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1.
徐善生  杨柳  李颖  王佰全  周秀中 《化学学报》2002,60(12):2197-2202
四甲基二硅桥连双环戊二烯基甲羰基二铁与芳香异腈在苯中加热回流生成一个 或两个羰基被芳香异腈取代的化合物(Me2SiSiMe2)(C5H4)2Fe2(CO)4-n(CNAr)n [Ar=C6H5,n=1(1),n=2(2);Ar=p-MeC6H4,n=1(3),n=2(4)]。单异腈取代化合物1和3 在二甲苯中加热均可发生热重排反应,生成相应的重排产物(Me2SiC5H4)2Fe2(CO) 3^-(CNAr)[Ar=C6H5(5),p-MeC6H4(6)]。通过^1H NMR,IR和元素分析表征了化合物 1-6的分子结构,并通过X射线衍射分析测定了化合物3的晶体结构。  相似文献   

2.
4-R1-6-R-2-Me4CpH—PhOH[R1=^tBu,R=^tBu(1);R1=H,R=^tBu(2),Ph(3),Me(4)]经双三甲基硅基化后与TiCl4反应,合成了4种限制几何构型茂金属催化剂4-R1-6-R-2-Me4CpH-PhOTiCl2[R1=^tBu,R=^tBu(5);R1=H,R=^tBu(6),Ph(7),Me(8)]。合成产率有较大提高.这些茂金属化合物经过^tBu3Al和Ph3C^ B(C6F5)4^-活化后对乙烯聚合有很好的催化活性,并生成乙基支化聚乙烯.考察了催化剂结构与活性的关系以及聚合反应条件对催化剂性能的影响。并对聚乙烯样品进行了表征.  相似文献   

3.
以4种不同结构的α-二亚胺镍(Ⅱ)催化剂[(t-Bu)—N CH—CH N—(t-Bu)]NiBr2(C1),[C6H5—N C(Me)—C(Me)N—C6H5]NiBr2(C2),[(2,6-C6H3(Me)2)—N C(Me)—C·(Me)N—(2,6-C6H3(Me)2)]NiBr2(C3)和[(2,6-C6H3(i-Pr)2)—N C(An)—C(An)N—(2,6-C6H3(i-Pr)2)]NiBr2(An=acenaphthyl)(C4),在甲基铝氧烷(MAO)作用下,对甲基丙烯酸甲酯(MMA)进行催化聚合.以C2为模型催化剂系统研究了Al/Ni摩尔比、单体浓度、聚合温度、聚合时间和反应溶剂对催化活性及聚合物分子量的影响.在较适合的聚合条件(催化剂用量为1.6μmol,Al/Ni摩尔比为800,MMA浓度为2.9 mol/L,甲苯为溶剂,聚合温度为60℃,聚合时间为4 h)下,讨论了催化剂结构对催化活性和聚合物分子量的影响.研究发现,催化剂C1~C3催化MMA聚合均得到富含间规结构的聚甲基丙烯酸甲酯(PMMA).催化剂结构中空间位阻增大导致催化活性降低,空间位阻最小的C1催化活性最高[达107.8 kg/(mol Ni·h)];而空间位阻最大的C4催化活性仅为7.8 kg/(mol Ni·h).催化剂结构中给电子效应增加有利于催化活性及聚合物分子量的增加.C2催化活性为62.5 kg/(mol Ni·h),所得聚合物的分子量为5.0×104;而具有较强给电子效应的C3催化活性达到96.9 kg/(mol Ni·h),并得到更高分子量的聚合物(7.6×104).  相似文献   

4.
以Ph3CB(C6F5)4/iBu3Al作为助催化体系,研究了单氯半茂型催化剂,ClCp′Zr[X-2-R1-4-R2-6-(Ph2P=O)C6H2]2(Cp′=C5H5,a:X=O,R1=Ph,R2=H;b:X=O,R1=F,R2=H;c:X=O,R1=tBu,R2=H;d:X=O,R1=R2=tBu;e:X=O,R1=SiMe3,R2=H;f:X=S,R1=SiMe3,R2=H;Cp′=C5Me5;g:X=O,R1=SiMe3,R2=H)的乙烯高温(50~125 ℃)聚合行为。 结果表明,催化剂a~d可在高温(50~100 ℃)下高效引发乙烯聚合,最佳反应温度为75 ℃。 适当增大R1取代基的位阻或引入吸电子取代基均有利于提高催化活性。 三甲基硅烷基取代的催化剂[WTHZ]e[WTBZ]耐高温性能较催化剂a~d大大提升,在100 ℃时,乙烯聚合活性可达5628 kg/(mol Zr·h)。 金属中心的配位原子及茂环上取代基团的改变对催化活性和聚合物的相对分子质量分布有一定的影响。  相似文献   

