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1.
合成了2种新型硅烷化合物双环己基二甲氧基硅烷(Donor-H)、双哌啶二甲氧基硅烷(Donor-Py),将其与工业化的环己基甲基二甲氧基硅烷(Donor-C)分别作为外给电子体,用于MgCl2负载的Ziegler-Natta催化剂催化丙烯聚合,通过DSC、GPC、SSA和13C-NMR等分析手段研究了3种外给电子体取代基的变化对催化剂的催化活性、氢调敏感性、聚丙烯的等规度、分子量分布、结晶能力、等规序列分布的影响.结果表明,随着外给电子体取代基体积的增大,外给电子体的给电子能力逐渐增强.与Donor-C相比,随着外给电子体取代基体积的增大,合成的具有较大取代基的Donor-H和Donor-Py用于丙烯聚合时都表现优异的催化性能,特别是新型含有N杂原子的氨基硅烷类Donor-Py为外给电子体的催化剂的催化活性和制备的聚丙烯的等规度最高,聚丙烯的熔融指数可调范围最宽,结晶能力更强.氨基硅烷类Donor-Py制备的聚丙烯SSA热分级后的高等规组分含量最多,可高达64.5%,聚丙烯等规序列长度最长,聚丙烯的等规序列分布最窄,而且13C-NMR结果也表明聚丙烯等规序列长度MSL最长,聚丙烯的分子链最规整.  相似文献   

2.
给电子体在丙烯聚合MgCl_2载体催化剂体系中的作用   总被引:2,自引:0,他引:2  
研究了不同给电子体分别作为内给电子体(D_(in))和外给电子体(D_(ex))对MgCl_2载体催化剂体系活性和定向性能的影响。还讨论了D_(in)和D_(ex)的搭配作用。烷氧基硅烷、苯甲酸乙酯(EB)、邻苯二甲酸二异丁酯(DIBP)和2,2,6,6-四甲基哌啶(TMP)用作Dex,可以明显改善聚丙烯的等规度,而同时使催化活性大大降低。EB、DIBP和TMP用作D_(in)的效果则各不相同。烷氧基硅烷等D_(ex)提高等规度的作用是由于它们选择性地使无规活性中心失活大大高于等规活性中心。适当的D_(in)和D_(ex)搭配,可以获得兼具高活性和高定向性能的催化剂体系。  相似文献   

3.
用无外给电子体Ziegler-Natta催化剂催化丙烯聚合的研究   总被引:8,自引:0,他引:8  
采用 9,9 双 (甲氧基甲基 )芴 (BMMF)为内给电子体合成MgCl2 /TiCl4 /BMMF催化剂 ,以三乙基铝为助催化剂在无需外给电子体的情况下得到高等规度的聚丙烯 .该催化剂具有高活性和高立体定向性 ,并与以邻苯二甲酸二丁酯 (Phthalate)为内给电子体 ,二苯基二甲氧基硅 (DDS)为外给电子体合成的MgCl2 /TiCl4 /Phthalate AlEt3 /DDS催化剂的性能进行比较 ,结果表明无外给电子体催化剂具有较高的活性 ,且聚丙烯的等规度大于 95 % .研究了聚合温度 ,铝钛比等聚合条件对催化剂的活性 ,聚合物的分子量、等规度和熔点的影响 ,并用13 C NMR对聚合物的序列结构进行了分析  相似文献   

4.
外给电子体(ED)作为负载型Ziegler-Natta催化剂的一个重要组分, 在影响α-烯烃的催化活性及聚合物的立构规整性方面发挥着重要作用. 本文研究了4种不同结构及电子密度的硅烷类外给电子体[二甲基二甲氧基硅烷(D1)、 二丁基二甲氧基硅烷(D2)、 二苯基二甲氧基硅烷(D3)及二环戊基二甲氧基硅烷(D4)]对丙烯均聚及丙烯(一段)-丁烯(二段)序贯聚合的影响. 结果表明, ED对烯烃聚合的催化活性、 活性中心数及活性中心定向能力都具有显著的影响. 密度泛函理论(DFT)模拟计算表明, 随着ED的空间位阻和电子密度增加, ED在MgCl2表面的吸附能降低, 吸附稳定性降低; ED的空间位阻和电子密度增加有利于提高丙烯聚合活性中心的定向能力, 当n(D4)/n(Ti)=20时, 合成的聚丙烯(PP)中的等规聚丙烯(iPP)组分含量达到92.8%. 当n(ED)/n(Ti)=15时, 丙烯聚合的聚合速率常数达到最大值; 具有更大空间位阻和电子密度的ED使得丙烯-丁烯序贯聚合的活性中心具有更强的定向能力, ED对丁烯(二段)聚合活性及聚丙烯/聚丁烯合金(PBA)中等规聚丁烯(iPB)组分的熔点影响更显著.  相似文献   

