Synthesis, structure, and reactivity of mixed-sandwich zirconacarborane methyl complex (η5-C5Me5)[η1:η5-(Me2NCH2CH2)C2B9H10]ZrMe
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[1] Dongmei Liu,et al. Synthesis, structure, and alkyne insertion of a mixed-sandwich zirconacarborane alkyl , 2015 .
[2] Jingying Yang,et al. Synthesis, structure and reactivity of rare-earth metallacarborane alkyls [η(1):η(5)-O(CH2)2C2B9H9]Ln(σ:η(1)-CH2C6H4-o-NMe2)(THF)2. , 2015, Dalton transactions.
[3] Yangjian Quan,et al. Transition-metal-mediated three-component cascade cyclization: selective cage B-C(sp2) coupling of carborane with aromatics and synthesis of carborane-fused tricyclics. , 2014, Journal of the American Chemical Society.
[4] Yong Tang,et al. Side arm strategy for catalyst design: modifying bisoxazolines for remote control of enantioselection and related. , 2014, Accounts of chemical research.
[5] Yangjian Quan,et al. Three-component [2+2+1] cross-cyclotrimerization of carboryne, unactivated alkene, and trimethylsilylalkyne co-mediated by Zr and Ni. , 2013, Journal of the American Chemical Society.
[6] Li Xiang,et al. Reaction of [η(1):η(5)-(Me2NCH2CH2)C2B9H10]TaMe3 with aryl isonitriles: tantallacarborane-mediated facile cleavage of C-N multiple bonds. , 2013, Chemical communications.
[7] Fabian G. Schröder,et al. Deprotonated P-ylides As Templates for Novel Cyclopentadienyl Phosphonioalkyl, -alkylidene, and -alkylidyne (CpPC) Constrained-Geometry Complexes , 2013 .
[8] N. Hosmane. Boron Science : New Technologies and Applications , 2011 .
[9] Yue-Peng Cai,et al. Synthesis, structural characterization, and reactivity of Group 4 metallacarboranes bearing the ligand [H2C(C5Me4)(C2B9H10)]3-. , 2011, Chemistry, an Asian journal.
[10] G. Bellachioma,et al. Synthesis, Characterization, Interionic Structure, and Self-Aggregation Tendency of Zirconaaziridinium Salts Bearing Long Alkyl Chains , 2011 .
[11] Zuowei Xie,et al. Palladium/nickel-cocatalyzed cycloaddition of 1,3-dehydro-o-carborane with alkynes. Facile synthesis of C,B-substituted carboranes. , 2010, Journal of the American Chemical Society.
[12] M. A. Antunes,et al. Structure and Reactivity of Neutral and Cationic trans-N,N′-Dibenzylcyclam Zirconium Alkyl Complexes , 2010 .
[13] Hao Shen,et al. Atom-economical synthesis of N-heterocycles via cascade inter-/intramolecular C-N bond-forming reactions catalyzed by Ti amides. , 2010, Journal of the American Chemical Society.
[14] P. V. van Leeuwen,et al. Bite angle effects of diphosphines in C-C and C-X bond forming cross coupling reactions. , 2009, Chemical Society reviews.
[15] Zuowei Xie,et al. Nickel-mediated three-component cycloaddition reaction of carboryne, alkenes, and alkynes. , 2009, Journal of the American Chemical Society.
[16] T. Roisnel,et al. Group 4 Metal Complexes of Fluorous (Di)Alkoxide-(Di)Imino Ligands: Synthesis, Structure, Olefin Polymerization Catalysis, and Decomposition Pathways , 2009 .
[17] Dongmei Liu,et al. Synthesis, Structure, and Reactivity of Group 4 Metallacarboranes Bearing the Ligand [Me2C(C9H6)(C2B9H10)]3− , 2008 .
[18] Hao Shen,et al. Synthesis and Structural Characterization of Group 4 Metal Complexes Bearing Pentavalent Phosphorus-Bridged Ligands [(C13H8)(iPr2N)P(−O)(C2B10H10)]2− and [(C13H9)(iPr2N)P(═O)(C2B9H10)]2− , 2008 .
[19] Dongmei Liu,et al. Synthesis, Structural Characterization, and Reactivity of Group 4 Metallacarboranes Containing the Ligand [Me2C(C5H4)(C2B9H10)]3− , 2008 .
[20] A. Hoveyda,et al. Chiral Titanocenes and Zirconocenes in Synthesis , 2008 .
[21] Minserk Cheong,et al. New Types of Constrained Geometry Group 4 Metal Complexes Derived from the Aminomethyldicarbollyl Ligand System: Synthesis and Structural Characterization of Mono-dicarbollylamino and Bis-dicarbollylamino Group 4 Metal Complexes , 2007 .
[22] Hao Shen,et al. Synthesis, Structure, and Reactivity of [σ:η1:η5-(OCH2)(Me2NCH2)C2B9H9]Ti(NR2) (R = Me, Et) , 2007 .
[23] S. Coles,et al. Half-sandwich group 4 salicyloxazoline catalysts , 2006 .
