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18 Sep 08:04

A facile access to a novel NHC-stabilized silyliumylidene ion and C-H activation of phenylacetylene

Chem. Commun., 2014, 50,12619-12622
DOI: 10.1039/C4CC05181E, Communication
Syed Usman Ahmad, Tibor Szilvasi, Shigeyoshi Inoue
This work presents a facile access to a donor-stabilized monoarylsilyliumylidene ion and its unique reaction with a terminal alkyne.
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17 Sep 21:03

Synthesis and Unexpected Reactivity of Germyliumylidene Hydride [:GeH]+ Stabilized by a Bis(N-heterocyclic carbene)borate Ligand

by Yun Xiong, Tibor Szilvási, Shenglai Yao, Gengwen Tan and Matthias Driess

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Journal of the American Chemical Society
DOI: 10.1021/ja506824s
17 Sep 20:57

Oxidative Bond Formation and Reductive Bond Cleavage at Main Group Metal Centers: Reactivity of Five-Valence-Electron MX2 Radicals

by Andrey V. Protchenko, Deepak Dange, Matthew P. Blake, Andrew D. Schwarz, Cameron Jones, Philip Mountford and Simon Aldridge

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Journal of the American Chemical Society
DOI: 10.1021/ja5062467
17 Sep 20:49

Olefin Isomerization and Hydrosilylation Catalysis by Lewis Acidic Organofluorophosphonium Salts

by Manuel Pérez, Lindsay J. Hounjet, Christopher B. Caputo, Roman Dobrovetsky and Douglas W. Stephan

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Journal of the American Chemical Society
DOI: 10.1021/ja410379x
17 Sep 20:35

Synthesis of a Dialumene-Benzene Adduct and Its Reactivity as a Synthetic Equivalent of a Dialumene

by Tomohiro Agou, Koichi Nagata, Norihiro Tokitoh
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Bonding with Al: Treatment of a dialumene-benzene adduct (1) with naphthalene and anthracene afforded the corresponding dialumene-arene adducts at room temperature. A 1,2-dialuminacyclobutene derivative was also obtained by the exchange of the C6H6 moiety of 1 with bis(trimethylsilyl)acetylene. These findings exhibit the potential of 1 as a synthetic equivalent of a dialumene.

17 Sep 20:35

An Extensive n, π, σ-Electron Delocalized Si4 Ring

by Shu-Hua Zhang, Hong-Wei Xi, Kok Hwa Lim, Cheuk-Wai So
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The tetrasilacyclobutadiene [LSi(μ-SiL′)2SiL] (L=PhC(NtBu)2, L′=2,6-iPr2C6H3NSiMe3) consists of an aromatic silicon-containing four-membered ring in which two π, two σ, and two lone-pair electrons are cyclically delocalized. The electron delocalization was illustrated by theoretical studies and reactivity with elemental sulfur to form the allylic zwitterionic cyclic compound [(LSi)2(μ-SiL′)(μ-Si(S)L′)] with 2π-electron delocalization along the Si3 skeleton.

17 Sep 20:35

A Di-Substituted Boron Dication and Its Hydride-Induced Transformation to an NHC-Stabilized Borabenzene

by Chao-Tang Shen, Yi-Hung Liu, Shie-Ming Peng, Ching-Wen Chiu
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Give me a B: A stepwise chloride abstraction of [Cp*BCl2(IMes)] resulted in the linear di-substituted boron dication [Cp*B(IMes)]2+. The hypercoordinated boron dication, stabilized in the pentagonal pyramidal [C5B]2+ cluster, reacts with superhydride to yield the N-heterocyclic carbene-stabilized borabenzene, [C5Me5B(IMes)] (see scheme).