5.
外给电子体对聚丙烯性能的影响   总被引:4,自引:0,他引:4  
综述了用Ziegler-Natta催化剂制备聚丙烯时加入的外给电子体对聚丙烯等规度、分子量分布和熔融指数的影响,并深入讨论了不同外给电子体组合对聚丙烯性能的影响。采用合适的外给电子体组合可以制备出高熔融指数、宽分子量分布的高性能聚丙烯。  相似文献   

6.
近年来,聚丙烯工业生产的第三代催化剂都使用烷氧基硅烷作外给电子体,不同结构的硅烷作为外给电子体,对丙烯聚合行为的影响研究表明,外给电子体能使聚合物的等规度提高,同时伴随着聚合活性下降,烷氧基硅烷等外给电子体提高等规度的作用,是由于它们选择性地使无规活性中心失活的能力远高于等规活性中心,或使无规活性中心  相似文献   

7.
采用相同制备工艺 ,制备分别以邻苯二甲酸二异丁酯 (DIBP)和 9,9 双 (甲氧基甲基 )芴 (BMMF)为内给电子体和不加入内给电子体 3种催化剂 .研究了它们在无外给电子体时聚合性能 ,以及合成的聚丙烯的等规度 ,分子量及其分布 .并采用CRYSTAF和1 3C NMR对聚丙烯沸腾庚烷不溶部分结晶性能和序列结构进行分析 ,结果表明内给电子体对聚丙烯分子链序列结构有很大影响 ;BMMF催化剂、DIBP催化剂和无内给电子体催化剂合成的聚丙烯规整性依次下降 .对BMMF催化剂 ,当烷基铝为Et3Al时 ,铝钛比增加 ,等规度和活性明显下降 .当烷基铝i Bu3Al时 ,铝钛比增加 ,等规度略微下降而活性增加 ;但是1 3C NMR研究发现其 (铝钛比为 3 0 0时 )庚烷不溶物的规整性与DIBP催化剂的庚烷不溶物的规整性一致 .这表明内给电子体在聚合中的作用不在于是酯还是醚 ,在于它与氯化镁的络合强度 .络合越强 ,得到的聚丙烯分子链越规整  相似文献   

8.
近年来,基于给体-受体(D-A)型共轭聚合物的电致变色器件表现出响应速率快、颜色可调、良好的循环稳定性等诸多优点,受到广泛关注.设计了一类以三苯胺为电子给体,喹喔啉衍生物为电子受体的新型给体-受体-给体(D-A-D)型化合物5,8-二(4-(二苯基氨基)苯基)-2,3-二甲基喹喔啉(Q1)和6,9-二(4-(二苯基氨基)苯基)-1,2,3,4-四氢吩嗪(Q2),通过电化学聚合制备了D-A型聚合物聚(5,8-二(4-(二苯基氨基)苯基)-2,3-二甲基喹喔啉)(PQ1)和聚(6,9-二(4-(二苯基氨基)苯基)-1,2,3,4-四氢吩嗪)(PQ2).研究表明,该类新型的D-A型聚合物在中性时为浅黄色,且随着电压的增大呈现多种颜色变化.该类电致变色材料具有响应时间快、着色效率较高、循环稳定性良好等优点,且其在780 nm附近的最大光学对比度均超过70%,具有潜在的应用价值.  相似文献   

9.
用13C-NMR(核磁共振)和DSC(差热分析)方法分析了燕山石化股份有限公司生产的BOPP均聚物,并对其微观等规度进行了研究,发现可以用外给电子体对BOPP的微观等规度进行调控,从而使BOPP树脂的拉膜质量显著提高,达到国外进口BOPP树脂的水平。  相似文献   