5.
2-(苯亚胺基次甲基)吲哚铕胺基配合物[η1∶η1-2-(C6H5NH=CH)C8H5N]2Eu[N(Si Me3)2](1)与二芳基取代甲脒(2,6-R2C6H3N=CHNH(C6H3R2-2,6)(R=iPr(2),Me(3))经过配体交换反应,分别得到了含吲哚基脒基铕配合物[η1∶η1-2-(C6H5NH=CH)C8H5N]Eu[(η3-2,6-iPr2C6H3)N=CHN(C6H3iPr2-2,6)][N(Si Me3)2](4)和含脒基的稀土铕配合物[(η3-2,6-Me2C6H3)N=CHN(C6H3Me2-2,6)]2Eu[N(Si Me3)2](5)。结果表明,脒基的位阻显著影响了吲哚基稀土金属胺基配合物与二芳基取代甲脒的配体交换反应。配合物4和5通过IR、元素分析和X射线单晶衍射分析进行了表征。  相似文献   

6.
Organoboryl germanium(Ⅱ) oxides were synthesized from the 1,4-addition reaction of L'Ge(L'=HC[C(CH_2)N(Ar)]C(Me)N(Ar),Ar=2,6-iPr_2C_6H_3) with selected monosubstituted arylboronic acids RB(OH)_2(R=2,6-Me_2C_6H_3,2,4,6-Me_3C_6H_2,1-Naph) at the molar ratios of 1:1 and 2:1.The mononuclear products RB(OH)OGeL(L=CH[C(Me)N(Ar)]_2,Ar=2,6-iPr_2C_6H_3;R=2,6-Me_2C_6H_3(1),2,4,6-Me_3C_6H_2(2),1-Naph(3)) containing the Ge-O-B core were obtained smoothly through the 1:1 reaction.However,the reaction of L'Ge with 2,6-Me_2C_6H_3B(OH)_2 in a 2:1 ratio gave only the mononuclear product(1) instead of the expected binuclear one.What's more,a new borate compound [(2,6-Me_2C_6H_3)_4B_5O_6]~-[H:C]~+(4)(:C=C[N(iPr)C(Me)]_2) was concomitantly formed when the in situ prepared L'Ge was used as the precursor.In contrast,the use of 2,4,6-Me_3C_6H_2B(OH)_2 or1-NaphB(OH)_2 as the organoboryl source in the similar reaction led to the formation and isolation of the binuclear products RB(OGeL)2(R=2,4,6-Me_3C_6H_2(5),1-Naph(6)) containing the Ge-O-B-O-Ge core in a straight way.Compounds 1~6 were determined by single-crystal X-ray diffraction analysis.  相似文献   

7.
配体[C5Me4HR][R=4-Br Ph(1),(Me C5H3N)CH2(2)]分别与Mo(CO)6,Ru3(CO)12和Fe(CO)5在二甲苯中加热回流,得到了6个双核配合物trans-[η5-C5Me4R]2Mo2(CO)6(3,4),trans-[(η5-C5Me4R)Ru(CO)(μ-CO)]2(5,6)和trans-[η5-(C5Me4R)Fe(CO)(μ-CO)]2(7,8)。通过元素分析、红外光谱、核磁共振氢谱对配合物的结构进行了表征,并用X-射线单晶衍射法测定了配合物3,5,6和8的结构。  相似文献   

8.
Cyclopentadienyl cobalt complexes (n5-C5H4R)CoLI2 [L = CO,R=-COOCH2CH=CH2 (3); L=PPh3,R=-COOCH2-CH=CH2 (6); L= P(p-C6H4CH3)3,R=-COOC(CH3) = CH2 (7),-COOCH2C6H5(8),-COOCH2CH = CH2 (9)] were prepared and characterized by elemental analyses,1H NMR,IR and UV-vis spectra.The reaction of complexes (n5-C5H4R)CoLI2[L=CO,R=-COOC(CH3)=CH2 (1) ,-COOCH2C6H5(2):L=PPh3,R =-COOC(CH3)=CH2 (4),-COOCH2C6H5(5)] with Na-Hg resulted in the formation of their corresponding substituted cobaltocene (n5-C5H4R)2Co [R= -COOC(CH3) = CH2 (10),-COOCH2C6H5 (11) ].The electrochemical properties of these complexes 1-11 were studied by cyclic voltammetry.It was found that as the ligand (L) of the cobalt (Ⅲ) complexes changing from CO to PPh3 and P(p-tolyl)3,their oxidation potentials increased gradually.The cyclic voltammetry of α,α'-substituted cobaltocene showed reversible oxidation of one electron pro-  相似文献   

