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1.
以1,1-二乙氧基乙烷为起始原料,与Vilsmeier试剂反应制得3-二甲胺基丙烯醛(3);3与氰基乙酸乙酯缩合制得1-氰基4-二甲氨基-1-乙氧酰基-1,3-丁二烯(4);4经一锅法环合及水解两步反应合成了2-氯烟酸,总收率62%.其结构经1H NMR表征.  相似文献   

2.
六氯环三聚磷腈经二次重结晶一次减压升华纯化后,通过真空热开环聚合和亲核取代反应,用不同摩尔比的2-(2-氯乙氧基)乙醇钠和三氟乙醇纳(1∶3;1∶5;1∶6.5)作为亲核取代试剂混取代聚二氯磷腈,再经多次非溶剂沉淀纯化得到目标聚合物聚[(2-(2-氯乙氧基)乙氧基)x(三氟乙氧基)2-x]磷腈.利用31P-NMR监测,以确保得到纯化的聚合物.采用1H-NMR、FT-IR、GPC、DSC、XRD等测试手段对所得到的聚合物进行了结构表征和性能测试,并利用自制的压力法透气性能测定仪测定了这些聚合物的气体渗透系数.结果表明,三氟乙氧基和2-(2-氯乙氧基)乙氧基两种基团已接枝在聚磷腈侧链上,分别得到x值为0.19,0.18和0.08的3种聚[(2-(2-氯乙氧基)乙氧基)x(三氟乙氧基)2-x]磷腈,其玻璃化温度分别为-6.37℃,-12.85℃和-25.68℃,重均分子量为5.4×105,6.8×105和1.5×105,在同样的反应条件下,三氟乙氧基较2-(2-氯乙氧基)乙氧基有更强的竞争取代率.这种混取代聚磷腈较单一取代基的聚三氟乙氧基磷腈结晶度小,在本实验中两种取代基比例适中的聚[(2-(2-氯乙氧基)乙氧基)0.18(三氟乙氧基)1.82]磷腈的结晶度降至10.1%,这种聚合物显示出较高的气体渗透系数,CO2和He的气体渗透系数达到88.9和60.6 barrer,CO2/CH4和He/CH4的选择系数达到24.1和16.4,在天然气行业显露出良好的应用潜力.此外这类聚合物表现出特殊的H2/N2选择性,选择系数在0.2左右,N2的渗透系数为8.5 barrer,因而在合成氨行业显示出特殊的应用潜力.  相似文献   

3.
以双酚A和氧乙醇为原料经Wi1liamson反应制得中间体2,2′-二[对-(β-羟基-乙氧基-)苯基]丙烷,再以对甲基苯磺酸为催化剂、以对羟基苯甲醚为阻聚剂在减压条件下通过直接醇化法制备2,2′-二[对-(β-羟基-乙氧基-)苯基]丙烷双甲基丙烯酸酯。对终产物脱色纯化工艺也做了初步的探索。  相似文献   

4.
氯代甲酸(2-乙基)己酯是一种化工中间体,主要用来制备过氧化二碳酸二(2-乙基)己酯(简称EHP),EHP是一种高活性聚合引发剂。由固体光气和2-乙基己醇为原料合成氯代甲酸(2-乙基)己酯的研究未见报道。本文以固体光气和2-乙基己醇为原料合成了氯代甲酸(2-乙基)己酯,研究了反应物加入顺序、反应时间、反应温度、催化剂种类及用量对氯代甲酸(2-乙基)己酯收率和纯度的影响,得到了优化的合成工艺,对产物结构进行了分析,进一步用其合成了常用的高活性聚合引发剂过氧化二碳酸二(2-乙基)己酯(EHP)。  相似文献   

