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Synthesis and reactivity of olefin metathesis catalysts bearing cyclic (alkyl)(amino)carbenes

(Chemical Equation Presented) All it’s CAACed up to be! Cyclic (alkyl)-(amino)carbenes (CAACs) can be used as ligands for olefin metathesis catalysis. A dramatic steric effect of the N-aryl group of the CAAC on catalyst activity was observed and utilized to develop a new catalyst with activity comparable to standard commercially available catalysts.

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Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI

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246047-72-3, Name is (1,3-Bis(2,4,6-trimethylphenyl)-2-imidazolidinylidene)dichloro(phenylmethylene)(tricyclohexylphosphine)ruthenium, molecular formula is C46H65Cl2N2PRu, belongs to ruthenium-catalysts compound, is a common compound. In a patnet, once mentioned the new application about 246047-72-3, Safety of (1,3-Bis(2,4,6-trimethylphenyl)-2-imidazolidinylidene)dichloro(phenylmethylene)(tricyclohexylphosphine)ruthenium

Construction of bridged and fused ring systems via intramolecular michael reactions of vinylnitroso compounds

The first examples of intramolecular Michael-type reactions of in situ-formed vinylnitroso compounds with carbon nucleophiles are reported. This methodology has been used to prepare a variety of ring systems including [3.2.1]-, [2.2.2]-, and [2.2.1]-bridged carbobicyclic compounds, as well as a fused [5.5]-ring compound. Malonate anions have proven to be effective carbon nucleophiles in these conjugate addition reactions, and simple ester potassium enolates have also been successfully employed. Copyright

Balanced chemical reaction does not necessarily reveal either the individual elementary reactions by which a reaction occurs or its rate law.Safety of (1,3-Bis(2,4,6-trimethylphenyl)-2-imidazolidinylidene)dichloro(phenylmethylene)(tricyclohexylphosphine)ruthenium. In my other articles, you can also check out more blogs about 246047-72-3

Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI

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Access to skipped polyene macrolides through ring-closing metathesis: Total synthesis of the RNA polymerase inhibitor ripostatin B

Rip-Roaring! A convergent total synthesis of antibiotic ripostatin B was developed. A key step in the synthesis is a metathesis reaction allowing for a ring closure to the labile doubly skipped triene macrolide. Copyright

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Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI

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Gold nanocluster confined within a cage: Template-directed formation of a hexaporphyrin cage and its confinement capability

A novel container complex in which a 1.4 nm gold cluster is confined within a hexaporphyrin cage was synthesized; the cage showed notable confinement capability for the cluster core, but allowed the interpenetration of small molecules into the interstitial space.

Balanced chemical reaction does not necessarily reveal either the individual elementary reactions by which a reaction occurs or its rate law.Safety of (1,3-Bis(2,4,6-trimethylphenyl)-2-imidazolidinylidene)dichloro(phenylmethylene)(tricyclohexylphosphine)ruthenium. In my other articles, you can also check out more blogs about 246047-72-3

Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI

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“Close-to-Release”: Spontaneous Bioorthogonal Uncaging Resulting from Ring-Closing Metathesis

Bioorthogonal uncaging reactions offer versatile tools in chemical biology. In recent years, reactions have been developed to proceed efficiently under physiological conditions. We present herein an uncaging reaction that results from ring-closing metathesis (RCM). A caged molecule, tethered to a diolefinic substrate, is released via spontaneous 1,4-elimination following RCM. Using this strategy, which we term “close-to-release”, we show that drugs and fluorescent probes are uncaged with fast rates, including in the presence of mammalian cells or in the periplasm of Escherichia coli. We envision that this tool may find applications in chemical biology, bioengineering and medicine.

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Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI

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Note that a catalyst decreases the activation energy for both the forward and the reverse reactions and hence accelerates both the forward and the reverse reactions.Computed Properties of C46H65Cl2N2PRu, you can also check out more blogs about246047-72-3

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Factors relevant for the regioselective cyclopolymerization of 1,6-heptadiynes, N,N-dipropargylamines, N,N-dipropargylammonium salts, and dipropargyl ethers by RuIV-alkylidene-based metathesis initiators

