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1.
合成了一种具有超支化结构的新型水杨醛亚胺配体及其Ni(Ⅱ)配合物, 利用元素分析、 电喷雾电离质谱(ESI-MS)、 傅里叶变换红外光谱(FTIR)、 紫外-可见光谱(UV-Vis)、 氢核磁共振谱(1H NMR)和碳核磁共振谱(13C NMR)对其结构进行了表征. 以甲基铝氧烷(MAO)为助催化剂, 考察了超支化水杨醛亚胺镍配合物对乙烯齐聚反应的催化活性及聚合条件(Al/Ni摩尔比、 聚合温度)对催化剂活性及聚合产物分布的影响. 结果表明, 在反应温度为25 ℃、 Al/Ni摩尔比为500时, 该催化剂的活性最高达到5.59×105 g/(mol Ni·h), 得到的聚合产物为全馏分烯烃, 其中高碳烯烃C10~C18的含量最高达91%.  相似文献   

2.
严正鹏  李帅康  代胜瑜 《合成化学》2021,29(12):1033-1044
设计、合成并表征了两种不同烷基链长取代的大位阻二芳基甲基吡啶亚胺配体及其相应的钯配合物。这些钯催化剂在乙烯与丙烯齐聚中表现出高活性(高达1.6×105g·mol-1h-1)和能够生成低分子量的超支化(BD=112~238/1000C)乙烯与丙烯齐聚物(MHNMR=258~478 g·mol-1)。最为重要的是,通过利用这些吡啶亚胺钯催化剂催化乙烯或丙烯与丙烯酸甲酯共齐聚,能够得到超支化高插入率(高达24.3 mol%)的极性官能团化的乙烯与丙烯齐聚物。这些极性官能团位于齐聚物支链的末端。这类新型的钯催化剂为解决超支化极性官能团化烯烃齐聚物制备过程中稳定性差和插入率低等问题提供了可能。   相似文献   

3.
以系列直链脂肪胺为核的低代超支化聚酰胺-胺(PAMAM)和水杨醛为原料,通过席夫碱反应制备系列新型超支化PAMAM桥联水杨醛亚胺配体;以无水Ni Cl2为络合试剂,通过络合反应合成系列超支化PAMAM桥联镍催化剂,采用FT-IR和1H NMR证实合成的系列新型配体和镍系催化剂的结构与其理论结构相符.对系列超支化PAMAM桥联镍催化剂催化乙烯齐聚的性能进行了研究,结果表明,超支化PAMAM桥联镍系催化剂配体骨架烷基链长度对其催化活性和选择性影响较小,助催化剂和溶剂影响较大;倍半乙基氯化铝为助催化剂,甲苯为溶剂时,聚合活性较高,产物中C8以上的高碳产物的含量最高;其中以十四胺为核的超支化PAMAM桥联镍催化剂为主催化剂、倍半乙基氯化铝为助催化剂、甲苯为溶剂时,催化乙烯齐聚活性高达1.96×106 g/(mol·h),齐聚产物中C8以上的高碳产物含量为98.77%.  相似文献   

4.
使用桥连配体锂盐与MCl4络合, 合成了4个不同结构的双核茂金属化合物[μ,μ-(CH2)3]{[C(H)·(η5-C5H4)(η5-C13H8)](MCl2)}2[M=Zr or Ti](4, 5)和[μ,μ-(CH2)3]{[C(H)(η5-C5H4)(η5-C9H6)]·(MCl2)}2[M=Zr or Ti](6, 7), 配体和化合物都经过核磁氢谱(1H NMR)、 碳谱(13C NMR)、 红外光谱(IR)及元素分析等表征, 确认了化学结构. 以甲基铝氧烷(MAO)为助催化剂, 化合物4~7为催化剂催化丙烯聚合, 考察了聚合温度、 乙烯压力、 铝钛或铝锆比对催化剂活性及聚合物分子量的影响. 结果表明, 多亚甲基桥连双核茂金属是高活性乙烯和丙烯聚合催化剂, 乙烯聚合活性最高达到7.5× 106 g PE/(mol Zr·h)(化合物6), 丙烯聚合活性达 10 × 105 g sPP/(mol Zr·h)(化合物4). 所得间规聚丙烯(sPP)的间规度指数(SI, r) 达到90%. 在同样条件下, 双核化合物的催化活性、 聚合物分子量Mw(> 100000)以及分子量分布(MWD>2.5)均比相应的单核化合物高(Mw<70000, MWD≤2), 表明该体系中存在较强的核效应.  相似文献   