[24] Hao Shen,et al. Guanylation of Amines Catalyzed by a Half-Sandwich Titanacarborane Amide Complex , 2006 .
[25] S. Grimme,et al. Stereo-electronic interaction in complex molecules: cyclopropyl conjugation with Lewis acidic centres across connecting carbon-carbon triple bonds. , 2006, Chemical communications.
[26] L. Deng,et al. Nickel-mediated regioselective [2 + 2 + 2] cycloaddition of carboryne with alkynes. , 2006, Journal of the American Chemical Society.
[27] C. Qian,et al. Synthesis, Structure, and Olefin Polymerization Behavior of Constrained-Geometry Group 4 Metallacarboranes Incorporating Imido-Dicarbollyl Ligands , 2006 .
[28] Zuowei Xie. Group 4 metallocenes incorporating constrained-geometry carboranyl ligands , 2006 .
[29] Baiquan Wang. Ansa-metallocene polymerization catalysts: Effects of the bridges on the catalytic activities , 2006 .
[30] Hoi-Shan Chan,et al. Highly Electrophilic Half-Sandwich Group 4 Metallacarborane Alkyls. C-H/C-O Activation and Alkyne Insertion Reactions at Neutral Metal Complexes , 2005 .
[31] Hoi-Shan Chan,et al. Synthesis, Structural Characterization, and Reactivity of Rare Earth Complexes Incorporating Lewis Base Appended nido-Carborane Anions of the C2B9 and C2B10 Systems , 2005 .
[32] Hoi-Shan Chan,et al. Synthesis and structural characterization of mono- and bisfunctional o-carboranes. , 2005, Dalton transactions.
[33] Zuowei Xie,et al. Synthesis, Characterization, and Reactivity of Terminal Titanium Imido Complexes Incorporating Constrained-Geometry Carboranyl Ligands , 2005 .
[34] Hoi-Shan Chan,et al. A new synthetic route to high-valent half-sandwich group 4 metallacarborane alkyls. synthesis and structural characterization of [η1:η6-(Me2NCH2CH2)C2B10H11]Hf(CH2SiMe3)2 , 2005 .
[35] Minserk Cheong,et al. Sterically protected titanium (aminoethyl)dicarbollides : Synthesis of novel constrained-geometry complexes showing an unusual cage B,N-cyclization , 2005 .
[36] J. Ko,et al. Novel titanium complexes of a multidentate dicarbollide ligand. Synthesis and structural characterization of a constrained geometry complex. , 2003, Chemical communications.
[37] M. H. Lee,et al. Group 4 complexes derived from o-carborane: synthesis, structures and ethylene polymerization properties , 2003 .
[38] P. Chirik,et al. Alkyl substituent effects on reductive elimination reactions in zirconocene alkyl hydride complexes. Manipulation of the alkyl steric environment allows the synthesis of a zirconocene dinitrogen complex , 2003 .
[39] P. Sharp,et al. Cp 2 Zr(η 2 -benzocyclobutadiene)(PMe 3 ), a Rare η 2 -Cyclobutadiene Complex , 2002 .
[40] Zuowei Xie. Advances in the chemistry of metallacarboranes of f-block elements , 2002 .
[41] K. Henderson,et al. Synthesis of zirconocene amides and ketimides and an investigation into their ethylene polymerization activity , 2002 .
[42] R. Waymouth,et al. 2-Arylindene metallocenes: conformationally dynamic catalysts to control the structure and properties of polypropylenes. , 2002, Accounts of chemical research.
[43] Zuowei Xie,et al. Synthesis, Structural Characterization, and Olefin Polymerization Behavior of Group 4 Metal Complexes with Constrained-Geometry Carborane Ligands , 2001 .
[44] S. Macgregor,et al. Insertions of unsymmetric alkynes into the metal-carbon bonds of nickelacycles: What determines the regiochemistry? , 2001 .
[45] J. Won,et al. Dicarbollide Analogues of the Constrained-Geometry Polymerization Catalyst , 2001 .
[46] G. Erker,et al. Homogeneous single-component betaine Ziegler-Natta catalysts derived from (butadiene)zirconocene precursors. , 2001, Accounts of chemical research.
[47] V. Young,et al. Titanium Dicarbollide Complexes. Molecular Structures of (η5-C2B9H11)(C5Me5)TiMe and (η5-C2B9H11)(η5,η1-C5Me4CH2)Ti , 2001 .
[48] D. Armstrong,et al. Zirconocene ketimides: Synthesis, structural characterization, ethylene polymerization activity, and ab initio computational studies , 2000 .
[49] G. Erker,et al. Addition and Coupling Reactions of Zirconocene Cation Complexes that Contain a Pendant η2-Formaldiminium Side Chain , 2000 .
[50] J. Reek,et al. Ligand Bite Angle Effects in Metal-catalyzed C-C Bond Formation. , 2000, Chemical reviews.
[51] L. Cavallo,et al. Selectivity in propene polymerization with metallocene catalysts. , 2000, Chemical reviews.
[52] V. R. Jensen,et al. Toward Quantitative Prediction of Stereospecificity of Metallocene-Based Catalysts for alpha-Olefin Polymerization. , 2000, Chemical reviews.
