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41.
Ya. D. Boyko A. Yu. Sukhorukov S. L. Ioffe V. A. Tartakovsky 《Russian Chemical Bulletin》2015,64(6):1240-1248
The review summarizes the known approaches to diastereo- and enantioselective synthesis of 7-(3-cyclopentyloxy-4-methoxyphenyl)hexahydro-3H-pyrrolizin-3-one (Pyrromilast), a highly active inhibitor of subtype 4B phosphodiesterase and a promising agent for treatment of chronic obstructive pulmonary disease. 相似文献
42.
A. I. Govdi I. V. Sorokina D. S. Baev A. O. Bryzgalov T. G. Tolstikova G. A. Tolstikov S. F. Vasilevsky 《Russian Chemical Bulletin》2015,64(6):1327-1334
Efficient and versatile synthetic procedures towards novel derivatives of betulonic acid via Mannich reaction, Sonogashira cross-coupling, and copper(i)-catalyzed 1,3-dipolar cyclo-additions were developed. Introduction of secondary amines (Mannich reaction) into betulonic acid amides led to derivatives possessing marked spasmolytic activity, which is not characteristic of the triterpene fragment. 相似文献
43.
N. M. Bravaya E. E. Faingol’d A. N. Galiullin O. N. Babkina S. L. Saratovskikh A. V. Chernyak V. D. Makhaev 《Russian Chemical Bulletin》2015,64(9):2076-2082
1H NMR method showed that in systems based on triisobutylaluminum (TIBA) and triphenylcyclopropenylium [Ph3C3]+[B(C6F5)4]–(CPB) or triphenylmethylium [Ph3C]+[B(C6F5)4]–(TB) perfluorophenylborates in a toluene–dichloromethane mixture the Friedel–Crafts process occurs with the formation of ditolylmethane (DTM) accompanied by the complete decomposition of TIBA to form isobutane. 19F NMR spectroscopy showed that the [B(C6F5)4]–anion decomposes in the systems to form B(C6F5)3 and HC6F5. The short-living [AlBu2 i]+ cation formed in the reaction of perfluorophenylborates with TIBA is assumed to be the species initiating the process. It has been shown that CPB is less reactive than TB. The addition of a stoichiometric amount of Ph2CCpFluHfMe2 exerts no effect on the process with the CPB-containing system but inhibits the reaction in the case of TB. 相似文献
44.
E. P. Levanova V. S. Vakhrina V. A. Grabel’nykh I. B. Rozentsveig N. V. Russavskaya A. I. Albanov L. V. Klyba N. A. Korchevin 《Russian Chemical Bulletin》2015,64(9):2083-2089
A reaction of organic dichalcogenides R2Y2 (R = Ph, Bn, Pr; Y = S, Se) with 1,4-dichlorobut-2-yne in the system hydrazine hydrate–KOH leads to four principal products: 1,4-bis(organylchalcogenyl)but-2-ynes, 1-organylchalcogenylbut-1-en-3-ynes, 4-organylchalcogenylbut-1-en-3-ynes, and 3(5)-methylpyrazole. The selectivity of the formation of individual products is determined by the ratio of the substrates used and the reaction temperature. A plausible mechanism of chalcogenation considered in the work agrees with the effect of the nature of chalcogene atoms and organic substituents R on stability of intermediates and products. The stabilization of carbanions by α chalcogene-containing groups corresponds to the following order: PhS > PhSe > BnS > BnSe > PrS. 相似文献
45.
A. K. Gatin M. V. Grishin S. A. Gurevich N. V. Dokhlikova A. A. Kirsankin V. M. Kozhevin E. S. Lokteva T. N. Rostovshchikova S. Yu. Sarvadii B. R. Shub D. A. Yavsin 《Russian Chemical Bulletin》2015,64(10):2337-2343
Nickel nanoparticles were deposited on the surface of highly oriented pyrolytical graphite by laser electrodispersion and precipitation from a solution of reverse micelles. The particles were studied using scanning tunneling microscopy and spectroscopy as well as Auger spectroscopy. The elemental composition of the nanoparticles and specific features of the electronic structure of their surface were determined. Adsorption of molecular hydrogen was also studied. 相似文献
46.
47.
The synthesis of an octavalent bolaamphiphile with D-glucose moiety as branching unit has been designed and accomplished via 1,3-dipolar cycloaddition of bis(tetra-O-propargylglucoside) and 8 equiv of 2-azidoethyl β-D-lactoside. 相似文献
48.
David Gnutt Mimi Gao Oliver Brylski Dr. Matthias Heyden Prof. Dr. Simon Ebbinghaus 《Angewandte Chemie (International ed. in English)》2015,54(8):2548-2551
Biomolecules evolve and function in densely crowded and highly heterogeneous cellular environments. Such conditions are often mimicked in the test tube by the addition of artificial macromolecular crowding agents. Still, it is unclear if such cosolutes indeed reflect the physicochemical properties of the cellular environment as the in‐cell crowding effect has not yet been quantified. We have developed a macromolecular crowding sensor based on a FRET‐labeled polymer to probe the macromolecular crowding effect inside single living cells. Surprisingly, we find that excluded‐volume effects, although observed in the presence of artificial crowding agents, do not lead to a compression of the sensor in the cell. The average conformation of the sensor is similar to that in aqueous buffer solution and cell lysate. However, the in‐cell crowding effect is distributed heterogeneously and changes significantly upon cell stress. We present a tool to systematically study the in‐cell crowding effect as a modulator of biomolecular reactions. 相似文献
49.
Cooperative Lewis Pairs Based on Late Transition Metals: Activation of Small Molecules by Platinum(0) and B(C6F5)3 下载免费PDF全文
Sebastian J. K. Forrest Jamie Clifton Dr. Natalie Fey Prof. Paul G. Pringle Dr. Hazel A. Sparkes Prof. Duncan F. Wass 《Angewandte Chemie (International ed. in English)》2015,54(7):2223-2227
A Lewis basic platinum(0)–CO complex supported by a diphosphine ligand and B(C6F5)3 act cooperatively, in a manner reminiscent of a frustrated Lewis pair, to activate small molecules such as hydrogen, CO2, and ethene. This cooperative Lewis pair facilitates the coupling of CO and ethene in a new way. 相似文献
50.
Acceleration of Acetal Hydrolysis by Remote Alkoxy Groups: Evidence for Electrostatic Effects on the Formation of Oxocarbenium Ions 下载免费PDF全文
Dr. Angie Garcia Douglas A. L. Otte Dr. Walter A. Salamant Jillian R. Sanzone Prof. K. A. Woerpel 《Angewandte Chemie (International ed. in English)》2015,54(10):3061-3064
In contrast to observations with carbohydrates, experiments with 4‐alkoxy‐substituted acetals indicate that an alkoxy group can accelerate acetal hydrolysis by up to 20‐fold compared to substrates without an alkoxy group. The acceleration of ionization in more flexible acetals can be up to 200‐fold when compensated for inductive effects. 相似文献