9.
合成了6种单茂稀土催化剂Cp’LnR2(THF)n(其中,Cp’=C5H5,C5Me4SiMe3;R=CH2C6H4NMe2-o,CH2SiMe3;Ln=Sc,Y,Lu;n=0或1),并以[Ph3C][B(C6F5)4]为助催化剂,甲苯为溶剂,考察催化剂结构对丁二烯聚合活性,立体选择性,催化剂利用率以及聚合物分子量和分子量分布的影响.通过1H-NMR,13C-NMR,FTIR,GPC以及DSC对聚丁二烯进行表征,结果表明,当Cp’=C5H5,R=CH2C6H4NMe2-o,Ln=Sc,n=0时,催化剂(C5H5)Sc(CH2C6H4NMe2-o)2对丁二烯聚合活性最高,可达9600 kg-polymer/mol-Sc·h,催化剂利用率为45%,聚丁二烯顺-1,4结构含量在96%~98%之间,分子量分布窄,指数在1.3左右;以甲苯或氯苯作为聚合溶剂时,聚合活性最高,聚丁二烯分子量保持窄分布,在所有溶剂中聚丁二烯顺-1,4结构含量均达到96%以上;催化剂聚合活性随温度下降而降低,而聚合物分子量分布有变窄的趋势,温度对聚丁二烯立体选择性无明显影响;当[Bd]/[Sc]摩尔比从500增加到3000时,聚合反应1 min转化率均达到100%,聚丁二烯分子量呈可控线性增大,最高达44.6×104,且均保持聚合物窄分布.DSC谱图表明聚丁二烯Tg为-107℃,当升降温速率为10 K/min时,在-63℃和-8℃附近呈现出明显的冷结晶峰和熔融峰.  相似文献   

10.
四甲基二硅桥连取代环戊二烯基配体相继与丁基锂及MCl4·2THF作用,生成四甲基二硅桥连取代环戊二烯基钛和锆化合物(Me2SiSiMe2)(C5H4R)(C5H4R')MCl2[R=H,R'=t-Bu,M=Ti(1),Zr(2),Hf(3);R=H,R'=Me,M=Ti(4);R=R'=Me,M=Ti(5),Zr(6)].通过元素分析、MS和1HNMR谱表征了化合物的分子结构,并通过X射线衍射分析测定了化合物1的晶体结构.研究了在甲基铝氧烷(MAO)的助催化下,化合物1-3和6对乙烯聚合的催化性能。  相似文献   

11.
以氯化三苯基膦铑为催化剂,对丁二烯-b-甲基丙烯酸甲酯共聚物的催化加氢反应进行了研究,用NMR、FTIR、动态粘弹谱和化学分析法对加氢产物进行了表征。证明RhCl[P(C6H5)3]3可有效地使共聚物中的C=C加氢,且具有很高的选择性,未加氢的双键含量小于0.71%.  相似文献   

12.
P-HZSM-5催化剂上合成对异丙基苯酚的研究   总被引:11,自引:0,他引:11  
研究了在P-HZSM-5 上苯酚与异丙醇烷基化合成对异丙基苯酚(p-IPP)的反应, 考察了磷含量对催化反应性能的影响, 用NH3-TPD和Pyr-IR表征了P-HZSM-5 的表面酸性质. 结果表明, 磷改性HZSM-5 可提高p-IPP选择性(达95% ), 而降低了苯酚的转化率, 并导致酸量减少和酸强度减弱. 磷与分子筛的相互作用引起了分子筛脱铝. 焙烧温度对活性和选择性均有影响. 分子筛在973 K、P-HZSM-5 在823 K焙烧时, p-IPP选择性最高  相似文献   

