Literature DB >> 28657662

From Well-Defined Alkylzinc Phosphinates to Quantum-Sized ZnO Nanocrystals.

Małgorzata Wolska-Pietkiewicz1, Agnieszka Grala2, Iwona Justyniak2, Dymitr Hryciuk1, Maria Jędrzejewska1, Justyna Grzonka2,3, Krzysztof J Kurzydłowski3, Janusz Lewiński1,2.   

Abstract

Despite various applications of alkylzinc carboxylates in chemistry and materials science, the corresponding organozinc derivatives of organophosphorus compounds still represent an insufficiently explored area. To fill this gap, we report on the synthesis of alkylzinc phosphinates and their use as efficient precursors of phosphinate-coated ZnO nanocrystals in the quantum size regime. Examples of a series of alkylzinc phosphinates with the general formula [RZn(O2 PR'2 )] (R=tBu or Et) have been prepared through equimolar reactions between ZnR2 and a selected phosphinic acid, namely dimethylphosphinic acid (dmpha-H), methylphenylphosphinic acid (mppha-H), diphenylphosphinic acid (dppha-H), or bis(4-methoxyphenyl)phosphinic acid (dmppha-H). The reactivities of alkylzinc phosphinate complexes toward H2 O and O2 have also been investigated, which resulted in the isolation of two oxo-zinc phosphinate clusters, that is, [Zn4 (μ4 -O)(dppha)6 ] and [Zn4 (μ4 -O)(dmppha)6 ], as well as the unique alkoxy(oxo)zinc cluster [Zn4 (μ4 -O)(μ2 -OtBu)(dppha)5 ]. Analysis of the crystal structures has revealed that organozinc complexes incorporating phosphinate ligands exhibit a unique capacity for shape-driven self-assembly to produce extended networks, including noncovalent quasi-porous materials. Finally, monodispersed and quantum-sized ZnO NCs coated with phosphinate ligands have been prepared using a non-external-surfactant-assisted wet-chemical organometallic approach based on well-defined [RZn(O2 PR'2 )]-type compounds. The resulting brightly luminescent ZnO NCs exhibit average core sizes and hydrodynamic diameters in the ranges 2-4.5 nm and 5-8 nm, respectively. The size of the inorganic core is slightly affected by the character of the incorporated phosphinate ligand, being smallest for ZnO NCs coated by asymmetrically substituted mppha ligands. Regardless of whether or not various phosphinate coating ligands could be controllably applied on the ZnO NC surface, no significant differences were found in the luminescence profiles of the analyzed nanosystems.
© 2017 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  alkylzinc phosphinates; metal-organic frameworks; nanocrystals; organometallic precursors; zinc oxide

Year:  2017        PMID: 28657662     DOI: 10.1002/chem.201701823

Source DB:  PubMed          Journal:  Chemistry        ISSN: 0947-6539            Impact factor:   5.236


  2 in total

1.  Tetrahedral M44-O) Motifs Beyond Zn: Efficient One-Pot Synthesis of Oxido-Amidate Clusters via a Transmetalation/Hydrolysis Approach.

Authors:  Piotr Krupiński; Michał Terlecki; Arkadiusz Kornowicz; Iwona Justyniak; Daniel Prochowicz; Jan van Leusen; Paul Kögerler; Janusz Lewiński
Journal:  Inorg Chem       Date:  2022-05-10       Impact factor: 5.436

2.  ZnO nanocrystals derived from organometallic approach: Delineating the role of organic ligand shell on physicochemical properties and nano-specific toxicity.

Authors:  Małgorzata Wolska-Pietkiewicz; Katarzyna Tokarska; Anna Wojewódzka; Katarzyna Wójcik; Elżbieta Chwojnowska; Justyna Grzonka; Piotr J Cywiński; Michał Chudy; Janusz Lewiński
Journal:  Sci Rep       Date:  2019-12-02       Impact factor: 4.379

  2 in total

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