[53] H. Alt,et al. Effect of the Nature of Metallocene Complexes of Group IV Metals on Their Performance in Catalytic Ethylene and Propylene Polymerization. , 2000, Chemical reviews.
[54] V. Burlakov,et al. What do titano- and zirconocenes do with diynes and polyynes? , 2000, Accounts of chemical research.
[55] G. Erker,et al. Evidence for α-Nitrogen Participation in the Internal C−H Activation Reaction at ((Dimethylamino)methyl)cyclopentadienyl-Derived Methylzirconocene Cations , 1999 .
[56] U. Thewalt,et al. Synthesis and crystal structure of a zirconium(III) diacetylide tweezer complex: [(η5-C5HMe4)2Zr(η1-CCSiMe3)2]-K+ , 1998 .
[57] V. Young,et al. Formation of novel ansa-carborane-alkoxide complexes by carbonylation of (C5Me5)(η5-C2B9H 11)TiMe , 1998 .
[58] R. F. Jordan,et al. CATALYTIC DIMERIZATION OF TERMINAL ALKYNES BY A HAFNIUM CARBORANYL COMPLEX. A SELF-CORRECTING CATALYST , 1997 .
[59] D. J. Crowther,et al. Synthesis, Structure, and Reactivity of a Novel Hafnium Carboranyl Hydride Complex , 1997 .
[60] R. Grubbs,et al. α-Agostic Interactions and Olefin Insertion in Metallocene Polymerization Catalysts , 1996 .
[61] George M. Sheldrick,et al. SADABS, Program for Empirical Absorption Correction of Area Detector Data , 1996 .
[62] D. J. Crowther,et al. EARLY METAL DICARBOLLIDE CHEMISTRY. CHARACTERIZATION OF AN UNUSUAL BRIDGING C2B9H112- BONDING MODE IN (C5ME5)2(C2B9H11)2HF2ME2 , 1995 .
[63] R. F. Jordan,et al. EARLY METAL CARBORANE CHEMISTRY. GENERATION AND REACTIVITY OF (C5ME5)(ETA 5-C2B9H11)TIME , 1995 .
[64] D. J. Crowther,et al. Coordination of CB11H12- to cationic zirconium(IV) complexes. Synthesis and structures of (C5H5)2Zr(.eta.2-CH2Ph)(CB11H12), (C5H4Me)2Zr(CH3)(CB11H12), and (C5Me5)Zr(CH3)2(CB11H12) , 1993 .
[65] D. J. Crowther,et al. Group 4 metal dicarbollide chemistry. Synthesis, structures, and reactivity of electrophilic alkyl complexes (Cp*)(C2B9H11)M(R), M = Hf, Zr , 1991 .
[66] R. F. Jordan,et al. Insertion chemistry of Cp2Zr(.eta.2-C,N-CH2{6-Me-pyrid-2-yl})+: facile zirconium-mediated functionalization of methyl carbon-hydrogen bonds of 2,6-lutidine , 1991 .
[67] R. F. Jordan,et al. Electronic control of regioselectivity in coupling reactions of SiMe3-substituted alkenes with Cp2Zr(*2(N,C2)-6-phenylpyridyl)(THF)+ , 1990 .
[68] S. Buchwald,et al. Zirconocene complexes of imines. General synthesis, structure, reactivity, and in situ generation to prepare geometrically pure allylic amines , 1989 .
[69] W. L. Jorgensen,et al. Ab initio investigations of the .beta.-silicon effect on alkyl and cyclopropyl carbenium ions and radicals , 1989 .
[70] G. Erker,et al. Cp2Zr(N=CPh2)2, an organometallic heteroallene-type Schiff base derivative relevant to describing sp2-hybridized nitrogen inversion , 1988 .
[71] F. Palacios,et al. (C5Me5)SiMe3 as a mild and effective reagent for transfer of the C5Me5 ring: an improved route to monopentamethylcyclopentadienyl trihalides of the group 4 elements , 1988 .
[72] K. Morokuma,et al. SiC agostic interaction with Ti: origin of alkenyl group distortion in Ti(C(SiH2CH3)=CH2)X2+. An ab initio MO study , 1988 .
[73] J. B. Lambert,et al. Stabilization of positive charge by .beta.-silicon , 1987 .
[74] Scott G. Wierschke,et al. Magnitude and origin of the .beta.-silicon effect on carbenium ions , 1985 .
[75] C. Eaborn. Silicon Reagents in Organic Synthesis , 1983 .
[76] J. Bercaw,et al. Alkyl and hydride derivatives of (pentamethylcyclopentadienyl)zirconium(IV) , 1982 .
[77] N. A. Clinton,et al. Vertical stabilization of cations by neighboring .sigma. bonds. General considerations , 1971 .
[78] M. Hawthorne. Chemistry of the polyhedral species derived from transition metals and carboranes , 1968 .
[79] M. Hawthorne,et al. Carbametallic Boron Hydride Derivatives. I. Apparent Analogs of Ferrocene and Ferricinium Ion , 1965 .