Search Results - "Hietsoi, Oleksandr"
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Structural diversity and photoluminescence of copper(I) carboxylates: From discrete complexes to infinite metal-based wires and helices
Published in Coordination chemistry reviews (01-07-2015)“…•The first overview of structural types exhibited by copper(I) carboxylates is provided.•Remarkable structural diversity is revealed.•The role of solid-state…”
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Preparation, Properties and Crystal Structure of syn-Isomer of 2,6-Dichlorophenyl-cyanoxime, H(2,6-diCl-PhCO): Potent Carbonyl Reductase Inhibitor
Published in Journal of chemical crystallography (01-06-2022)“…The oximino(2,6-dichlorophenyl)acetonitrile, H(2,6-diCl-PhCO) has been synthesized in a reasonably high yield of 60%, and characterized using a variety of…”
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3
Production of low-sulfur fuels from catalytic pyrolysis of waste tires using formulated red mud catalyst
Published in Heliyon (15-07-2024)“…Waste tires (WT) are produced in millions of tons per annum and their safe disposal is always a major environmental challenge because of fire hazards and the…”
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Fluorinated Copper(I) Carboxylates as Advanced Tunable p-Dopants for Organic Light-Emitting Diodes
Published in Advanced materials (Weinheim) (12-02-2014)“…Volatile copper(I) benzoates with variable degrees of fluorination are used for p‐doping of organic hole‐transport layers in single‐carrier devices,…”
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Spin Crossover in Tetranuclear Fe(II) Complexes, {[(tpma)Fe(μ-CN)]4}X4 (X = ClO4 –, BF4 –)
Published in Inorganic chemistry (15-12-2014)“…Two Fe(II) complexes, {[(tpma)Fe(μ-CN)]4}X4 (X = ClO4 – (1a), BF4 – (1b); tpma = tris(2-pyridylmethyl)amine), were prepared by reacting the {Fe(tpma)}2+…”
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Reversible Cu4 ↔ Cu6 Core Interconversion and Temperature Induced Single-Crystal-to-Single-Crystal Phase Transition for Copper(I) Carboxylate
Published in Inorganic chemistry (15-02-2010)“…The first example of a reversible [Cu4] ↔ [Cu6] interconversion for polynuclear copper(I) complexes under controlled experimental settings is reported. It…”
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Tetraethylammonium dicyanido(5,10,15,20-tetraphenylporphyrinato)ferrate(III) dichloromethane monosolvate
Published in Acta crystallographica. Section E, Structure reports online (01-08-2013)“…The title compound, (C8H20N)[Fe(C44H28N4)(CN)2]·CH2Cl2 or (Et4N)[Fe(TPP)(CN)2], was recrystallized from dichloromethane-diethyl ether. The compound…”
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Structural characterization of products in the Ni(II) – 2-oximino-2-cyan-N-piperidineacetamide (HPiPCO) system
Published in Journal of molecular structure (15-06-2022)“…•Three new Werner-type coordination compounds based N-piperidine-2-cyano-2-oximino-acetamide anion PiPCO- and Ni(II) have been prepared from aqueous and CH3CN…”
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Remarkable Structural Diversity of N‑Pyrrolidine-cyanoxime and its Ni(II) Complexes
Published in Crystal growth & design (03-07-2024)“…A novel cyanoxime, 2-oximino-2-cyano-N-pyrrolidine-acetamide (further HPyrCO), was synthesized and characterized by spectroscopic methods, thermal analysis,…”
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10
Switchable Imine and Amine Synthesis Catalyzed by a Well-Defined Cobalt Complex
Published in Organometallics (08-02-2021)“…Switchable imine and amine synthesis catalyzed by a tripodal ligand-supported well-defined cobalt complex is presented herein. A large variety of primary…”
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closo-B10H8-1-CN-10-Azinium- Anions: Photoactive Heteroditopic Ligands for Metal Complexes
Published in Inorganic chemistry (23-09-2024)“…A new class of rigid, photoactive heteroditopic anionic ligands based on the 1,10-disubstituted [closo-B10H10]2- anion was designed and six of these compounds…”
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closo-B10H8-10-PhI-1-COOH- Anion: An Intermediate for Functional Anionic Carboxylate Ligands
Published in Inorganic chemistry (29-07-2024)“…A potentially general intermediate, [closo-B10H8-10-PhI-1-COOH]-, for a class of functional anionic carboxylic acids, [closo-B10H8-10-X-1-COOH]2-, was obtained…”
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Nickel(II) Aqua Complexes with Chelating Ligands: What Happens When Water Is Gone?
Published in Crystal growth & design (05-10-2022)“…A series of hydrated Ni(II) ion complexes with 2-cyano-2-hydroxyimino-acetamide (HACO), hydroxyimino-pyridin-2-yl-acetonitrile (H2PCO),…”
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[closo-B10H8-1,10-(NHC(NH2)Me)2]: A rare zwitterionic amidinium derivative
Published in Journal of molecular structure (15-07-2023)“…•The first amidinium derivative of [closo-1-B10H10]2− is synthesized.•The title compound is the third example of a zwitterionic amidinium, the second XRD…”
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[closo-B10H8‑10-PhI-1-COOH]− Anion: An Intermediate for Functional Anionic Carboxylate Ligands
Published in Inorganic chemistry (29-07-2024)“…A potentially general intermediate, [closo-B10H8-10-PhI-1-COOH]–, for a class of functional anionic carboxylic acids, [closo-B10H8-10-X-1-COOH]2–, was obtained…”
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[closo-B10H8‑1-CN-10-Azinium]− Anions: Photoactive Heteroditopic Ligands for Metal Complexes
Published in Inorganic chemistry (23-09-2024)“…A new class of rigid, photoactive heteroditopic anionic ligands based on the 1,10-disubstituted [closo-B10H10]2– anion was designed and six of these compounds…”
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Dicyanometalates as Building Blocks for Multinuclear Iron(II) Spin-Crossover Complexes
Published in Inorganic chemistry (16-09-2019)“…A synthetic strategy featuring dicyanometalates [M(CN)2]− (M = Ag, Au) as N-coordinating ditopic linkers connecting partially blocked FeII centers has been…”
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Spin Crossover in Fe(II) Complexes with N4S2 Coordination
Published in Inorganic chemistry (20-06-2016)“…Reactions of Fe(II) precursors with the tetradentate ligand S,S′-bis(2-pyridylmethyl)-1,2-thioethane (bpte) and monodentate NCE– coligands afforded…”
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Reformulated Red Mud: a Robust Catalyst for In Situ Catalytic Pyrolysis of Biomass
Published in Energy & fuels (19-03-2020)“…Biomass feedstocks contain inorganic compounds generally classified as ash. The ash consists of compounds of potassium, calcium, magnesium, silicon,…”
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Physical structure of constitutional isomers influences antiproliferation activity of thiosemicarbazone-alkylthiocarbamate copper complexes
Published in Journal of inorganic biochemistry (01-09-2023)“…A series of hybrid thiosemicarbazone-alkylthiocarbamate copper complexes with similar electronic environments but distinct physical structures have been…”
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