13.
均相苯乙酮加氢反应研究   总被引:4,自引:0,他引:4  
合成了一种新的钌膦配合物[RuCl2(Dmpp)2en](Dmpp=4-(2,6-二甲氧吡啶基)二苯基膦,en=乙二胺),对其结构进行了表征.系统研究了反应温度,氢气压力,底物和催化剂的比例,碱和催化剂的比例等反应条件对[RuCl2(Dmpp)2en]催化的芳香酮加氢反应活性的影响,证明其在苯乙酮加氢反应中具有很好的催化活性.  相似文献   

14.
烯烃加氢得到烷烃,从化学热力学角度判断这个反应可以进行,由于氢分子相当稳定,HH键不易受极化的影响而断裂,实际上,如果没有催化剂的存在,反应是很难进行的.各种过渡金属,例如铂、钯、铑、钴、铱和镍等都具有未充满和不稳定的d电子轨道,容易吸附大量的氢并使其活化,从而很容易对许多基团进行氢化反应.钌/二烯烃/氢气反应体系就符合上述原理,苯乙烯丁二烯苯乙烯三嵌段共聚物(SBS)就属二烯烃类共聚物,由于这类共聚物中存在CC不饱和双键,在日光、紫外光、热等环境下,其耐侯性和热稳定性不好,限制了它在更广泛…  相似文献   

15.
溶胶—凝胶法制备NiO/SiO2催化剂研究   总被引:11,自引:0,他引:11  
分别以正硅酸乙酯、硝酸镍为硅源和镍源,采用溶胶-凝胶法,经超临界流体干燥和普通干燥制备了NiO-A-SiO2、NiO-G-SiO2催化剂;以气凝胶和干凝胶为载体,采用浸渍法制备了NiO/A-SiO2、NiO/G-SiO2催化剂。并用XRD、TEM、BET、TPR等手段,研究了制备方法对催化剂织构、结构和Ni物种存在形态的影响,发现NiO-A-SiO2和NiO-G-SiO2催化剂上高度分散的NiO簇团与SiO2之间有较强的相互作用,其顺酐液相选择加氢转化率低于10%;NiO/G-SiO2催化剂上,以单一物种形态存在的NiO与SiO2相互作用弱,顺酐转化率为42%;NiO/A-SiO2催化剂上,以多种形态存在的微量NiO与SiO2间的相互作用较复杂,其顺酐液相选择加氢的转化率和丁二酸酐的选择性分别可达100%和98%。  相似文献   

16.
The Staudinger reaction of N(CH2CH2NR)3P [R = Me (1), Pr (2)] with 1 equiv of N3SO2C6H4Me-4 gave the ionic phosphazides [N(CH2CH2NR)3PN][SO2C6H4Me-4] [R = Me (3), R = Pr (5a)], and the same reaction of 2 with N3SO2C6H2Me3-2,4,6 gave the corresponding aryl sulfinite 5b. On the other hand, the reaction of 1 with 0.5 equiv of N3SO2Ar (Ar = C6H4Me-4) furnished the novel ionic phosphazide [[N(CH2CH2NMe)3P]2(mu-N3)][SO2Ar] (6). Data that shed light on the mechanistic pathway leading to 3 were obtained by low temperature 31P NMR spectroscopy. A crystal and molecular structure analysis of the phosphazide sulfonate [N(CH2CH2NMe)3PN3][SO3C6H4Me-4] (4), obtained by atmospheric oxidation of 3, indicated an ionic structure, the cationic part of which is stabilized by a transannular P-N bond. A crystal and molecular structure analysis of 6 also indicated an ionic structure in which the cation features two untransannulated N(CH2CH2NMe)3P cages bridged by an azido group in an eta 1: mu: eta 1 fashion. The reaction of P(NMe2)3 with N3SO2Ar (Ar = C6H4Me-4) in a 1:0.5 molar ratio furnished [[(Me2N)3P]2(mu-N3)][SO2-Ar] (11) in quantitative yield. On the other hand, the same reaction involving a 1:1 molar ratio of P(NMe2)3 and N3SO2Ar produced a mixture of 11, [(Me2N)3PN3][SO2Ar] (12), and the iminophosphorane (Me2N)3P=NSO2Ar (10). In contrast, the bicyclic tris(amino)phosphines MeC(CH2NMe)3P (7) and O=P(CH2NMe)3P (8) reacted with N3SO2-Ar (Ar = C6H4Me-4) to give the iminophosphorane MeC(CH2NMe)3P=NSO2Ar (14) (structured by X-ray means) and O=P(CH2NMe)3P=NSO2Ar (16) via the intermediate phosphazides MeC(CH2NMe)3PN3SO2Ar (13) and O=P(CH2NMe)3PN3SO2Ar (15), respectively. The variety of products obtained from the reactions of arylsulfonyl azides with proazaphosphatranes (1 and 2), acyclic P(NMe2)3, bicyclic tris(amino)phosphines 7 and 8 are rationalized in terms of steric and basicity variations among the phosphorus reagents.  相似文献   

