Redox-Active Porous Coordination Polymers Prepared by Trinuclear Heterometallic Pivalate Linking with the Redox-Active Nickel(II) Complex: Synthesis, Structure, Magnetic and Redox Properties, and Electrocatalytic Activity in Organic Compound Dehalogenation in Heterogeneous Medium
A.S. Lytvynenko
1
,
O. Cador
3
,
S. Golhen
3
,
G.G. Aleksandrov
2
,
A M Mishura
1
,
V E Titov
1
,
L. Ouahab
3
,
Igor L. Eremenko
2
,
V. M. Novotortsev
2
1
L. V. Pisarzhevskii Institute of Physical Chemistry of the National Academy of Sciences of the Ukraine, Prospekt Nauki 31, Kiev 03028, Ukraine
|
Publication type: Journal Article
Publication date: 2014-04-29
scimago Q1
wos Q1
SJR: 0.958
CiteScore: 7.4
Impact factor: 4.7
ISSN: 00201669, 1520510X
PubMed ID:
24779588
Inorganic Chemistry
Physical and Theoretical Chemistry
Abstract
Linking of the trinuclear pivalate fragment Fe2CoO(Piv)6 by the redox-active bridge Ni(L)2 (compound 1; LH is Schiff base from hydrazide of 4-pyridinecarboxylic acid and 2-pyridinecarbaldehyde, Piv(-) = pivalate) led to formation of a new porous coordination polymer (PCP) {Fe2CoO(Piv)6}{Ni(L)2}1.5 (2). X-ray structures of 1 and 2 were determined. A crystal lattice of compound 2 is built from stacked 2D layers; the Ni(L)2 units can be considered as bridges, which bind two Fe2CoO(Piv)6 units. In desolvated form, 2 possesses a porous crystal lattice (SBET = 50 m(2) g(-1), VDR = 0.017 cm(3) g(-1) estimated from N2 sorption at 78 K). At 298 K, 2 absorbed a significant quantity of methanol (up to 0.3 cm(3) g(-1)) and chloroform. Temperature dependence of molar magnetic susceptibility of 2 could be fitted as superposition of χMT of Fe2CoO(Piv)6 and Ni(L)2 units, possible interactions between them were taken into account using molecular field model. In turn, magnetic properties of the Fe2CoO(Piv)6 unit were fitted using two models, one of which directly took into account a spin-orbit coupling of Co(II), and in the second model the spin-orbit coupling of Co(II) was approximated as zero-field splitting. Electrochemical and electrocatalytic properties of 2 were studied by cyclic voltammetry in suspension and compared with electrochemical and electrocatalytic properties of a soluble analogue 1. A catalytic effect was determined by analysis of the catalytic current dependency on concentrations of the substrate. Compound 1 possessed electrocatalytic activity in organic halide dehalogenation, and such activity was preserved for the Ni(L)2 units, incorporated into the framework of 2. In addition, a new property occurred in the case of 2: the catalytic activity of PCP depended on its sorption capacity with respect to the substrate. In contrast to homogeneous catalysts, usage of solid PCPs may allow selectivity due to porous structure and simplify separation of product.
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Lytvynenko A. et al. Redox-Active Porous Coordination Polymers Prepared by Trinuclear Heterometallic Pivalate Linking with the Redox-Active Nickel(II) Complex: Synthesis, Structure, Magnetic and Redox Properties, and Electrocatalytic Activity in Organic Compound Dehalogenation in Heterogeneous Medium // Inorganic Chemistry. 2014. Vol. 53. No. 10. pp. 4970-4979.
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Lytvynenko A., Kolotilov S. V., Kiskin M. A., Cador O., Golhen S., Aleksandrov G., Mishura A. M., Titov V. E., Ouahab L., Eremenko I. L., Novotortsev V. M. Redox-Active Porous Coordination Polymers Prepared by Trinuclear Heterometallic Pivalate Linking with the Redox-Active Nickel(II) Complex: Synthesis, Structure, Magnetic and Redox Properties, and Electrocatalytic Activity in Organic Compound Dehalogenation in Heterogeneous Medium // Inorganic Chemistry. 2014. Vol. 53. No. 10. pp. 4970-4979.
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TY - JOUR
DO - 10.1021/ic403167m
UR - https://doi.org/10.1021/ic403167m
TI - Redox-Active Porous Coordination Polymers Prepared by Trinuclear Heterometallic Pivalate Linking with the Redox-Active Nickel(II) Complex: Synthesis, Structure, Magnetic and Redox Properties, and Electrocatalytic Activity in Organic Compound Dehalogenation in Heterogeneous Medium
T2 - Inorganic Chemistry
AU - Lytvynenko, A.S.
AU - Kolotilov, Sergey V.
AU - Kiskin, Mikhail A.
AU - Cador, O.
AU - Golhen, S.
AU - Aleksandrov, G.G.
AU - Mishura, A M
AU - Titov, V E
AU - Ouahab, L.
AU - Eremenko, Igor L.
AU - Novotortsev, V. M.
PY - 2014
DA - 2014/04/29
PB - American Chemical Society (ACS)
SP - 4970-4979
IS - 10
VL - 53
PMID - 24779588
SN - 0020-1669
SN - 1520-510X
ER -
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BibTex (up to 50 authors)
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@article{2014_Lytvynenko,
author = {A.S. Lytvynenko and Sergey V. Kolotilov and Mikhail A. Kiskin and O. Cador and S. Golhen and G.G. Aleksandrov and A M Mishura and V E Titov and L. Ouahab and Igor L. Eremenko and V. M. Novotortsev},
title = {Redox-Active Porous Coordination Polymers Prepared by Trinuclear Heterometallic Pivalate Linking with the Redox-Active Nickel(II) Complex: Synthesis, Structure, Magnetic and Redox Properties, and Electrocatalytic Activity in Organic Compound Dehalogenation in Heterogeneous Medium},
journal = {Inorganic Chemistry},
year = {2014},
volume = {53},
publisher = {American Chemical Society (ACS)},
month = {apr},
url = {https://doi.org/10.1021/ic403167m},
number = {10},
pages = {4970--4979},
doi = {10.1021/ic403167m}
}
Cite this
MLA
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Lytvynenko, A.S., et al. “Redox-Active Porous Coordination Polymers Prepared by Trinuclear Heterometallic Pivalate Linking with the Redox-Active Nickel(II) Complex: Synthesis, Structure, Magnetic and Redox Properties, and Electrocatalytic Activity in Organic Compound Dehalogenation in Heterogeneous Medium.” Inorganic Chemistry, vol. 53, no. 10, Apr. 2014, pp. 4970-4979. https://doi.org/10.1021/ic403167m.
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