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Heteronuclear 3 d/DyIII coordination clusters as catalysts in a domino reaction

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Heteronuclear 3 d/DyIII coordination clusters as catalysts in a domino reaction. / Griffiths, Kieran; Gallop, Christopher W.D.; Abdul-Sada, Alaa et al.
In: Chemistry - A European Journal, Vol. 21, No. 17, 20.04.2015, p. 6358-6361.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Griffiths, K, Gallop, CWD, Abdul-Sada, A, Vargas, A, Navarro, O & Kostakis, GE 2015, 'Heteronuclear 3 d/DyIII coordination clusters as catalysts in a domino reaction', Chemistry - A European Journal, vol. 21, no. 17, pp. 6358-6361. https://doi.org/10.1002/chem.201500505

APA

Griffiths, K., Gallop, C. W. D., Abdul-Sada, A., Vargas, A., Navarro, O., & Kostakis, G. E. (2015). Heteronuclear 3 d/DyIII coordination clusters as catalysts in a domino reaction. Chemistry - A European Journal, 21(17), 6358-6361. https://doi.org/10.1002/chem.201500505

Vancouver

Griffiths K, Gallop CWD, Abdul-Sada A, Vargas A, Navarro O, Kostakis GE. Heteronuclear 3 d/DyIII coordination clusters as catalysts in a domino reaction. Chemistry - A European Journal. 2015 Apr 20;21(17):6358-6361. doi: 10.1002/chem.201500505

Author

Griffiths, Kieran ; Gallop, Christopher W.D. ; Abdul-Sada, Alaa et al. / Heteronuclear 3 d/DyIII coordination clusters as catalysts in a domino reaction. In: Chemistry - A European Journal. 2015 ; Vol. 21, No. 17. pp. 6358-6361.

Bibtex

@article{ecd4472e57144a9581dbbfbd6c0d2cf2,
title = "Heteronuclear 3 d/DyIII coordination clusters as catalysts in a domino reaction",
abstract = "Three isoskeletal tetranuclear coordination clusters with general formula [MII2DyIII2L4(EtOH)6](ClO4)2·2 EtOH, (M=Co, 1; M=Ni, 2) and [NiII2DyIII2L4Cl2(CH3CN)2]·2 CH3CN (3), have been synthesized and characterized. These air-stable compounds, and in particular 3, display efficient homogeneous catalytic behavior in the room-temperature synthesis of trans-4,5-diaminocyclopent-2-enones from 2-furaldehyde and primary or secondary amines under a non-inert atmosphere.",
keywords = "amines, coordination clusters, domino reactions, dysprosium, homogeneous catalysis",
author = "Kieran Griffiths and Gallop, {Christopher W.D.} and Alaa Abdul-Sada and Alfredo Vargas and Oscar Navarro and Kostakis, {George E.}",
year = "2015",
month = apr,
day = "20",
doi = "10.1002/chem.201500505",
language = "English",
volume = "21",
pages = "6358--6361",
journal = "Chemistry - A European Journal",
issn = "0947-6539",
publisher = "Wiley-VCH Verlag",
number = "17",

}

RIS

TY - JOUR

T1 - Heteronuclear 3 d/DyIII coordination clusters as catalysts in a domino reaction

AU - Griffiths, Kieran

AU - Gallop, Christopher W.D.

AU - Abdul-Sada, Alaa

AU - Vargas, Alfredo

AU - Navarro, Oscar

AU - Kostakis, George E.

PY - 2015/4/20

Y1 - 2015/4/20

N2 - Three isoskeletal tetranuclear coordination clusters with general formula [MII2DyIII2L4(EtOH)6](ClO4)2·2 EtOH, (M=Co, 1; M=Ni, 2) and [NiII2DyIII2L4Cl2(CH3CN)2]·2 CH3CN (3), have been synthesized and characterized. These air-stable compounds, and in particular 3, display efficient homogeneous catalytic behavior in the room-temperature synthesis of trans-4,5-diaminocyclopent-2-enones from 2-furaldehyde and primary or secondary amines under a non-inert atmosphere.

AB - Three isoskeletal tetranuclear coordination clusters with general formula [MII2DyIII2L4(EtOH)6](ClO4)2·2 EtOH, (M=Co, 1; M=Ni, 2) and [NiII2DyIII2L4Cl2(CH3CN)2]·2 CH3CN (3), have been synthesized and characterized. These air-stable compounds, and in particular 3, display efficient homogeneous catalytic behavior in the room-temperature synthesis of trans-4,5-diaminocyclopent-2-enones from 2-furaldehyde and primary or secondary amines under a non-inert atmosphere.

KW - amines

KW - coordination clusters

KW - domino reactions

KW - dysprosium

KW - homogeneous catalysis

U2 - 10.1002/chem.201500505

DO - 10.1002/chem.201500505

M3 - Journal article

AN - SCOPUS:84926644199

VL - 21

SP - 6358

EP - 6361

JO - Chemistry - A European Journal

JF - Chemistry - A European Journal

SN - 0947-6539

IS - 17

ER -