5.
以2-氨基-4-甲氧基苯甲酸甲酯为原料,通过氯代反应,再分别通过酯水解反应得到化合物2-氨基-5-氯-4-甲氧基苯甲酸和2-氨基-3-氯-4-甲氧基苯甲酸。其中间体及产物结构经~1H NMR、~(13)C NMR和ESI-MS确证,并考察了最佳氯代反应条件。结果表明:物料配比为n(2-氨基-4-甲氧基苯甲酸甲酯)∶n(NCS)=1∶1. 2,反应溶剂为N,N-二甲基甲酰胺,反应时间为16 h,两种氯代产物2-氨基-5-氯-4-甲氧基苯甲酸甲酯和2-氨基-3-氯-4-甲氧基苯甲酸甲酯收率分别为47%和39%。  相似文献   

6.
报道了 4 氯 2 氧代 3(2H) 苯并噻唑乙酸乙酯除草剂及相关化合物的反相高效液相色谱分析方法。基线分离了 4 氯 2 氧代 3(2H) 苯并噻唑乙酸乙酯及相关化合物 5个组分 ,定量测定了 4 氯 2 氧代 3(2H) 苯并噻唑乙酸乙酯和 2 羟基 4 氯苯并噻唑 ,方法的相对标准偏差RSD分别为 1.6 8%和 1.0 3% ,平均回收率分别为 10 1.0 %和 10 0 .2 % ,检测限分别为 10 .2ng和 4.6ng  相似文献   

7.
1-(2-氰乙基)-2-氧代环戊基甲酸甲酯的选择性水解脱羧   总被引:1,自引:0,他引:1  
对1-(2-氰乙基)-2-氧代环戊基甲酸甲酯(4)的选择性水解脱羧反应进行了系统研究. 发现上述化合物在碱的催化作用下主要生成开环副产物2-(2-氰乙基)己二酸二甲酯及2-(2-氰乙基)己二酸; 由于氰基在酸性介质中也可发生水解, 因此对1-(2-氰乙基)-2-氧代环戊基甲酸甲酯在酸性情况下水解脱羧的反应条件进行了探索, 发现在4 mol•L-1盐酸介质中, 50 ℃下反应24 h, 以84.0%的收率得到目标产物3-(2-氧代环戊基)-丙腈.  相似文献   

8.
蔡小华  谢兵 《应用化学》2006,23(9):992-995
(S)-2-乙氧基-3-(4-羟基苯基)丙酸乙酯的合成;二乙氧基乙酸乙酯;Horner Wadswordth Emmons反应;催化氢化;化学拆分;(S) 乙氧基(羟基苯基)  相似文献   

9.
刘倩  赵利飞  李文红  李媛 《有机化学》2012,32(11):2122-2128
以取代苯、丁烯二酸酐、邻氨基(对氯邻氨基)苯酚为原料,合成了一系列2-酯基-1,5-苯并氧氮杂衍生物,其结构通过IR,1H NMR,MS(HRMS)及元素分析进行表征.同时,确定了一个主要副产物2-苯甲酰甲基-2H-1,4-苯并噁嗪-3(4H)-酮(6h’)的结构,提出了其可能的生成机理.研究还表明,中间体4-芳基-4-氧代-2-丁烯酸酯(4)在对甲基苯磺酸为催化剂、DMF作溶剂、回流温度下反应时主要生成目标产物2-酯基-1,5-苯并氧氮杂6,而在冰醋酸为催化剂、甲醇作溶剂、回流温度下反应时则主要生成副产物6h’.  相似文献   

10.
6-羟基-3,4-二氢-2(1H)喹啉酮合成新方法   总被引:3,自引:0,他引:3  
提出了一种以苯胺和3-氯丙酰氯为原料,经环合、硝化、还原、重氮化水解合成目标产物6-羟基-3,4二氢-2(1H)喹琳酮的新方法。此法合成的目标产物产率高,总产率达67%以上。单步产率均在86.5—99.6%之间,反应条件温和。各步产品经MS,1HNMR进行定性及结构表征。  相似文献   

