikováno v:
Journal of Catalysis. 287:30-36
Non-stoichiometric Mn-oxides (MnO x and MnO y ) were prepared by temperature-programmed oxidation (TPO) of Mn-oxalates, MnC 2 O 4 ·3H 2 O and MnC 2 O 4 ·2H 2 O. Both oxides provide high specific surface areas (525 m 2 g −1 and 385 m 2 g −1 , re