17 Sep 20:35

Magnesiacyclopentadienes as Alkaline-Earth Metallacyclopentadienes: Facile Synthesis, Structural Characterization, and Synthetic Application

by Junnian Wei, Liang Liu, Ming Zhan, Ling Xu, Wen-Xiong Zhang, Zhenfeng Xi

Abstract

Metallacyclopentadienes have attracted much attention as building blocks for synthetic chemistry as well as key intermediates in many metal-mediated or metal-catalyzed reactions. However, metallacyclopentadienes of the alkaline-earth metals have not been reported, to say nothing of their structures, reaction chemistry, and synthetic applications. In this work, the first series of magnesiacyclopentadienes, spiro-dilithio magnesiacyclopentadienes, and dimagnesiabutadiene were synthesized from 1,4-dilithio 1,3-butadienes. Single-crystal X-ray structural analysis of these magnesiacycles revealed unique structural characteristics and bonding modes. Their reaction chemistry and synthetic application were preliminarily studied and efficient access to amino cyclopentadienes was established through their reaction with thioformamides. Experimental and DFT calculations demonstrated that these magnesiacyclopentadienes could be regarded as bis(Grignard) reagents wherein the two Mg[BOND]C(sp2) bonds have a synergetic effect when reacting with substrates.

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Mg in the middle: The first series of spiro-dilithio magnesiacyclopentadienes, magnesiacyclopentadienes, and dimagnesiabutadienes has been synthesized and structurally characterized. Unique structural characteristics and bonding were revealed, and the reaction chemistry and synthetic applications were studied. An efficient method for synthesizing amino cyclopentadienes was established by using thioformamides.

17 Sep 20:34

BN-Phenanthryne: Cyclotetramerization of an 1,2-Azaborine Derivative

by Matthias Müller, Cäcilia Maichle-Mössmer, Holger F. Bettinger

Abstract

Thermolysis of 9-azido-9-borafluorene in heptane solution produces the tetramer of a BN-phenanthryne. The isolation of the self-trapping product provides evidence for the involvement of the BN-aryne in the thermolysis reaction. Its formation may be rationalized by denitrogenation of the azide and ring enlargement.

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Making a first appearance: A BN-aryne analogous to 9,10-phenanthryne can be formed by thermolysis of the 9-azido-9-borafluorene and can undergo cyclotetramerization.

17 Sep 20:32

Synthesis of a Dimeric Magnesium(I) Compound by an MgI/MgII Redox Reaction

by Andreas Stasch

Abstract

The synthesis of dimeric magnesium(I) compounds of the general type RMgMgR (R=monoanionic substituent) is still a challenging synthetic task and limited to few examples with sterically demanding ligands with delocalized CN-frameworks that all have been accessed by Na or K metal reduction of magnesium(II) halide precursors. Here we report on the synthesis of a novel diiminophosphinato magnesium(I) compound that has been synthesized by a facile redox reaction using a known magnesium(I) complex. The synthetic strategy may be applicable to other ligand systems and can help expand the class of low oxidation state magnesium complexes even if reductions with Na or K are unsuccessful. The new dimeric magnesium(I) complex has been structurally characterized and undergoes a C[BOND]C coupling reaction with tert-butylisocyanate.

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The new switcheroo: A dimeric magnesium(I) complex has been prepared by a simple redox reaction using a known magnesium(I) complex. The new complex is stabilized by a high oxidation state phosphorane-based ligand and undergoes a C[BOND]C coupling reaction with tert-butylisocyanate.

17 Sep 20:31

N-Heterocyclic Carbene Coordinated Neutral and Cationic Heavier Cyclopropylidenes

by Anukul Jana, Isabell Omlor, Volker Huch, Henry S. Rzepa, David Scheschkewitz

Abstract

Cyclopropylidene is a transient intermediate of the allene–propyne–cyclopropene isomerization. The incorporation of heavier Group 14 elements into the cyclopropylidene scaffold has to date been restricted to the formal replacement of the carbenic carbon atom by a base-coordinated silicon(II) center. Herein we report the synthesis and characterization of NHC-coordinated heavier cyclopropylidenes (Si2GeR3X, and Si3R3Br; X=Cl, Mes; R=Tip=2,4,6-iPr3C6H2) in which the three-membered ring is exclusively formed by silicon and germanium. In case of the chloro-substituted Si2Ge-cyclopropylidene, a stable heavier cycloprop-1-yl-2-ylidene cation is obtained by NHC-induced chloride dissociation.

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He is heavy and he′s my brother: NHC-coordinated cyclopropenylidene analogues with molecular scaffolds exclusively formed by heavier Group 14 elements are accessible from the corresponding vinylidene isomers by exchange of the NHC ligand for a smaller NHC. The residual chloride in one of these heavier cyclic carbenes can be expelled by a second equivalent of NHC to generate cationic derivatives of the imidazolium type.

