Best results in : Research Potential Pokaż wszystkie wyniki (6)
Search results for: organophosphorus chemistry
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Katedry Chemii Organicznej
Research PotentialSynteza nowych związków organicznych w szczególności posiadających aktywność biologiczną. Opracowywanie i sprawdzanie w praktyce nowych metod syntezy związków organicznych. Inżynieria kryształów oraz zastosowanie dichroizmu kołowego. Badanie czynności optycznej związków konfiguracyjnie labilnych.
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KatedrA Chemii Fizycznej
Research Potential1.Termodynamika i struktura roztworów, oddziaływania międzycząsteczkowe w roztworach - badania termodynamiczne, spektroskopowe i teoretyczne. 2. Fizykochemiczne podstawy analizy środowiskowej.
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Katedra Chemii Analitycznej
Research PotentialZespół naukowo-badawczy z Katedry Chemii Analitycznej prowadzi badania podstawowe w zakresie: -opracowania nowych procedur analitycznych przeznaczonych do wykrywania, identyfikacji oraz oznaczenia szerokiego spectrum analitów w próbkach różnego typu materiałów charakteryzujących się złożonym a często także zmiennym składem matrycy, -budowy i badań charakterystyki analitycznej nowych typów elektronicznych nosów, -oszacowania wpływu...
Other results Pokaż wszystkie wyniki (8)
Search results for: organophosphorus chemistry
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Reactions of lithiated diphosphanes R2P-P(SiMe3)LiTHF (R = tBu, iPr) with [(PNP)TiCl2]. Two different coordination types of phosphanylphosphido ligand to the metal center.
Publication[(PNP)TiCl2] (PNP = N[2-PiPr2-4-methylphenyl]2) reacts with one equivalent of lithium derivative of diphosphane R2P-P(SiMe3)LinTHF (R = tBu, iPr) in toluene and forms the first complex with g1-coordination [(PNP)Ti(Cl){g1-P(SiMe3)-PtBu2}] (1) and complex with g2-coordination [(PNP)Ti(Cl){g2-P(SiMe3)-PiPr2}] (2) of phosphanylphosphido ligands to the titanium center. The similar reaction with two equivalents of tBu2P-P(SiMe3)LinTHF...
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First Copper(I) and Silver(I) Complexes Containing Phosphanylphosphido Ligands
PublicationThree new complexes with phosphanylphosphido ligands, [Cu4{μ2-P(SiMe3)-PtBu}4](1), [Ag4{μ2-P(SiMe3)-PtBu2}4](2) and [Cu{η1-P(SiMe3)-PiPr2}2]–[Li(Diglyme)2] (3) were synthesized and structurally characterized by X-ray diffraction, NMR spectroscopy, and elemental analysis. Complexes 1 and 2 were obtained in the reactionsof lithium derivative of diphosphane tBu2P-P(SiMe3)Li·2.7THF withCuCl and [iBu3PAgCl]4, respectively....
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Ring Opening of Triflates Derived from Benzophospholan-3-one Oxides by Aryl Grignard Reagents as a Route to 2‑Ethynylphenyl(diaryl)phosphine Oxides
PublicationA new simple method for the synthesis of 2-ethynylphenyl(diaryl)phosphine oxides via ring opening of benzophosphol-3-yl triflates has been developed. This process occurs via nucleophilic attack of a Grignard reagent at the phosphorus center, which results in ring opening and cleavage of a leaving group. The reaction proceeds under mild conditions and, within 15−60 min, leads to a library of previously unavailable 2-ethynylphenylphosphine...
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Determination of organophosphorus and organonitrogen pesticides in water samples
PublicationPesticides are among the most dangerous environmental pollutants because of their stability, mobility and long-term effects on living organisms. Their presence in sources of drinking water, essential to life, is a particular danger. In water, these compounds can undergo transformations, leading to the production of substances of even greater toxicity. Legal regulations are in force, stipulating the highest permissible level of...
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Solventless and solvent-minimized sample preparation techniques for determining currently used pesticides in water samples: A review
PublicationThe intensification of agriculture means that increasing amounts of toxic organic and inorganic compounds are entering the environment. The pesticides generally applied nowadays are regarded as some of the most dangerous contaminants of the environment. Their presence in the environment, especially in water, is hazardous because they cause human beings to become more susceptible to disease. For these reasons, it is essential to...