128 results on '"Gutsul, Evgenii I."'
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2. Electrocatalytic proton reduction by nickel(II) diarylamido/bis(phosphine) PNP ionic pincer complex
3. Electrochemical generation and in situ EPR- and UV–vis- observation of aminyl-radical diarylamido/bis(phosphine) pincer complexes of Ni, Pd and Pt
4. Stepwise carbon dioxide hydrosilylation catalyzed by bimetallic complexes [CpM(CO)2(μ-CO)···Pd([formula omitted])]
5. Pincer–dipeptide and pseudodipeptide conjugates: Synthesis and bioactivity studies
6. The Role of L‐Ligands in Silica‐Supported Ti Oxo/Imido Heterometathesis Catalysts.
7. Tungsten Oxide Dispersed on Silica as Robust and Readily Available Oxo/Imido Heterometathesis Catalyst
8. A family of hexacopper phenylsilsesquioxane/acetate complexes: synthesis, solvent‐controlled cage structures, and catalytic activity
9. Unsymmetrical Pd(II) Pincer Complexes with Benzothiazole and Thiocarbamate Flanking Units: Expedient Solvent-Free Synthesis and Anticancer Potential
10. Cagelike Manganesesilsesquioxane Complexes: Synthesis via an Acetone Approach, Structure, and Catalytic Activity for Toluene Oxidation
11. A Family of Cagelike Mn-Silsesquioxane/Bathophenanthroline Complexes: Synthesis, Structure, and Catalytic and Antifungal Activity
12. Readily available Ti-based in situ catalytic system for oxo/imido heterometathesis.
13. The interplay of proton accepting and hydride donor abilities in the mechanism of step-wise boron hydrides alcoholysis
14. The Role of Non-Covalent Interactions in the Reactions between Palladium Hydrido Complex with Amidoarylphosphine Pincer Ligand and Brønsted Acids
15. Reactivity of Heterobimetallic Ion Pairs in Formic Acid Dehydrogenation
16. Modulation of the Cytotoxic Properties of Pd(II) Complexes Based on Functionalized Carboxamides Featuring Labile Phosphoryl Coordination Sites
17. Hybrid Silsesquioxane/Benzoate Cu7-Complexes: Synthesis, Unique Cage Structure, and Catalytic Activity
18. Versatile Reactivity of Half-Sandwich Rhodium(III) Iminophosphonamide Complexes
19. Acetone Factor in the Design of Cu4-, Cu6-, and Cu9-Based Cage Coppersilsesquioxanes: Synthesis, Structural Features, and Catalytic Functionalization of Alkanes
20. Cage-like manganesesilsesquioxanes: features of their synthesis, unique structure, and catalytic activity in oxidative amidations
21. Hybrid Silsesquioxane/Benzoate Cu 7 -Complexes: Synthesis, Unique Cage Structure, and Catalytic Activity.
22. Reactions of the borole complex CpRh(η5-C4H4BPh) with monocationic organometallic fragments
23. Palladium(II) Pincer Complexes of Functionalized Amides with S-Modified Cysteine and Homocysteine Residues: Cytotoxic Activity and Different Aspects of Their Biological Effect on Living Cells
24. Acetone Factor in the Design of Cu4‑, Cu6‑, and Cu9‑Based Cage Coppersilsesquioxanes: Synthesis, Structural Features, and Catalytic Functionalization of Alkanes.