The factors relevant for the regioselectivity of insertion of various 1,6-heptadiynes, N,N- dipropargylamines, N,N-dipropargylammonium salts anddipropargyl ethers into different RuIV-alkylidenes, i.e., [R u(CF 3COO)2(IMesH2)(=CHR), (R = 2,4,5-(MeO) 3-C6H2(l1) 2-(2-PrO)-5-NO2-C 6H3 (I3), 2-(2- PrO)-C6H4 (I4)), [Ru(CF3COO)2(1,3-dimesityl-3,4,5,6-tetrahydropyrimidin-2- ylidene)(=CH-2-(2-PrO)-5- NO2-C6H3)] (I2), [Ru(CF3COO)2(3-mesityl-1-((1?fl)-1?- phenylethyl)-imidazolin-2-ylidene)(=CH-2-(2-PrO)- C6H4)] (I5) and [Ru(C6F5COO)2(IMesH 2)(=CH-2-(2-PrO)-C6H4)] (I6), (IMesH 2 = 1,3-dimesitylimidazolin-2- ylidene), is described. 13C NMR experiments revealed that all polymers synthesized by the action of I1-I6 consisted virtually solely (>95percent) of five-membered repeat units, i.e., (cyclopent-1-enylene)-1,2-vinylenes, 3,4-(1 H-2,5-dihydropyrrylenium)-3,4- vinylenes, and (2-pentyl-2,5-dihydrofurylene)-3,4-vinylenes, respectively. The 13C NMR-based assignments were supported by the synthesis of model compounds, i.e., (cyclopent- 3-ene-1,1-diyldimethylbis(tris(3,5-dimethoxyphenyl) carboxylate) (MC1) and N-propyl-N-ethyl-2,5-dihydro- pyrrolium tetrafluoroborate (MC2), as well as by ene-yne cross metathesis reactions of 3-(propargyloxy)- 1-octyne (M6) with trimethylallylsilane. In the polymerization of N-ethyl-N,N-dipropargylamine (M9), an intermediate was isolated that shedslight onto the role of heteroatoms in the 4-position of 1,6-heptadiynes in cyclopolymerization. In addition, in the cyclopolymerization of M9 b y I4 the product resulting from backbiting has been isolated and explains for the low polymerization propensity of Ru-alkylidenes for N-alkyl-N,N-dipropargylamines.

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Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI

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A catalyst don’t appear in the overall stoichiometry of the reaction it catalyzes, but it must appear in at least one of the elementary reactions in the mechanism for the catalyzed reaction. 246047-72-3, Name is (1,3-Bis(2,4,6-trimethylphenyl)-2-imidazolidinylidene)dichloro(phenylmethylene)(tricyclohexylphosphine)ruthenium, molecular formula is C46H65Cl2N2PRu. In a Article£¬once mentioned of 246047-72-3, name: (1,3-Bis(2,4,6-trimethylphenyl)-2-imidazolidinylidene)dichloro(phenylmethylene)(tricyclohexylphosphine)ruthenium

Cross and ring-closing metathesis of 1,3-diynes: Metallotropic [1,3]-shift of ruthenium carbenes

The regio- and stereoselective enyne CM and RCM reactions involving 1,3-diynes have been developed. The ring-closing metathesis of enediynes induces a facile metallotropic [1,3]-shift of alkynyl ruthenium carbene species, thereby providing a unique entry into the synthesis of fully conjugated 1,5-diene-3-ynes. Copyright

Balanced chemical reaction does not necessarily reveal either the individual elementary reactions by which a reaction occurs or its rate law.name: (1,3-Bis(2,4,6-trimethylphenyl)-2-imidazolidinylidene)dichloro(phenylmethylene)(tricyclohexylphosphine)ruthenium. In my other articles, you can also check out more blogs about 246047-72-3

Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI

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Control of ring size selectivity by substrate directable RCM

Hydroxy groups may exert strong catalyst-directing effects in olefin metathesis reactions, which are exploited for a ring size-selective RCM reaction. The Royal Society of Chemistry 2006.

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Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI

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Balanced chemical reaction does not necessarily reveal either the individual elementary reactions by which a reaction occurs or its rate law.category: ruthenium-catalysts. In my other articles, you can also check out more blogs about 246047-72-3

Chemistry is an experimental science, and the best way to enjoy it and learn about it is performing experiments.Introducing a new discovery about 246047-72-3, Name is (1,3-Bis(2,4,6-trimethylphenyl)-2-imidazolidinylidene)dichloro(phenylmethylene)(tricyclohexylphosphine)ruthenium, category: ruthenium-catalysts.

Formal total synthesis of stigmatellin A

An efficient and stereoselective approach for the formal total synthesis of Stigmatellin A has been described. The key steps involved in this synthesis are desymmetrization of the bicyclic olefin to introduce two methyl and two hydroxyl chiral centers, Friedel Crafts acylation, regioselective demethylation, Baker-Venkataraman rearrangement and Grubbs cross metathesis.

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Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI

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A facile approach to alpha,beta-unsaturated lactams by ring-closing metathesis

[MediaObject not available: see fulltext.]A facile and efficient strategy for the synthesis of alpha,beta-unsaturated lactams through ring-closing metathesis of easily prepared diene amides is being reported here. Reaction conditions were optimized for metathetic cyclization of diene amides to obtain five- to sevenmembered unsubstituted and beta-substituted alpha,beta-unsaturated lactams in good to excellent yield.

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Reference£º
Highly efficient and robust molecular ruthenium catalysts for water oxidation,
Catalysts | Special Issue : Ruthenium Catalysts – MDPI