11.
Solubilities of CO2 in eight hydroxyl ammonium ionic liquids 2-hydroxy ethylammonium formate (HEF), 2-hydroxy ethylammonium acetate (HEA), 2-hydroxy ethylammonium lactate (HEL), tri-(2-hydroxy ethyl)-ammonium acetate (THEAA), tri-(2-hydroxy ethyl)-ammonium lactate (THEAL), 2-(2-hydroxy ethoxy)-ammonium formate (HEAF), 2-(2-hydroxy ethoxy)-ammonium acetate (HEAA) and 2-(2-hydroxy ethoxy)-ammonium lactate (HEAL) at the temperatures ranging from 303 to 323 K and the pressures ranging from 0 to 11 MPa were determined. The solubility data were correlated using Krichevisky–Kasarnovsky equation, from which Henry's constants and the partial volumes of CO2 at different temperature were obtained. Results showed that Krichevsky–Kasarnovsky equation can correlate the solubilities of CO2 in these hydroxyl ammonium ionic liquids (ILs) well. Comparison showed that the solubility of CO2 in these eight hydroxyl ammonium ionic liquids was in sequence: THEAL > HEAA > HEA > HEF > HEAL > THEAA ≈ HEL > HEAF.  相似文献   

12.
Some novel (diorgano)chloro(4-chlorobutoxy)silanes were obtained by the reaction of dichlorodiorganosilanes with tetra hydrofuran in the presence of chloroplatinic acid.Translated fromIzvestiva Akademii Nauk. Seriya Khimicheskaya, No. 4, pp. 943–945, April, 1996.  相似文献   

13.
Metal‐catalyzed living radical polymerization of methyl methacrylate initiated with N‐chloro amides (N‐chloro N‐ethyl propionamide, N‐chloro benzanilide, N‐chloro methylbenzamide, and N‐chloro acetanilide), lactams (N‐chloro caprolactam and N‐chloro 2‐pyrrolidinone), carbamates or urethanes (N‐chloro ethylcarbamate or N‐chlorourethane), imides (N‐chloro phtalimide, N‐chloro succinimide, trichloroisocyanuric acid, and N‐chloro saccharin) and catalyzed with the self‐regulated catalytic system Cu2S/2,2′‐bipyridine is reported. The initiation efficiency of these initiators is determined by their structure. Regardless of the initiator efficiency, in all cases, poly (methyl methacrylate) with narrow molecular weight distribution and functionalized chain‐ends was obtained. These new classes of initiators open new strategies for the functionalization of polymer chain‐ends and for the synthesis of complex architectures by graft copolymerization initiated from N‐chloro proteins, aliphatic, aromatic and semiaromatic polyamides, and polyurethanes. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 43: 5283–5299, 2005  相似文献   

14.
The reaction of the 2‐(1‐alkylhydrazino)‐6‐chloroquinoxaline 4‐oxides 1a,b with diethyl acetone‐dicarboxylate or 1,3‐cyclohexanedione gave ethyl 1‐alkyl‐7‐chloro‐3‐ethoxycarbonylmethylene‐1,5‐dihydropyridazino[3,4‐b]quinoxaline‐3‐carboxylates 5a,b or 6‐alkyl‐10‐chloro‐1‐oxo‐1,2,3,4,6,12‐hexahydroquinoxalino[2,3‐c]cinnolines 7a,b , respectively. Oxidation of compounds 5a,b with nitrous acid afforded the ethyl 1‐alkyl‐7‐chloro‐3‐ethoxycarbonylmethylene‐4‐hydroxy‐1,4‐dihydropyridazino‐[3,4‐b]quinoxaline‐4‐carboxylates 9a,b , whose reaction with base provided the ethyl 2‐(1‐alkyl‐7‐chloro‐4‐oxo‐1,4‐dihydropyridazino[3,4‐b]quinoxalin‐3‐yl)acetates 6a,b , respectively. On the other hand, oxidation of compounds 7a,b with N‐bromosuccinimide/water furnished the 4‐(1‐alkyl‐7‐chloro‐4‐oxo‐1,4‐dihydropyridazino[3,4‐b]quinoxalin‐3‐yl)butyric acids 8a,b , respectively. The reaction of compound 8a with hydroxylamine gave 4‐(7‐chloro‐4‐hydroxyimino‐1‐methyl‐1,4‐dihydropyridazino[3,4‐b]quinoxalin‐3‐yl)‐butyric acid 12 .  相似文献   

