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1.
以正在开发的磺酰脲类超高效除草剂NK94827[N'-(4'-甲基嘧啶-2'-基)-2-甲氧羰基苯磺酰脲]的基本结构为基础,设计合成了18个苯环2位不同酯基取代的的新型磺酰脲类化合物,产物结构均经1HNMR及元素分析确证.经油菜平皿法和盆栽试验测试除草活性,所合成的部分磺酰脲化合物的除草活性高.  相似文献   

2.
以单取代苯磺酰脲除草剂NK92825和NK94827为基础,将三氟甲基引入嘧啶环中,设计合成了17个新的4′-三氟甲基嘧啶苯磺酰脲化合物,产物结构均经1H NMR及元素分析确证.目标化合物经盆栽试验,结果表明,部分化合物有较好的除草活性.  相似文献   

3.
为进一步寻找高效、安全和对环境更加友好的除草剂,以商品化除草剂单嘧磺酯为研究基础,对其结构中的苯环5-位取代基作了结构修饰,合成了26个未见文献报道的新型N-(4'-取代嘧啶-2-基)-2-甲氧羰基-5-苯甲酰胺基苯磺酰脲化合物,通过1H NMR、质谱及元素分析确定了化合物的结构.经油菜平皿法及盆栽法测试了所有化合物的除草活性,结果表明,当苯环5-位取代基为苯甲酰胺时,活性较好,其对双子叶植物的除草活性与商品化的甲嘧磺隆相当.  相似文献   

4.
三氟甲基嘧啶磺酰脲的合成与除草活性   总被引:1,自引:1,他引:1  
王娜  李亚明  王秀娜  王凤刚 《合成化学》2006,14(6):597-599,602
以三氟乙酰乙酸乙酯和盐酸胍为原料,经环合、氯化、甲氧基化、胺化反应合成了4种2-氨基-4-取代-6-三氟甲基嘧啶中间体(Ⅰa~Ⅰd),Ⅰ与邻甲氧羰基苯磺酰异氰酸酯亲核加成,合成了3种含不同取代嘧啶环的磺酰脲化合物(Ⅱb~Ⅱd)。其中2-氨基-4-二甲胺基-6-三氟甲基嘧啶(Ⅰd)和N[-2-(′4-二甲胺基-6-三氟甲基)嘧啶基]-2-甲氧羰基苯磺酰脲(Ⅱd)为新化合物,结构经1H NMR和MS表征。初步除草活性测定结果表明,N-[2-′(4-甲氧基-6-三氟甲基)嘧啶基]-2-甲氧羰基苯磺酰脲(Ⅱc)在浓度为200 ga.i./ha时对稗草和马唐的防效分别为70%和50%。  相似文献   

5.
采用比较分子力场分析(CoMFA)方法,对两类单取代嘧啶类似物、6个N-(4-取代嘧啶-2-基)-2-甲氧羰基苄基磺酰脲(1a~1f)和14个N-(4-取代嘧啶-2-基)-2-取代苯氧基磺酰脲(2a~2n)进行三维定量构效关系(3D-QSAR)研究.建立了一个较为可靠的预测模型.结果表明,分子中苯环邻位、嘧啶环形成氢键的N原子处以及嘧啶环4位和6位附近负电荷增加;苯环邻位乙氧基的CH2CH3附近选择带正电的原子;苯环邻位乙氧基附近空间体积增加,而嘧啶环4位甲氧基稍远处取代基的立体位阻不超过此位置,将有利于提高活性.最后解释了修饰磺酰脲的除草剂仍具有较高活性的原因.  相似文献   

6.
为进一步寻找高效、安全和对环境更加友好的除草剂, 以商品化除草剂单嘧磺酯为研究基础, 对其结构中的苯环5-位取代基作了结构修饰, 合成了26个未见文献报道的新型N-(4'-取代嘧啶-2'-基)-2-甲氧羰基-5-苯甲酰胺基苯磺酰脲化合物, 通过1H NMR、质谱及元素分析确定了化合物的结构. 经油菜平皿法及盆栽法测试了所有化合物的除草活性, 结果表明, 当苯环5-位取代基为苯甲酰胺时, 活性较好, 其对双子叶植物的除草活性与商品化的甲嘧磺隆相当.  相似文献   

7.
乙酰羟基酸合成酶(Acetohydroxyacid synthase, AHAS, EC 4.1.3.18)是植物和微生物中亮氨酸、异亮氨酸和缬氨酸合成途径的一个关键酶, 以AHAS为靶标的磺酰脲类除草剂具有高效、高选择性和对环境友好的特点. 通过2-氨基-4-甲基嘧啶溴代反应以及进一步的衍生、磺酰基异氰酸酯的胺解, 合成了一系列含有5-溴嘧啶基的新磺酰脲. 其结构经1H NMR、质谱和元素分析确定. 生物活性测试表明目标化合物在离体水平对大肠杆菌乙酰羟基酸合成酶同工酶AHASII表现出了与市售除草剂苯磺隆相当甚至更优的抑制活性, 而盆栽除草活性低于苯磺隆.  相似文献   