17.
一种后过渡金属催化剂催化乙烯低聚动力学研究   总被引:9,自引:0,他引:9  
设计并合成了一种新型的后过渡金属铁络合物 { [(2 ArNC(Me) ) 2 C5H3N]FeCl2 } (Ar =2 ,4 C6 H4(CH3) 2 ) ,研究了该络合物 甲基铝氧烷 (MAO)催化乙烯低聚 ,讨论了低聚反应温度、Al Fe摩尔比、催化剂浓度、反应压力等对催化剂活性及反应速率的影响 .本催化剂的最大特点是活性高 (在 30℃ ,3 0MPa时活性可达 4 2 6× 10 8goligomer·molFe·h- 1 )、初速度大 ,动力学曲线为衰减型 .  相似文献   

18.
Aminocyclopentadienyl ruthenium complexes, which can be used as room-temperature racemization catalysts with lipases in the dynamic kinetic resolution (DKR) of secondary alcohols, were synthesized from cyclopenta-2,4-dienimines, Ru(3)(CO)(12), and CHCl(3): [2,3,4,5-Ph(4)(eta(5)-C(4)CNHR)]Ru(CO)(2)Cl (4: R = i-Pr; 5: R = n-Pr; 6: R = t-Bu), [2,5-Me(2)-3,4-Ph(2)(eta(5)-C(4)CNHR)]Ru(CO)(2)Cl (7: R = i-Pr; 8: R = Ph), and [2,3,4,5-Ph(4)(eta(5)-C(4)CNHAr)]Ru(CO)(2)Cl (9: Ar = p-NO(2)C(6)H(4); 10: Ar = p-ClC(6)H(4); 11: Ar = Ph; 12: Ar = p-OMeC(6)H(4); 13: Ar = p-NMe(2)C(6)H(4)). The tests in the racemization of (S)-4-phenyl-2-butanol showed that 7 is the most active catalyst, although the difference decreased in the DKR. Complex 4 was used in the DKR of various alcohols; at room temperature, not only simple alcohols but also functionalized ones such as allylic alcohols, alkynyl alcohols, diols, hydroxyl esters, and chlorohydrins were successfully transformed to chiral acetates. In mechanistic studies for the catalytic racemization, ruthenium hydride 14 appeared to be a key species. It was the major organometallic species in the racemization of (S)-1-phenylethanol with 4 and potassium tert-butoxide. In a separate experiment, (S)-1-phenylethanol was racemized catalytically by 14 in the presence of acetophenone.  相似文献   

19.
以苯甲酸甲酯为促进剂,用茂金属催化剂制备了活性丁苯嵌段共聚物(SBS)的选择性催化加氢产物,讨论了苯甲酸甲酯、SBS的数均分子量等因素在几种实验条件下对产物加氢度的影响.结果表明,每百克干胶使用0.15~0.3mmol Ti催化条件下,苯甲酸甲酯在特定添加方式下能较大程度地提高茂金属催化剂的活性.在不加入苯甲酸甲酯的情况下,Mn=6.5×104和Mn=5.5×104两种SBS基础胶加氢反应180min时加氢度均97.0%;加入酯以后,反应60~120min时,基础胶的加氢度≥98%;与已报道的研究结果相比,将加氢反应时间缩短了60~120min.在每百克干胶使用0.15~0.3mmolTi催化条件下,数均分子量的大小也对SBS基础胶的加氢度有影响,反应30min时,Mn=5.5×104的加氢度≥97%,Mn=6.5×104的加氢度90%;随着反应时间的延长,这种差距在逐渐缩小;反应180min时,两者已无明显差距,此时两种基础胶的加氢度都≥98%.对影响的加氢度的机理进行了解释.  相似文献   

20.
丁二烯-丙烯腈共聚物碳-碳双键的选择性加氢张邦华,王光,周庆业,郝广杰,宋谋道,张莹(南开大学高分子化学研究所,天津,300071)关键词丁二烯-丙烯腈共聚物,氯化三苯基膦铑,均相催化,选择性加氢通过催化加氢对不饱和高聚物进行化学改性是提高大分子的物...  相似文献   

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