5.
筛选高效、高选择性多相催化剂异构化亚油酸是共轭亚油酸(CLA)研究的重点。 本文采用溶剂挥发自组装改进的溶胶-凝胶法,合成有序介孔Ru掺杂的MgO-ZrO2固体碱催化剂。 考察了催化剂中不同Mg物质的量对催化剂孔径、比表面积和表面碱性以及Ru等的结构和性能对催化性能的影响。 对比了催化剂的形貌、表面碱性及Ru组分对催化性能的影响程度。 结果表明,n(Zr)∶n(Mg)=3∶1时,Ru掺杂的MgO-ZrO2固体碱催化剂具有高度有序的介孔结构和高的比表面积。 而n(Zr)∶n(Mg)=1∶1时, MgO-ZrO2固体碱催化剂合成CLA产率较高,反应时间4 h,产率达到85%,催化效率为0.099 g(CLA)·L-1(solvent)·min-1,并且催化产物主要为具有生物活性的3种共轭亚油酸异构体。 催化剂的强碱性位点和晶格Ru是催化异构化反应的两个活性位点,强碱性位点是提高催化性能的关键。 固体碱复合氧化物催化效率高、制备方法简单、反应产物生物活性高等优点,具有较好的应用前景。  相似文献   

6.
王俊 《分子催化》2019,33(6):429-437
以不同端基烷基链长度的1.0G超支化大分子为桥联基,通过对其端基氨基进行催化功能改性,合成了系列具有不同桥联基长度的超支化PNP铬系催化剂。采用红外光谱(IR)、核磁共振氢谱(1H-NMR)、核磁共振磷谱(31P-NMR)、紫外光谱(UV)和质谱(MS)等表征方法证明合成催化剂的结构与理论结构相符。详细考察了溶剂种类、反应温度、Al/Cr摩尔比、反应压力、催化剂用量和催化剂结构对催化剂乙烯齐聚性能的影响。实验结果表明,当以甲苯为溶剂,甲基铝氧烷(MAO)为助催化剂时,超支化PNP铬系催化剂表现出良好的催化乙烯齐聚性能,产物以低碳烯烃为主。最佳条件下,催化活性最高可达到1.69×105g/mol Cr·h,己烯和辛烯的选择性为43.3%以上。相同聚合条件下,其催化活性随着端基烷基链长度的增加而下降。  相似文献   

7.
徐玛丽  秦璐  闫涛  陈霞 《合成化学》2016,24(1):16-20
以苄氯、吡啶炔和叠氮化钠为原料,在铜(Ⅰ)催化下,通过Click反应制得新型配体1-苄基-4-邻吡啶基-1,2,3-三唑(1); 1分别与无水FeCl2, CoCl2或NiBr2 ·DME反应合成了3个新型的吡啶基三唑金属配合物(2~4),其结构经1H NMR, 13C NMR, IR和元素分析表征。考察了2~4对乙烯聚合反应的催化性能。结果表明:以甲基铝氧烷(MAO)为助催化剂, 4具有最高的催化活性,在温度为20 ℃, Al/Ni为2 500条件下,催化活性达8.8×105 g·mol-1·h-1。  相似文献   

8.
王俊  李昱颖  张娜  陈丽铎 《分子催化》2019,33(5):429-437
以正辛胺和十二胺为原料,分别制备了两种超支化PNP配体,通过引入金属铬活性位点的方法合成了具有不同烷基链长度的超支化PNP铬系催化剂.采用红外光谱(IR)、核磁共振磷谱(~(31)P-NMR)、核磁共振氢谱(~1H-NMR)、紫外光谱(UV)和质谱(MS)等表征方法证明合成催化剂的结构与理论结构预测相符.详细考察了催化剂用量、溶剂种类、反应条件以及配合物结构对乙烯齐聚性能的影响.实验结果显示,超支化PNP铬系催化剂在甲苯作溶剂,甲基铝氧烷(MAO)做助催化剂时表现出良好的催化乙烯齐聚性能,产物主要为低碳烯烃.在最佳条件下,催化活性最高可达到1.69×10~5 g·(mol Cr·h)~(-1),己烯和辛烯的选择性为43.3%以上.相同聚合条件下,其催化活性随着端基烷基链长度的增加而下降.  相似文献   