17 Sep 20:31

Persistent Antimony- and Bismuth-Centered Radicals in Solution

by Shintaro Ishida, Fumiya Hirakawa, Ko Furukawa, Kenji Yoza, Takeaki Iwamoto

Abstract

Stibinyl and bismuthinyl radicals are recognized as representative intermediates of antimony and bismuth compounds, but still elusive in the condensed phase. We successfully synthesized persistent stibinyl and bismuthinyl radicals in solution by facile dissociation of the corresponding dimers with bulky substituents. We characterized the radicals by NMR and UV/Vis spectroscopy and estimated the thermodynamic parameters for the dissociation equilibria. The radicals show n[RIGHTWARDS ARROW]p (HOMO[RIGHTWARDS ARROW]SOMO) transition bands at 497 nm (stibinyl) and 543 nm (bismuthinyl) in 3-methylpentane and react with a stable nitroxyl radical to give the cross-radical coupling products in good yields.

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Persistent: The facile dissociation of distibines and dibismuthines with bulky bidentate alkyl groups leads to the corresponding persistent radicals in solution. The stibinyl and bismuthinyl radicals were spectroscopically characterized, and the thermodynamic parameters for their dissociation equilibria were estimated. The radicals reacted with a stable nitroxyl radical to give the cross-radical coupling products in good yields.

17 Sep 20:30

Extensive Structural Rearrangements upon Reduction of 9H-9-Borafluorene

by Alexander Hübner, Michael Bolte, Hans-Wolfram Lerner, Matthias Wagner

Abstract

Common wisdom has it that organoboranes are readily oxidized. Described herein is that also their reduction can result in remarkable chemistry. Treatment of dimeric 9H-9-borafluorene with Li metal in toluene yields two strikingly different classes of compounds. One part of the sample reacts in a way similar to B2H6, thus affording an aryl(hydro)borane cluster reminiscent of the [B3H8] anion. The other part furnishes a dianionic boron-doped graphene flake devoid of hydrogen substituents at the boron centers and featuring a central B[DOUBLE BOND]B bond. A change in the solvent to THF allows an isolation of this dibenzo[g,p]chrysene analogue in good yields.

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What a difference an electron can make: Extensive rearrangements of the 9H-9-borafluorene scaffold occur upon injection of electrons into the system using Li metal. Two major reduction products are a [B3H8] cluster analogue and a graphene flake with a central B[DOUBLE BOND]B bond (see picture; C black, H white, B green).

17 Sep 20:29

Accessing Zinc Monohydride Cations through Coordinative Interactions

by Paul A. Lummis, Mohammad R. Momeni, Melanie W. Lui, Robert McDonald, Michael J. Ferguson, Mark Miskolzie, Alex Brown, Eric Rivard

Abstract

We present isolable examples of formal zinc hydride cations supported by N-heterocyclic carbene (NHC) donors, and investigate the dual electrophilic and nucleophilic (hydridic) character of the encapsulated [ZnH]+ units by computational methods and preliminary hydrosilylation catalysis.

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A positive approach: Isolable examples of formal zinc hydride cations supported by N-heterocyclic carbene donors are prepared. The dual electrophilic and nucleophilic (hydridic) character of the encapsulated [ZnH]+ units was investigated by computational methods and hydrosilylation catalysis.

17 Sep 20:26

Hydrogen from Formic Acid through Its Selective Disproportionation over Sodium Germanate—A Non-Transition-Metal Catalysis System

by Ruth I. J. Amos, Falk Heinroth, Bun Chan, Sisi Zheng, Brian S. Haynes, Christopher J. Easton, Anthony F. Masters, Leo Radom, Thomas Maschmeyer

Abstract

A robust catalyst for the selective dehydrogenation of formic acid to liberate hydrogen gas has been designed computationally, and also successfully demonstrated experimentally. This is the first such catalyst not based on transition metals, and it exhibits very encouraging performance. It represents an important step towards the use of renewable formic acid as a hydrogen-storage and transport vector in fuel and energy applications.

