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We synthesized and characterized a novel anhydrous zinc(II) aceto 1-ethyl-3-methylimidazolium (EMIM) coordination compound with the simplified empirical formula Zn(OAc)[EMIM]. The title compound is structurally related to recently reported Mn(OAc)[EMIM], and Fe(OAc)[EMIM]. While in the other two ionic salts metal cations were organized in infinite chains of corner-sharing octahedra, Zn in Zn(OAc)[EMIM] assumes two different coordination environments, including Zn(OAc) octahedra and Zn(OAc) tetrahedral sites, linked together by carboxylate oxygen-sharing to form isolated [Zn(OAc)] trinuclear linear clusters. The homoleptic trinuclear cluster configuration of zinc is important because it provides a distinct coordination environment that can influence the cluster's electronic and structural properties, offering unique opportunities for designing novel materials with specific characteristics. This configuration is unique as it avoids the presence of water in the coordination shell, which can alter the behavior of the cluster, thus enabling more controlled and predictable interactions in various applications, including catalysis. Similar to the Mn and Fe compounds, in the title compound, the EMIM moieties do not interact directly with the Zn and contribute to the structure framework of the compound through hydrogen bonds with the acetate anions. Two different polymorphs of Zn(OAc)[EMIM] were crystallized and characterized, one with monoclinic symmetry (α-phase) and one with triclinic symmetry (β-phase). The α-phase has a melting temperature of 80 °C, while the β-phase melts at ∼81 °C, thus both can be considered as metal-containing ionic liquids. Both forms of the Zn(OAc)[EMIM] compound are porous and plausibly capable of accommodating other types of molecules.
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http://dx.doi.org/10.1021/acsomega.4c06753 | DOI Listing |
Dalton Trans
May 2025
Nikolaev Institute of Inorganic Chemistry SB RAS, Acad. Lavrentiev ave. 3, 630090 Novosibirsk, Russian Federation.
Tungsten trioxide can be used as a readily available source in the one-step preparation of a variety of cyanide and chalcocyanide mononuclear and cluster complexes of tungsten. In our study of phase formation in the system 6WO + 8Q + 32NaCN (Q = S, Se or Te) in the temperature range of 250-700 °C, we determined which soluble complex compounds are formed, the temperature limits of their existence and the influence of synthesis time on the composition of the products. As the temperature increases, the process begins with the formation of mononuclear and then cluster complexes and ends with the formation of tungsten dichalcogenides: [W(CN)] → [WS]/[WSO] → [{WQ}(CN)] (Q = S or Se), [{WSO}(CN)] → [{WQ}(CN)] (Q = S, Se or Te) → WQ (Q = S or Se).
View Article and Find Full Text PDFACS Omega
February 2025
Hawai'i Institute of Geophysics and Planetology, University of Hawai'i at Ma̅noa, 1680 East West Road, Post 602, Honolulu, Hawaii 96822, United States.
We synthesized and characterized a novel anhydrous zinc(II) aceto 1-ethyl-3-methylimidazolium (EMIM) coordination compound with the simplified empirical formula Zn(OAc)[EMIM]. The title compound is structurally related to recently reported Mn(OAc)[EMIM], and Fe(OAc)[EMIM]. While in the other two ionic salts metal cations were organized in infinite chains of corner-sharing octahedra, Zn in Zn(OAc)[EMIM] assumes two different coordination environments, including Zn(OAc) octahedra and Zn(OAc) tetrahedral sites, linked together by carboxylate oxygen-sharing to form isolated [Zn(OAc)] trinuclear linear clusters.
View Article and Find Full Text PDFMolecules
November 2023
Department of Chemistry, University at Albany, State University of New York, 1220 Washington Avenue, ETEC, Albany, NY 12226, USA.
The paper describes a heterometallic mixed-ligand hexanuclear precursor [NaMn(thd)(OAc)] () (thd = 2,2,6,6-tetramethyl-3,5-heptadionate; OAc = acetate) that was designed based on its lithium homoleptic analogue, [LiMn(thd)], by replacing one of the thd ligands with an acetate group in order to accommodate 5-coordinated sodium instead of tetrahedral lithium ion. The complex, which is highly volatile and soluble in a variety of common solvents, has been synthesized by both the solid-state and solution methods. The unique "dimer-of-trimers" heterometallic structure consists of two trinuclear [NaMn(thd)] units firmly bridged by two acetate ligands.
View Article and Find Full Text PDFInorg Chem
June 2023
Department of Chemistry, Graduate School of Science, Osaka University, Toyonaka, Osaka 560-0043, Japan.
Treatment of nickel(II) nitrate with the iridium(III) metalloligand -[Ir(apt)] (apt = 3-aminopropanethiolate) gave the trinuclear complex [Ni{Ir(apt)}](NO) ([](NO)), in which the nickel center has a formal oxidation state of +III. Chemical or electrochemical oxidation and reduction of [](NO) generated the corresponding trinuclear complexes [Ni{Ir(apt)}](NO) ([](NO)) and [Ni{Ir(apt)}](NO) ([](NO)) with one-electron oxidated and reduced states, respectively. Single-crystal X-ray crystallography revealed that the nickel center in [](NO) is situated in a highly distorted octahedron due to Jahn-Teller effect, while the nickel center in each of [](NO) and [](NO) adopts a normal octahedral geometry.
View Article and Find Full Text PDFDalton Trans
December 2021
Department of Chemistry and Biochemistry, The University of Texas at Arlington, Arlington, Texas 76019, USA.
Homoleptic, tetranuclear copper(I) pyrazolates {[3,5-(-Bu)Pz]Cu}, {[3-(CF)-5-(-Bu)Pz]Cu}, and {[4-Br-3,5-(-Pr)Pz]Cu} are excellent stand-alone catalysts for azide-alkyne cycloaddition reactions (CuAAC). This work demonstrates that a range of pyrazolates, including those with electron donating and electron-withdrawing groups to sterically demanding substituents on the pyrazolyl backbones, can serve as effective ligand supports on tetranuclear copper catalysts. However, in contrast to the tetramers and also highly fluorinated {[3,5-(CF)Pz]Cu}, trinuclear copper(I) complexes such as {[3,5-(-Pr)Pz]Cu} and {[3-(CF)-5-(CH)Pz]Cu} supported by relatively electron rich pyrazolates display poor catalytic activity in CuAAC.
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