9.
以1.0代聚酰胺-胺(PAMAM)为配体骨架,氯代二苯基膦为原料,通过取代反应合成了1种含有较大空间位阻的新型树枝状PNP配体,再以Cr Cl3(THF)3为络合试剂,通过络合反应合成树枝状PNP铬催化剂.采用傅里叶变换红外光谱(FTIR)、紫外-可见分光光度计(UV-Vis)、核磁共振波谱(NMR)、电喷雾电离质谱(ESI-MS)和元素分析等手段证实合成的新型树枝状PNP配体及其铬催化剂的结构与理论设计的结构一致.以甲基铝氧烷(MAO)为助催化剂,对乙烯齐聚反应进行了研究,考察了溶剂种类、反应温度、反应压力及Al/Cr摩尔比对该催化剂活性和选择性的影响.结果表明,以甲苯为溶剂,MAO为助催化剂,当反应温度为25℃,反应压力为0.9 MPa,Al/Cr摩尔比为500时,该催化剂的活性高达2.15×105g/(mol Cr·h),催化剂对乙烯三聚、四聚反应的选择性共达到36.76%.  相似文献   

10.
为了探索更长的碳链自由基l-CnH与O2反应的机理, 在CCSD(T)/CC-PVTZ+ZPVE//B3LYP/6-311++G(d,p)的计算水平下, 讨论了当n=5,6时, l-CnH+O2的各个异构化反应通道. 当n=5时, 主要反应通道为碳迁移过程, 生成主要产物为P2(CO2+C4H); 当n=6时, 碳-氧交换[产物为P1(CO+HC5O)]和氧迁移过程[产物为P3(3O+HC6O)]均为主要通道, 并具有很高的竞争性. 将所得结构与l-CnH(n≤4)+O2的反应机理进行了对比.  相似文献   

11.
Two hyperbranched bisphosphinoamine (PNP) ligands and chromium complexes were synthesized in good yield with 1.0 generation (1.0 G) hyperbranched macromolecules, chlorodiphenylphosphine (Ph2PCl) and CrCl3(THF)3 as raw materials. The hyperbranched PNP ligands and chromium complexes were characterized by FT-IR, 1H NMR, 31P NMR, UV and ESI-MS. Comparing with the chromium complexes, the hyperbranched PNP ligands, in combination with Cr(III), and activation by methylaluminoxane (MAO) in situ generated species with better catalytic performance for ethylene oligomerization. The effect of solvent, chromium source, ligand/Cr molar ratio, reaction temperature, Al/Cr molar ratio and reaction pressure on the catalytic activity and product selectivity were studied. The results showed that with increase of ligand/Cr molar ratio, reaction temperature and Al/Cr molar ratio, the catalytic activity increased at first and then decreased. However, the catalytic activity continuously increased with increase of reaction pressure. Under the optimized conditions, the catalytic system of hyperbranched PNP/Cr(III)/MAO led to catalytic activity of 2.68 × 105 g/(mol Cr·h) and 37.71% selectivity for C6 and C8.  相似文献   

12.
Two new hyperbranched bispyridylamine ligands and multinuclear chromium complexes were synthesized with 1.0?G hyperbranched macromolecules, 2-chloropyridine, 2-chloro-4-methylpyridine and CrCl3(THF)3 as raw materials. The structures of hyperbranched ligands and chromium complexes were characterized by UV, FT-IR, 1H NMR, ESI-MS, and elemental analysis. These hyperbranched chromium complexes were evaluated as catalyst precursors by using MAO as activator in the oligomerization of ethylene. Effects of reaction temperature, reaction pressure, Al/Cr molar ratio, concentration of catalyst, solvent, and the structure of catalysts on the catalytic activity and product selectivity were investigated. The oligomerization results showed that with increase of reaction temperature, reaction pressure, and Al/Cr molar ratio, the catalytic activity increased and then decreased; the catalytic activity continuously decreased as the amount of catalyst increased. The products were mainly based on C6 and C8. Under optimized conditions, the catalytic system of hyperbranched NNN/Cr(III)/MAO led to activity of 1.26?×?105 g/(mol·Cr·h) and 63.34% selectivity for C6 and C8.  相似文献   

