171 results on '"Nemtarev, A. V."'
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2. Phosphonium and arsonium salts based on alantolactone
3. Terpenes-Modified Lipid Nanosystems for Temozolomide, Improving Cytotoxicity against Glioblastoma Human Cancer Cells In Vitro
4. Synthesis of novel mannopyranosyl betulinic acid phosphoniohexyl ester
5. Synthesis and in vitro evaluation of triphenylphosphonium derivatives of acetylsalicylic and salicylic acids: structure-dependent interactions with cancer cells, bacteria, and mitochondria
6. New metal complexes of citrus pectin with magnesium ions: synthesis, properties, and immunomodulatory activity
7. Reaction of R-pulegone with P–H phosphonium salts
8. Synthesis of C(28)-linker derivatives of betulinic acid bearing phosphonate group
9. 2,2,2-Trichloro-4-methoxy-1,3,2-benzodioxaphosphole in the reactions with terminal acetylenes
10. Novel Mitochondria-Targeted Amphiphilic Aminophosphonium Salts and Lipids Nanoparticles: Synthesis, Antitumor Activity and Toxicity
11. Cell-Modulating Effect of Poly(Aspartic Acid) and Its Complex with Cationic Polyaspartamide
12. 3,28-Diacetoxylup-20(29)-ene-30-oic Acid and Its ω-Bromoalkyl Esters
13. Synthesis of C-29-phosphonium derivatives of 3,28-diacetoxylup-20(29)-en-30-oic acid
14. New complexes of pectic polysaccharides with nonsteroidal anti-inflammatory drugs
15. Terpenes-Modified Lipid Nanosystems for Temozolomide, Improving Cytotoxicity against Glioblastoma Human Cancer Cells In Vitro.
16. Activation/Inhibition of Cholinesterases by Excess Substrate: Interpretation of the Phenomenological b Factor in Steady-State Rate Equation
17. Synthesis, properties, and antianemic activity of new metal complexes of sodium pectinate with iron and calcium
18. A convenient synthesis of 8,8’-spirobi(chromano-1,2-oxaphosphinine) derivatives
19. Bifunctionalized Betulinic Acid Conjugates with C‑3-Monodesmoside and C‑28-Triphenylphosphonium Moieties with Increased Cancer Cell Targetability.
20. Modern Trends of Organic Chemistry in Russian Universities
21. Novel triphenylphosphonium amphiphilic conjugates of glycerolipid type: synthesis, cytotoxic and antibacterial activity, and targeted cancer cell delivery
22. Quaternary phosphonium salts based on quinopimaric acid.
23. Reaction of methyl 2-methylidene-3-oxolup-20(29)-en-28-oate with triphenylphosphonium trifluoromethanesulfonate
24. 3,3,6-Trimethyl-2-chlorocyclohexeno[1,2-d]-1,2-oxaphosphol-4-ene-2-oxide as a convenient precursor for the synthesis of dimephosphone analogs
25. Reactions of arylenedioxytrihalophosphoranes with acetylenes 14. Methoxyphenylacetylenes in the reaction with 2,2,2-trichlorobenzo-1,3,2-dioxaphosphole
26. Chemoselectivity of reactions of 3,6-di-tert-butyl-1,2-benzoquinone with phosphorylated derivatives of pyrogallol and oxyhydroquinone
27. Esterification of betulin with ω-bromoalkanoic acids
28. The discrimination between phospholipids of diverse structure and phosphacoumarins of various hydrophobicity through fluorescent response of Tb-doped silica nanoparticles decorated by cationic surfactant
29. Synthesis of 4-[3,4-di-(2,3,4-tri)methoxyphenyl]benzo[e]-1,2-oxaphosphorines
30. Self-association of a phosphate receptor along and with a lipidomimetic in water: Effect of receptor low concentrations on the catalytic activity of mixed systems
31. Rational Design 2-Hydroxypropylphosphonium Salts as Cancer Cell Mitochondria-Targeted Vectors: Synthesis, Structure, and Biological Properties
32. Reactions of phenylenedioxytrihalophosphoranes with arylacetylenes: XIII. Reaction of 5-tert-butyl-2,2,2-trihalo-1,3,2λ5-benzodioxaphospholes with acetylenes
33. Reaction of arylenedioxytrihalophosphoranes with acetylenes 12. Alkylacetylenes in the reaction with 2,2,2-trihalobenzo-1,3,2-dioxaphospholes
34. Supramolecular water systems based on the new amphiphilic phosphacoumarins: synthesis, self-organizations and reactivity
35. Novel triphenylphosphonium amphiphilic conjugates of glycerolipid type: synthesis, cytotoxic and antibacterial activity, and targeted cancer cell deliveryElectronic supplementary information (ESI) available. See DOI: https://doi.org/10.1039/d2md00363e
36. Reaction of arylenedioxytrihalophosphoranes with acetylenes 11. Electronic effect of the substituent in arylacetylene on the reaction rate
37. Regiochemistry of reactions of 2-chloro-4(5)-dichlorophosphinyloxybenzo-1,3,2-dioxophospholes with phosphorus pentachloride and chlorine
38. Reaction of P,P,P-trihalogenbenzo-1,3,2-dioxaphospholes with terminal acetylenes: Phosphorus-carbon bond formation and the ipso-substitution of oxygen by carbon
39. Reaction of 3,6-di(tert-butyl)-1,2-benzoquinone with terminal alkylacetylenes in the presence of phosphorus trichloride
40. Reactions of 3,5-di(tert-butyl)-1,2-benzoquinone with terminal acetylenes in the presence of phosphorus trichloride. ipso-Substitution of the tert-butyl group
41. Pyridine and benzyltriethylammonium chloride ate-complexes of 2,2,2-trichlorobenzo[ d]-1,3,2-dioxaphosphole in reactions with alk-1-ynes
42. Effect of electronic nature of substituents in arylacetylene on the rate of reaction with 2,2,2-trichloroareno-1,3,2-dioxaphosphols
43. Reaction of 2′,2′,2′,2″,2″,2″-Hexabromo-1,4-di(benzo-1,3,2-dioxaphosphol-5-yl)benzene with phenylacetyleneom
44. Reactions of 2,2-dichloro(dibromo)-2-fluorobenzo[ d]-1,3,2-dioxaphospholes with alk-1-ynes
45. The reaction of hex-1-yne with 2,2,2-trichlorobenzo[ d]-1,3,2-dioxaphosphole
46. Synthesis, Anticancer, and Antibacterial Activity of Betulinic and Betulonic Acid C-28-Triphenylphosphonium Conjugates with Variable Alkyl Linker Length
47. Regioselectivity of the reaction of 4,6-di-tert-butyl-2,2,2-trichloro-1,3,2λ5-benzodioxaphosphole with hex-1-yne. ipso substitution of tert-butyl group
48. Predominant formation of 4-butyl-2,5-dichloro-2-oxo-1,2λ5-benzoxaphosphinine-6-carbonyl chloride in the reaction of 2,2,2-trichloro-1,3,2λ5-benzodioxaphosphole-5-carbonyl chloride with hex-1-yne
49. Chemoselectivity of the reaction of 2-chloro-4(5)-(dichlorophosphoryloxy)-1,3,2-benzodioxaphosphole 2-oxides with phosphorus pentachloride
50. Synthesis of bis(6-chloro-2-oxo-2H-1,2λ5-benzoxaphosphinin-4-yl)arenes
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