首页> 外文OA文献 >Neutral and cationic di(tert-butyl) cyclopentadienyl titanium, zirconium and hafnium complexes. Dynamic NMR study of the ligand-free cations M(1,3-tBu2-η5-C5H3)(η5-f5H5)(CH3)+(M=Zr, Hf)
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Neutral and cationic di(tert-butyl) cyclopentadienyl titanium, zirconium and hafnium complexes. Dynamic NMR study of the ligand-free cations M(1,3-tBu2-η5-C5H3)(η5-f5H5)(CH3)+(M=Zr, Hf)

机译:中性和阳离子二(叔丁基)环戊二烯基钛,锆和ha络合物。不含配体的阳离子M(1,3-tBu2-η5-C5H3)(η5-f5H5)(CH3) +(M = Zr,Hf)的动态NMR研究

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摘要

Group 4 metal complexes containing the di(tert-butyl)cyclopentadienyl ligand (l,3-tBu2-r/5-CsH3) have been synthesized. Theudreaction of a mixture of 1,3- and 1,4-di(tert-butyl)cyclopentadiene isomers with KH in THF at -78°C gives the salt K+[(1,3 -udtBu2CsH3)]-(THF)I_3 2 as a white solid. Treatment of 2 with chlorotrimethylsilane in a 1:1 molar ratio gives the air-stableudtrimethylsilylcyclopentadienyl derivative Si(1,3-tBu2C5H3XCH3)3 3. The silyl derivative 3 is an excellent precursor for monocyclopentadienyludtrichlorotitanium and zirconium compounds M(1,3 -t Bu 2-r/5-C 5 H 3)C13 [M = Ti (4), Zr (5)]. Addition of a stoichiometric amountudof water in the presence of NEt 3 to a toluene solution of 4 affords the oxo trimer compound [Ti(1,3-tBu2-~75 - CsH3)CI( p,-O)] 3 6. Theudreaction of 4 with 2 equiv, of LiMe affords the chloro dimethyl derivative Ti(1,3-tBu2-'r/5-CsH3)CI(CH3)2 7. The mixed dicyclopentadienyludcompounds M(1,3-tBu2-r/5-CsH3XCsHs)CI2 [M = Ti (8); Zr (9)] were prepared by reaction of complexes 4 and 5 respectively withudTI(CsHs). Treatment of complexes (8) and (9) with the appropriate alkylating reagent and molar ratio, in hexane at -78 °C, gives theudchloro alkyl derivatives M(1,3-tBu2-@-C5H3XCsHs)CIR [M = Ti, R = Me (10); M = Zr, R = Me (11), Bz (12)] or the dialkyludcomplexes M(1,3-tBu2-@-CsH3)(CsHs)Rz [M = Ti, R = Me (13); M = Zr, R = Me (14), Bz (15), Nf (16)]. When 8 reacts with 2 equiv.udof MgBz2(THF) 2 or LiCH2CMe2Ph the metallacyclic complexes Ti(1-tBu-3-CMe2CH~-r/5-C~Ha)(CsHs)R [R = Bz (17); Nf (18)] wereudisolated as red oils at room temperature, with the elimination of toluene or ten-butyl benzene respectively. The previously reportedudcationic mono 1,3-di(tert-butyl)cyclopentadienyl dibenzyl zirconium species [Zr(1,3 -t Bu 2-'05-C 5 H 3 XCH 2 Ph) 2 ] + (19) can be stabilizedudby reaction with tBuNC or PMe 3, in CD2C12 at -78°C, and the formation of the new cationic species [Zr(1,3-tBu2-r/5-udCsHa)(L)(CH2Ph)2] + [L=tBuNC (20); PMe 3 (21)] was identified by NMR spectroscopy. The reaction of B(CrFs) 3 with theudmonocyclopentadienyl trimethyl derivatives M(1,3-tBu2-r/5-CsH3XCH3)3 [M = Ti (22), Zr (23)], in the presence of PMe 3, gives theudcationic species [M(I,3-tBu2-@-C~H3)(PMe3)2(CH3)2] + [M = Ti (24); Zr (25)], obtained as orange-yellow solids, stable at roomudtemperature. The reaction of B(C6Fs) 3 with the metallocene dimethyl derivatives M(1,3-tBu2-r/5-CsHa)(@-CsHs)(CH3)z [M = Zr (14);udHf (26)], in a 1:1 molar ratio and in hydrocarbon solvents gives the cationic derivatives [M(1,3-tBu2-@-CsH3)(@ -udCsHsXCH3)]+[(CH3)B(CrFs)3] - [M = Zr (27); Hf (28)] as yellow oils which can be stored for weeks under an inert atmosphere. Whenudthe same reactions of (14) and (26) with B(C6Fs) 3 are carried out in a 2:1 molar ratio at room temperature, the complexesud{[M(1,3-tBu2-@-CsH3X@-CsH5)Me]2(/.L-Me)}[MeB(C6Fs)3] [M =Zr (29), Hf (30)] can be obtained as a mixture of syn- andudanti-isomers as shown by NMR spectroscopic observations. The formation of (29) and (30) implies the stabilization of the 14-electronudcationic intermediate by interaction with one methyl group of the neutral complexes (14) and (26). Complexes (27) and (28) undergoudheterolytic dissociation of the Metal-MeB(C6Fs) 3 bonds, leading to the formation of the free [M(I,3-tBu2-r/5-CsH3)(r/5-CsHs)(CH3)] +ud14-electron species, verified by 1H DNMR spectroscopy. When compound (27) was heated at 50°C the metallacyclic cationud[Zr(1-tBu-3-CMezCH2-@-C5H3)(@-CsHs)] + (31) was formed. The alkyl derivatives synthesized and reported herein, activated with MAO, B(C6Fs) 3 or [Ph3C][B(C6Fs)4], polymerize ethylene with very low activity. The molecular structure of [Ti(1,3-tBu2-r/5-udC5H3)C1(/x-O)] 3 6 has been determined by X-ray diffraction methods.
机译:已经合成了含有二(叔丁基)环戊二烯基配体(1,3-tBu2-r / 5-CsH 3)的第4族金属配合物。 1,3-和1,4-二(叔丁基)环戊二烯异构体与KH的混合物在THF中于-78°C u反应,得到盐K + [(1,3- -udtBu2CsH3)]-(THF )I_3 2为白色固体。用氯三甲基硅烷以1:1的摩尔比处理2,得到的是空气稳定的 udtrimethylsilylcyclopentadienyl衍生物Si(1,3-tBu2C5H3XCH3)3 3.甲硅烷基衍生物3是单环戊二烯 udtrichlorotitanium和锆化合物M(1, 3 -t Bu 2-r / 5-C 5 H 3)C 13 [M = Ti(4),Zr(5)]。在NEt 3的存在下向甲苯4的溶液中添加化学计量的水 udud,得到羰基三聚体化合物[Ti(1,3-tBu2-〜75-CsH3)Cl(p,-O)] 3 6。 4与2当量的LiMe的减配得到氯二甲基衍生物Ti(1,3-tBu2-'r / 5-CsH3)Cl(CH3)2 7.混合的二环戊二烯基 ud化合物M(1,3-tBu2 -r / 5-CsH3XCsHs)Cl2 [M = Ti(8); Zr(9)]分别通过配合物4和5与udTI(CsHs)反应制备。在-78°C的己烷中,用适当的烷基化试剂和摩尔比处理配合物(8)和(9),得到 udchloro烷基衍生物M(1,3-tBu2-@-C5H3XCsHs)CIR [M = Ti ,R =我(10); M = Zr,R = Me(11),Bz(12)]或二烷基配合物M(1,3-tBu2-@-CsH3)(CsHs)Rz [M = Ti,R = Me(13); M = Ti,R = Me(13)。 M = Zr,R = Me(14),Bz(15),Nf(16)]。当8与2当量的MgBz2(THF)2或LiCH2CMe2Ph反应时,金属环配合物Ti(1-tBu-3-CMe2CH〜-r / 5-C〜Ha)(CsHs)R [R = Bz(17);在室温下将Nf(18)]溶解为红色油,分别除去甲苯或十丁基苯。先前报道的阳离子双1,3-二(叔丁基)环戊二烯基二苄基锆物种[Zr(1,3-t Bu 2-'05-C 5 H 3 XCH 2 Ph)2] +(19)在-78°C下与CD2C12中的tBuNC或PMe 3稳定 udby反应,并形成新的阳离子物质[Zr(1,3-tBu2-r / 5- udCsHa)(L)(CH2Ph)2] + [L = tBuNC(20); PMe 3(21)]通过NMR光谱法鉴定。在PMe 3存在下,B(CrFs)3与 u单环戊二烯基三甲基衍生物M(1,3-tBu2-r / 5-CsH3XCH3)3 [M = Ti(22),Zr(23)]的反应,给出阳离子种类[M(I,3-tBu2-@-C〜H3)(PMe3)2(CH3)2] + [M = Ti(24); Zr(25)],为橙黄色固体,在室温下稳定。 B(C6Fs)3与茂金属二甲基衍生物M(1,3-tBu2-r / 5-CsHa)(@-CsHs)(CH3)z的反应[M = Zr(14); udHf(26)] ,以1:1的摩尔比在烃溶剂中得到阳离子衍生物[M(1,3-tBu2-@-CsH3)(@- udCsHsXCH3)] + [(CH3)B(CrFs)3]-[M = Zr(27); [Hf(28)]为黄色油,可以在惰性气氛下保存数周。当在室温下以2:1摩尔比进行(14)和(26)与B(C6Fs)3的相同反应时,络合物 ud {[M(1,3-tBu2-@-CsH3X @ -CsH5)Me] 2(/。L-Me)} [MeB(C6Fs)3] [M = Zr(29),Hf(30)]可以作为反式和反式异构体的混合物获得由NMR光谱观察显示。 (29)和(30)的形成意味着通过与中性络合物(14)和(26)的一个甲基相互作用而稳定了14-电子阳离子中间体。配合物(27)和(28)经历金属-MeB(C6Fs)3键的 udeterolytic解离,导致形成游离的[M(I,3-tBu2-r / 5-CsH3)(r / 5- CsHs)(CH3)] + ud14-电子种类,通过1H DNMR光谱验证。当化合物(27)在50℃加热时,形成金属环阳离子cyclicud [Zr(1-tBu-3-CMezCH2-@-C5H3)(@-CsHs)] +(31)。用MAO,B(C6Fs)3或[Ph3C] [B(C6Fs)4]活化的本文合成和报道的烷基衍生物可聚合非常低活性的乙烯。 [Ti(1,3-tBu2-r / 5- udC5H3)C1(/ x-O)] 3 6的分子结构已通过X射线衍射法确定。

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