13.
A series of nickel complexes {NOONR}Ni(A:R=Me; B:R=t-Bu; C:R=OMe) based on salicylaldehyde-imine ligands was synthesized through Schiff base condensation and metal complexation reaction. Upon activation with methylaluminoxane(MAO), nickel complexes A-C all exhibited good catalytic activity[turnover frequency=5.2×105-16.3×105 g/(mol Ni·h)] and oligomer selectivity(above 85%, mass fraction) in ethylene oligomerization. In addition, C8-C12 olefins occupied an important proportion in the products of oligomers. Under the conditions of 4.0 MPa, 25℃ and Al/Ni molar ratio of 275, the catalytic selectivity of A/MAO system toward C8-C12 was about 30.1%(mass fraction), and the content of C8-C12 α-olefins was consistently above 70%. Furthermore, besides the ligand environment, the catalytic properties of A-C were substantially affected by experimental parameters, such as the reaction pressure, reaction temperature and Al/Ni ratio.  相似文献   

14.
Three hyperbranched salicylaldimine ligands with tetradecyl as core, with hexadecyl as core and with octadecyl as core were synthesized in good yields. These ligands were reacted with cobalt chloride hexahydrate to form three complexes ( C1 – C3 ). The compounds were characterized using Fourier transform infrared, 1H NMR, mass and UV spectroscopies and thermogravimetric and differential thermal analyses. The catalytic properties of the hyperbranched cobalt complexes were evaluated for ethylene oligomerization. The effects of solvent and reaction parameters (Al/Co molar ratio, temperature and reaction pressure) on ethylene oligomerization were studied using the cobalt complex C3 as pre‐catalyst and methylaluminoxane (MAO) as co‐catalyst. Under these conditions ([Co] = 5 μmol, Al/Co = 500, 25 °C, 0.5 MPa ethylene, 30 min), the catalytic activity of complex C3 in toluene was 1.85 × 105 g (mol Co)−1 h−1 and the selectivity for C8+ oligomers was 55.72%. The complex structure also had a significant influence on both the catalytic activity and selectivity. All three cobalt complexes, activated with MAO, showed moderate activities towards ethylene oligomerization and the activity of cobalt complex C1 was up to 1.99 × 105 g (mol Co)−1 h−1. The kinds of metal center of complexes (cobalt complex C1 and nickel complex with tetradecyl as core) and their catalytic properties were investigated in detail under the same conditions.  相似文献   

15.
树枝状吡啶亚胺铬催化剂的合成及其催化性能研究   总被引:1,自引:0,他引:1  
王俊  荆雪微  蒋岩  陈丽铎 《化学通报》2019,82(2):138-143
以1. 0代聚酰胺-胺树枝状大分子为配体骨架、吡啶二甲醛为原料,合成了一种新型树枝状吡啶亚胺(DPI)配体,再以CrCl_3·6H_2O为络合试剂,制备DPI-Cr催化剂。采用IR、UV-Vis、MS、元素分析等确证了产物结构。考察溶剂种类、助催化剂种类、反应温度、乙烯压力以及Al/Cr摩尔比对DPI-Cr催化乙烯齐聚性能的影响。结果表明,DPI-Cr催化剂表现出良好的催化活性和烯烃选择性,优化反应条件下,催化效率可达4. 91×10~4g/mol Cr·h,C_6和C_8选择性为73. 90%。  相似文献   

16.
Five new double silylene-bridged binuclear titanium complexes were synthesized by the reaction of RCpTiCl3 and Li2[μ,μ-(SiMe2)2 (C5H3)2] in toluene. They were all well characterized. These complexes activated with methylaluminoxane (MAO) are highly active catalysts (2.33 × 105 g PE/mol Cat h) for the polymerization of ethylene even at low Al/Ti (Al/Ti = 300). The molecular weight distribution of the polymer indicates broad or bimodal (MWD = 26.76) distribution.  相似文献   

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