10.
采用Ziegler-Natta催化剂催化1-丁烯本体聚合,稀土β-成核剂经原位聚合的方法加入到体系,并考察成核剂加入量对产物聚(1-丁烯)的分子量和结晶性能的影响.通过凝胶渗透色谱(GPC)、示差扫描量热仪(DSC)、偏光显微镜(POM)和广角X射线衍射仪(WAXD)对聚合物进行表征分析.实验结果表明,随着稀土β-成核剂加入量的增大,催化剂活性有所下降,聚合物等规度略有提高,而聚合的分子量显著提高,分子量分布变窄;聚合时成核剂的加入提高了聚(1-丁烯)的结晶性能,随着成核剂加入量的增多聚合物晶粒变小且尺寸趋向均一化,聚合物结晶度也得到了提高,当成核剂加入量为30 mg时,聚合物结晶度和熔融焓出现突变现象.此外,稀土β-成核剂的加入会改变熔融前聚(1-丁烯)中晶型Ⅰ’和Ⅲ所占比例从而影响聚合物的熔点,成核剂的存在也改变了晶型II向晶型I的转变速率,缩短了晶型转变周期.  相似文献   

11.
Mo2S4(R2dtc)2 (R = methyl, ethyl or benzyl; R2 = pyrrolidinyl, piperidinyl or 4-morpholinyl) have been prepared starting from ammon  相似文献   

12.
Novel, specially prepared, tetrahydropyran‐based γ‐amino alcohols (S)‐2‐(aminomethyl)‐3‐hydroxy‐6‐ethoxy(phenoxy)‐tetrahydropyrans ( I ) (amino = n‐Bu2N, piperidinyl, pyrrolidinyl, azetidinyl) were tested as catalysts in the asymmetric addition of Et2Zn and n‐Bu2Zn to (hetero)aromatic aldehydes. In most cases the phenoxy derivatives of I acted more enantioselectively than the ethoxy ones. The dibutylamino derivaties showed the least enantioselectivity; the pyrrolidinyl derivatives were more active as catalysts than piperidinyl and azetidinyl compounds. The highest enantioselectivity was observed in the addition of Et2Zn to benzaldehyde in the presence of (S)‐2‐(N‐pyrrolidinylmethyl)‐3‐hydroxy‐6‐phenoxytetrahydropyran. The corresponding alcohol was prepared with 72% ee (R‐configuration). The addition of dibutylzinc proceeded slowly and less selectively. The alkylation of (hetero)aromatic aldehydes with Et2Zn and n‐Bu2Zn was also studied in the presence of the known optical inductor (1S,2R)‐N,N‐dibutylnorephedrine. Some chiral aromatic secondary alcohols were synthesized in high chemical yields and up to 93% ee enantioselectivity. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

13.
1,8-di-O-alkylaloe-emodin derivatives (namely, methyl-, propyl-, hexyl-, dodecyl-, and octadecyl) were synthesized from naturally occurring aloe-emodin. Further, derivatives having various substituents such as diethylamino, pyrrolidinyl, piperidinyl, methylpiperazinyl, imidazolyl, thiocyano and selenocyano groups at the 15 position of chrysophanol and 1,8-di-O-hexylchrysophanol from aloe-emodin were synthesized. The cytotoxic effects of these derivatives on less P-glycoprotein (P-gp)-expressing HCT 116 cells and stably P-gp-expressing Hep G2 cells were evaluated by performing 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay. Among these products, several of them exhibited markedly higher potent cytotoxic effects not only on HCT116 cells but also Hep G2 cancer cells as compared to aloe-emodin.  相似文献   

14.
The double cyclocondensation of symmetric pyridyl bis(oxoacids) 2b and 3b with (R)-phenylglycinol stereoselectively gave access to bis-phenylglycinol-derived oxazolopyrrolidine 9 and oxazolopiperidone 10, respectively. Application of the stereocontrolled cyclocondensation reaction to phenyl bis-γ-oxoacid 4b provided 11, which was converted to the corresponding enantiopure di(pyrrolidinyl)benzene 22. The absolute configuration of the new stereogenic centers generated in the key cyclocondenstion step was unambiguously established by X-ray crystallographic analysis.  相似文献   

