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Coordination networks based on boronate and benzoxaborolate ligands

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Coordination networks based on boronate and benzoxaborolate ligands. / Sene, Saad; Pizzocaro, Marie Alix; Vezzani, Joris et al.
In: Crystals, Vol. 6, No. 5, 48, 02.05.2016.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Sene, S, Pizzocaro, MA, Vezzani, J, Reinholdt, M, Gaveau, P, Berthomieu, D, Bégu, S, Gervais, C, Bonhomme, C, Renaudin, G, Mesbah, A, Lee, AVD & Smith, ME 2016, 'Coordination networks based on boronate and benzoxaborolate ligands', Crystals, vol. 6, no. 5, 48. https://doi.org/10.3390/cryst6050048

APA

Sene, S., Pizzocaro, M. A., Vezzani, J., Reinholdt, M., Gaveau, P., Berthomieu, D., Bégu, S., Gervais, C., Bonhomme, C., Renaudin, G., Mesbah, A., Lee, A. V. D., & Smith, M. E. (2016). Coordination networks based on boronate and benzoxaborolate ligands. Crystals, 6(5), Article 48. https://doi.org/10.3390/cryst6050048

Vancouver

Sene S, Pizzocaro MA, Vezzani J, Reinholdt M, Gaveau P, Berthomieu D et al. Coordination networks based on boronate and benzoxaborolate ligands. Crystals. 2016 May 2;6(5):48. doi: 10.3390/cryst6050048

Author

Sene, Saad ; Pizzocaro, Marie Alix ; Vezzani, Joris et al. / Coordination networks based on boronate and benzoxaborolate ligands. In: Crystals. 2016 ; Vol. 6, No. 5.

Bibtex

@article{71bed7e98fb84dcc8635559e0941a870,
title = "Coordination networks based on boronate and benzoxaborolate ligands",
abstract = "Despite the extensive range of investigations on boronic acids (R-B(OH)2), some aspects of their reactivity still need to be explored. This is the case for the coordination chemistry of boronate anions (R-B(OH)3−), which has only recently been started to be studied. The purpose of this review is to summarize some of the key features of boronate ligands (and of their cyclic derivatives, benzoxaborolates) in materials: (i) coordination properties; (ii) spectroscopic signatures; and (iii) emerging applications.",
author = "Saad Sene and Pizzocaro, {Marie Alix} and Joris Vezzani and Marc Reinholdt and Philippe Gaveau and Doroth{\'e}e Berthomieu and Sylvie B{\'e}gu and Christel Gervais and Christian Bonhomme and Guillaume Renaudin and Adel Mesbah and Lee, {Arie van der} and Smith, {Mark Edmund}",
year = "2016",
month = may,
day = "2",
doi = "10.3390/cryst6050048",
language = "English",
volume = "6",
journal = "Crystals",
issn = "2073-4352",
publisher = "Multidisciplinary Digital Publishing Institute (MDPI)",
number = "5",

}

RIS

TY - JOUR

T1 - Coordination networks based on boronate and benzoxaborolate ligands

AU - Sene, Saad

AU - Pizzocaro, Marie Alix

AU - Vezzani, Joris

AU - Reinholdt, Marc

AU - Gaveau, Philippe

AU - Berthomieu, Dorothée

AU - Bégu, Sylvie

AU - Gervais, Christel

AU - Bonhomme, Christian

AU - Renaudin, Guillaume

AU - Mesbah, Adel

AU - Lee, Arie van der

AU - Smith, Mark Edmund

PY - 2016/5/2

Y1 - 2016/5/2

N2 - Despite the extensive range of investigations on boronic acids (R-B(OH)2), some aspects of their reactivity still need to be explored. This is the case for the coordination chemistry of boronate anions (R-B(OH)3−), which has only recently been started to be studied. The purpose of this review is to summarize some of the key features of boronate ligands (and of their cyclic derivatives, benzoxaborolates) in materials: (i) coordination properties; (ii) spectroscopic signatures; and (iii) emerging applications.

AB - Despite the extensive range of investigations on boronic acids (R-B(OH)2), some aspects of their reactivity still need to be explored. This is the case for the coordination chemistry of boronate anions (R-B(OH)3−), which has only recently been started to be studied. The purpose of this review is to summarize some of the key features of boronate ligands (and of their cyclic derivatives, benzoxaborolates) in materials: (i) coordination properties; (ii) spectroscopic signatures; and (iii) emerging applications.

U2 - 10.3390/cryst6050048

DO - 10.3390/cryst6050048

M3 - Journal article

VL - 6

JO - Crystals

JF - Crystals

SN - 2073-4352

IS - 5

M1 - 48

ER -