15.
A convenient one‐pot method for the preparation of (4Z)‐4‐(arylmethylidene)‐5‐ethoxy‐1,3‐oxazolidine‐2‐thiones 2 and 3 from ethyl (2Z)‐3‐aryl‐2‐isothiocyanatoprop‐2‐enoates 1 , which can be easily prepared from ethyl 2‐azidoacetate and aromatic aldehydes, has been developed. Thus, these α‐isothiocyanato α,β‐unsaturated esters were treated with organolithium compounds, including lithium enolates of acetates, to provide 5‐substituted (4Z)‐4‐(arylmethylidene)‐5‐ethoxy‐1,3‐oxazolidine‐2‐thiones, 2 , and 2‐[(4Z)‐(4‐arylmethylidene)‐5‐ethoxy‐2‐thioxo‐1,3‐oxazolidin‐5‐yl]acetates, 3 .  相似文献   

16.
Fluorinated ionomer p-perfluoro[1-(2-sulfonic)ethoxy]ethylated polyacrylonitrile-styrene (SFAS) (5) was synthesized via electron transfer reaction between polyacrylonitrile-styrene (AS) (1) and perfluoro-di[2-(2-fluorosulfonyl)ethoxy]propionyl peroxide (FAP) (2) and followed by alkali hydrolysis and acidification of p-perfluoro[1-(2-fluorosulfonyl)ethoxy]ethylated polyacrylonitrile-styrene (3). The microstructure of ionomer 5 was well characterized by FTIR and 19F NMR. Its desulfonation occurred above 197 °C was found by TGA, the degree of substitution (DS) and ion exchange capacity (IEC) determined by titration were well controlled through changing the molar ratio of 2:1. The proton exchange membranes made of ionomer 5 have water uptake from 13.4 to 135.3% and conductivity up to 10−2 S cm−1 at 25 °C.  相似文献   

17.
The reaction of 2-[1-(prop-2-yn-1-yloxy)ethoxy]ethyl isothiocyanate with alkaloid cytisine gave the corresponding thiourea derivative which was subjected to partial hydrolysis on heating in boiling aqueous ethanol or complete hydrolysis in the presence of a catalytic amount of an acid. The structure of the hydrolysis product, N-(2-hydroxyethyl)cytisinecarbothioamide, was proved by X-ray analysis.  相似文献   

18.
The vinyl of the ester group of 2-vinyloxyethyl methacrylate was first selectively reacted with acetic acid to obtain 2-[1-(acetoxy)ethoxy]ethyl methacrylate ( 2 ). This protected monomer was subjected to anionic polymerization in tetrahydrofuran at −60°C in the presence of LiCl, using 1,1-diphenylhexyllithium as initiator. The molecular weight of the polymer could thus be controlled and a narrow molecular weight distribution obtained. The protecting group, 1-(acetoxy)ethyl, could be easily eliminated (by quenching the polymerization reaction with methanol and water) to generate poly(2-hydroxyethyl methacrylate) (poly(HEMA)). Block copolymers were also prepared by the sequential anionic polymerization of MMA and 2 or styrene and 2 . They possess narrow molecular weight distributions, and controlled molecular weights and compositions. © 1998 John Wiley & Sons, Inc. J Polym Sci A: Polym Chem 36: 1865–1872, 1998  相似文献   

19.
李荣  王强  张灯青  李贤英  向芸颉  金武松 《合成化学》2015,23(12):1147-1149
以2-[2-(2-甲氧基乙氧基)乙氧基]乙基-4-甲基苯磺酸为原料,经2步反应制得中间体2,2′-【2,5-二{2-[2-(2-甲氧基乙氧基)乙氧基]}1,4-二(4,4,5,5-四甲基)-1,3,2-二氧硼基】苯(6); 3-溴-1,10-邻菲啰啉和6经Suzuki偶联反应合成了一个新型的邻菲啰啉衍生物--3,3′-【2,5-二{2-[2-(2-甲氧基乙氧基)乙氧基]}-1,4-二(1,10-菲啰啉基)】苯,其结构经1H NMR和MALDI-TOF-MS表征。  相似文献   

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