25. Specific and non-specific influence of the environment on dihydrogen bonding and proton transfer to [RuH 2{P(CH 2CH 2PPh 2) 3}]
26. Bifunctional activation of amine-boranes by the W/Pd bimetallic analogs of “frustrated Lewis pairs”
27. Patterning of various materials by the photochemical reaction of [(C5H5)Fe(C6H6)]+ complex with salicylate dyes
28. Binuclear Copper(I) Borohydride Complex Containing Bridging Bis(diphenylphosphino) Methane Ligands: Polymorphic Structures of [(µ2-dppm)2Cu2(η2-BH4)2] Dichloromethane Solvate
29. Structural and energetic aspects of hydrogen bonding and proton transfer to ReH 2(CO)(NO)(PR 3) 2 and ReHCl(CO)(NO)(PMe 3) 2 by IR and X-ray studies
30. Synthesis, structural properties and reactivity of ruthenocene-based pincer Pd(ii) tetrahydroborate
31. Patterning of various materials by the photochemical reaction of [(C5H5)Fe(C6H6)]+ complex with salicylate dyes.
32. High-Nuclearity (Cu8-Based) Cage Silsesquioxanes: Synthesis and Structural Study
33. Neutral transition metal hydrides as acids in hydrogen bonding and proton transfer: media polarity and specific solvation effects
34. Mechanistic studies on the interaction of [([[kappa].sup.3]-P,P,P-N[P.sub.3])Ir[H.sub.3]] [N[P.sub.3] = N[(C[H.sub.2]C[H.sub.2]P[Ph.sub.2]).sub.3] with HB[F.sub.4] and fluorinated alcohols by combined NMR, IR, and DFT techniques
35. Intermolecular hydrogen bonding between neutral transition metal hydrides [eta(super 5)-C5H5]M(CO)(sub 3)H (M = Mo, W) and bases
36. Cluster [Co3(CO)3(µ2-CO)3(µ3-C8H8)]-as a Ligand: Experimental and Theoretical Study
37. Highly Cytotoxic Palladium(II) Pincer Complexes Based on Picolinylamides Functionalized with Amino Acids Bearing Ancillary S-Donor Groups
38. High-Nuclearity (Cu8-Based) Cage Silsesquioxanes: Synthesis and Structural Study.
39. Highly Cytotoxic Palladium(II) Pincer Complexes Based on Picolinylamides Functionalized with Amino Acids Bearing Ancillary S-Donor Groups
40. PCP Pincer Iridium Chemistry – Coordination of Pyridines to [(tBu PCP)IrH(Cl)]
41. Mechanistic study of the protonation of [(k3-P,P,P-NP3)Ir(H)3] [NP3 = N(CH2CH2PPh2)3] by HBF4 and fluorinated alcohols through combined NMR, IR and DFT techniques
42. Cluster [Co3(CO)3(µ2-CO)3(µ3-C8H8)]- as a Ligand: Experimental and Theoretical Study.
43. Binuclear Copper(I) Borohydride Complex Containing Bridging Bis(diphenylphosphino) Methane Ligands: Polymorphic Structures of [(μ2-dppm)2Cu2(η²-BH4)2] Dichloromethane Solvate.
44. Dihydrogen Bonding in Complex (PP3)RuH(η1-BH4) Featuring Two Proton-Accepting Hydride Sites: Experimental and Theoretical Studies
45. Dimerization Mechanism of Bis(triphenylphosphine)copper(I) Tetrahydroborate: Proton Transfer via a Dihydrogen Bond
46. Mechanistic Studies on the Interaction of [(κ3-P,P,P-NP3)IrH3] [NP3 = N(CH2CH2PPh2)3] with HBF4 and Fluorinated Alcohols by Combined NMR, IR, and DFT Techniques
47. PCP Pincer Iridium Chemistry - Coordination of Pyridines to [( tBuPCP)IrH(Cl)].
48. Intermolecular Hydrogen Bonding between Neutral Transition Metal Hydrides (η5-C5H5)M(CO)3H (M = Mo, W) and Bases
49. Low‐Temperature IR and NMR Studies of the Interaction of Group 8 Metal Dihydrides with Alcohols
50. Synthesis, Characterization, and Interconversion of the Rhenium Polyhydrides [ReH3(η4-NP3)] and [ReH4(η4-NP3)]+ {NP3 = tris[2-(diphenylphosphanyl)ethyl]amine}
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