15.
In our continuing search for potential anticancer candidates, 2‐(3‐methoxyphenyl)‐6‐pyrrolidinyl‐4‐quinazolinone ( JJC‐1 ) was selected as the lead compound. Starting 5‐pyrrolidinyl‐2‐aminobenzamide was prepared using standard methodology from 5‐chloro‐2‐nitrobenzoic acid by reaction with SOCl2, NH3, pyrrolidine, and H2. The starting benzamide then was reacted with 2‐substituted benzaldehyde or benzoyl chloride in N,N‐dimethylacetamide (DMAC) in the presence of NaHSO3 at 150 °C. Thermal cyclodehydration/dehydrogenation gave the target 6‐pyrrolidinyl‐2‐(2‐substituted phenyl)‐4‐quinazolinones ( 15–22 ). These target compounds were assayed for their cytotoxicity in vitro against six cancer cell lines, including human monocytic leukemia cells (U937), mouse monocytic leukemia cells (WEHI‐3), human hepatoma cells (HepG2, Hep3B) and human lung carcinoma cells (A549, CH27). Most of them exhibited significant cytotoxic effect toward U937 and WEHI‐3 cells, with EC50 values ranging from 0.30 to 10.10 μM. Compound 19 was investigated further for its action mechanisms. Preliminary findings indicated that compound 19 induced G2/M arrest and apoptosis on U937 cells.  相似文献   

16.
The formal insertions of carbon dioxide into a series of methylzinc dialkylamide complexes (MeZnNR(2)) initially form solvent-free, tetrameric zinc carbamato complexes [Me(4)Zn(4)(O(2)CNR(2))(4)] (NR(2) = N(i-Pr)(2) (1), N(i-Bu)(2) (2), and piperidinyl (3)). These compounds have been characterized by traditional techniques as well as by single-crystal X-ray diffraction analyses. The tetrameric backbones seen in the solid state for 1-3 were structurally similar to each other. Addition of excess pyridine (py) to 1-3 breaks apart the tetramers and converts them into solvated dimeric species [Me(2)Zn(2)(O(2)CNR(2))(2)(py)(2)] (NR(2) = N(i-Pr)(2) (4), N(i-Bu)(2) (5), and piperidinyl (6)). X-ray crystallographic analyses of 4 and 5 confirmed the dimeric structure in the solid state. This study significantly increases the number of well-characterized zinc carbamates prepared via CO(2) insertion into zinc amides.  相似文献   

17.
The alcoholysis of trihydrosilanes catalysed by rhodium complexes led to a mixture of alkoxysilanes. Prochiral monoalkoxydihydrosilanes obtained with sterically hindered alkoxy groups, were converted to trifunctional organosilanes. The possibility of obtaining optically active compounds using asymmetric synthesis was investigated with racemic compounds. α-Naphthyl(mesitylisopropylmethoxy)piperidinosilane could be obtained with a 36% optical yield. However the substitution of the piperidinyl group occurred with racemisation.  相似文献   

18.
Epimeric pyrrolidinyl glycines, a sort of conformationally constrained α,β-diaminoacids, were stereoselectively prepared using complementary approaches based on nitrone chemistry. Nucleophilic additions to pyrrolidinyl nitrones and 1,3-dipolar cycloadditions of l-serine derived nitrones to form the corresponding hydroxylamines and isoxazolidines, respectively, provided key intermediates for the synthesis of the target compounds. Whereas the nucleophilic addition route afforded the syn adduct, the 1,3-dipolar cycloaddition approach furnished the precursor for the preparation of the corresponding anti compound.  相似文献   

19.
Twenty-four pyrazolo derivatives (1–4)(a-f) were synthesized and characterized by FTIR, 1H, and 13C NMR (Nuclear Magnetic Resonance), and elemental analysis. The synthesized compounds were also investigated for their antioxidant and anticholinesterase activities. The compounds (3–4)(a-f) carrying morpholine ring were more active than the piperidinyl containing compounds (1–2)(a-f) in both activities. The compound 4f showed higher activity in both assays as compared with the others. Additionally, the anticholinesterase activity test provided higher values than the galantamine in the BChE assay. Therefore, compound 4f can be used as anticholinesterase agent and/or anticholinesterase assay standard.  相似文献   

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