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From models to reality: A robust catalyst for the selective dehydrogenation of formic acid to liberate hydrogen gas has been designed computationally, and also demonstrated experimentally. This catalyst represents an important step towards the use of renewable formic acid as a hydrogen-storage and transport vector in fuel and energy applications.

17 Sep 20:24

Synthesis and Isolation of an Acyclic Tridentate Bis(pyridine)carbodicarbene and Studies on Its Structural Implications and Reactivities

by Yu-Chen Hsu, Jiun-Shian Shen, Bo-Chao Lin, Wen-Ching Chen, Yi-Tsu Chan, Wei-Min Ching, Glenn P. A. Yap, Chao-Ping Hsu, Tiow-Gan Ong

Abstract

The simple synthetic development of acyclic pincer bis(pyridine)carbodicarbene is depicted herein. Presented is the first isolated structural pincer carbodicarbene with a C-C-C angle of 143°, larger than the monodentate framework. More importantly, theoretical analysis showed that this carbodicarbene embodies a more allene-like character. Palladium complexes supported by this pincer ligand are active catalysts for Heck–Mizoroki and Suzuki–Miyaura coupling reactions.

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The acyclic pincer ligand bis(pyridine)carbodicarbene was synthesized, isolated, and characterized. It features a C-C-C angle of 143°, which is larger than that in the monodentate framework. Palladium complexes supported by this ligand are active catalysts in Heck–Mizoroki and Suzuki–Miyaura coupling reactions.

17 Sep 20:22

N-Methylacridinium Salts: Carbon Lewis Acids in Frustrated Lewis Pairs for σ-Bond Activation and Catalytic Reductions

by Ewan R. Clark, Michael J. Ingleson

Abstract

N-methylacridinium salts are Lewis acids with high hydride ion affinity but low oxophilicity. The cation forms a Lewis adduct with 4-(N,N-dimethylamino)pyridine but a frustrated Lewis pair (FLP) with the weaker base 2,6-lutidine which activates H2, even in the presence of H2O. Anion effects dominate reactivity, with both solubility and rate of H2 cleavage showing marked anion dependency. With the optimal anion, a N-methylacridinium salt catalyzes the reductive transfer hydrogenation and hydrosilylation of aldimines through amine–boranes and silanes, respectively. Furthermore, the same salt is active for the catalytic dehydrosilylation of alcohols (primary, secondary, tertiary, and ArOH) by silanes with no observable over-reduction to the alkanes.

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Softly does it: N-methylacridinium salts are shown to be versatile Lewis acids within frustrated Lewis pairs for stoichiometric and catalytic transformations by through H2 activation.

17 Sep 20:22

Temperature-Dependent Electron Shuffle in Molecular Group 13/15 Intermetallic Complexes

by Chelladurai Ganesamoorthy, Dieter Bläser, Christoph Wölper, Stephan Schulz

Abstract

Monovalent RAl (R=HC[C(Me)N(2,6-iPr2C6H3)]2) reacts with E2Et4 (E=Sb, Bi) with insertion into the weak E[BOND]E bond and subsequent formation of RAl(EEt2)2 (E=Sb 1; Bi 2). The analogous reactions of RGa with E2Et4 yield a temperature-dependent equilibrium between RGa(EEt2)2 (E=Sb 3; Bi 4) and the starting reagents. RIn does not interact with Sb2Et4 under various reaction conditions, but formation of RIn(BiEt2)2 (5) was observed in the reaction with Bi2Et4 at low temperature.

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Doing the shuffle: Reactions of monovalent RAl with E2Et4 (E=Sb, Bi; Ar=2,6-iPr2C6H3) proceed with E[BOND]E bond cleavage and formation of RAl(EEt2)2, whereas RGa forms a reversible chemical equilibrium with E2Et4 and RGa(EEt2)2. RIn does not react with Sb2Et4, but also forms a reversible equilibrium with Bi2Et4 at low temperatures.

17 Sep 20:16

Synthesis, Structures, and Electronic Properties of Triple- and Double-Decker Ruthenocenes Incorporated by a Group 14 Metallole Dianion Ligand

by Takuya Kuwabara, Jing-Dong Guo, Shigeru Nagase, Takahiro Sasamori, Norihiro Tokitoh and Masaichi Saito

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Journal of the American Chemical Society
DOI: 10.1021/ja507330p