8.
乙酰羟基酸合成酶(Acetohydroxyacid synthase,AHAS,EC 4.1.3.18)是植物和微生物中亮氨酸、异亮氨酸和缬氨酸合成途径的一个关键酶,以AHAS为靶标的磺酰脲类除草剂具有高效、高选择性和对环境友好的特点.通过2-氨基-4-甲基嘧啶溴代反应以及进一步的衍生、磺酰基异氰酸酯的胺解,合成了一系列含有5-溴嘧啶基的新磺酰脲.其结构经1H NMR、质谱和元素分析确定.生物活性测试表明目标化合物在离体水平对大肠杆菌乙酰羟基酸合成酶同工酶AHASⅡ表现出了与市售除草剂苯磺隆相当甚至更优的抑制活性,而盆栽除草活性低于苯磺隆.  相似文献   

9.
单嘧磺隆原药组成的定性和定量分析   总被引:3,自引:0,他引:3  
磺酰脲类除草剂作用于乙酰乳酸合成酶(ALS),对温血动物几乎无毒,磺酰脲活性分子必须含有胍桥,在胍桥间位须为双取代,而对位不能有任何取代基,分子中还须有一个杂环系统,前文从室内筛选出发,发现部分单一取代杂环的磺酰脲化合物也具有足够的除草活性,  相似文献   

10.
前文曾报道了15种含4,6—二取代嘧啶环的噻吩磺酰脲类化合物的合成和除草活性测定。初步的结构与生物活性关系的研究表明,嘧啶环上取代基的种类,数目及位置对此类化合物的生物活性影响较大,含4,6—二甲基嘧啶环的噻吩磺酰脲具超高除草活性,含4—羟基—6—甲基嘧啶环或4—氯—6—甲基嘧啶环的噻吩磺酰脲能有效抑制植物根系的生长,而含取代氨基的噻吩磺酰脲的生物活性较差。为进一步研究不同取代基对此类化合物生物活性的影响,本文合成了13种  相似文献   

11.
Zinc enolates derived from 2,2-dibromoindan-1-one and 2,2-dibromo-1,2,3,4-tetrahydronaphthalen-1-one reacted with 2-arylmethylidenemalononitriles, alkyl 3-aryl-2-cyanoprop-2-enoates, and N-substituted 3-aryl-2-cyanoprop-2-enamides to give, respectively, 3-aryl-1′-oxo-1′,3′-dihydrospiro[cyclopropane-1,2′-indene]-2-2-dicarbonitriles, 3-aryl-1′-oxo-3′,4′-dihydro-1′H-spiro[cyclopropane-1,2′-naphthalene]-2,2-dicarbonitriles, alkyl 3-aryl-2-cyano-1′-oxo-1′,3′-dihydrospiro[cyclopropane-1,2′-indene]-2-carboxylates, alkyl 3-aryl-2-cyano-1′-oxo-3′,4′-dihydro-1′H-spiro[cyclopropane-1,2′-naphthalene]-2-carboxylates, and N-substituted 3-aryl-2-cyanol-1′-oxo-3′,4′-dihydro-1′H-spiro[cyclopropane-1,2′-naphthalene]-2-carboxamides as a single diastereoisomer. The stereoconfiguration of the products was determined by 1H and 13C NMR spectroscopy.  相似文献   

12.
A concise process of 1,3-diacetoxy-2-[2′-(2″,4″-difluorophenyl)prop-2′-en-1′-yl]propane has been developed. Diethyl malonate was C-alkylated with 2,3-dichloropropene and then the ester groups were reduced by LiAlH4, followed by acylation to provide 2-(2′-chloroprop-2′-en-1′-yl)-1,3-diacetoxypropane. The chloropropene was finally coupled with 2,4-difluorophenylmagnesium bromide and catalyzed by Fe(acac)3 to afford the title compound in good total yield.  相似文献   

13.
Triadenylates with (2′-5′)(2′-5′) and mixed (2′-5′)(3′-5′) and (3′-5′)(2′-5′) linkages respectively were synthesized via the phosphotriester approach followed by deblocking of the fully protected intermediates. The isomeric trimers were characterized by NMR- and CD-spectra and show very similar hypochromicity effects.  相似文献   

14.
Some new azo sulfa drugs 3-cyano-4,6-diphenyl-1-[4-(N-substituted)sulfamyl]phenylazo-2-pyridinone dyes (1-6) and 3-cyano-4,6-diphenyl-1-[4-(N-substituted)sulfamyl]phenylazo-2-pyridinethione dyes (1′-6′) were synthesized by coupling of 4-(N-substituted)sulfamylbenzene diazonium salts with 3-cyano-4,6-diphenyl-2-pyridinone and/or with 3-cyano-4,6-diphenyl-2-pyridin-ethione. The corresponding iron (1a-6a, 1′a-6′a), copper (1b-6b, 1′b-6′b) and mercury (1c-6c, 1′c-6′c) chelates wvere also prepared. All synthesized compounds were screened in vitro for antibacterial and antifungal activities.  相似文献   

15.
A series of 2, 2′-bithienyl derivatives were synthesized starting from the coupling of 2, 2′-bithienyl and 2-(2-iodoethyl)-1, 3-dioxolane.  相似文献   

16.
A reaction of 2-aminobenzenesulfonamide ( 1 ) with 2-chloroethyl or 3-chloropropyl isothiocyanate in isopropanol afforded 2-(2′-chloroethylthioureido)- and 2-(3′-chloropropylthioureido)benzenesulfonamides ( 2a,b ) in 67% and 55% yield respectively. Treatment of 2a,b with triethylamine in methanol at room temperature furnished 3-(2′-aminoethylthio)- and 3-(3′-aminopropylthio)-2H-1,2,4-benzothiadiazine 1,1-dioxides ( 9a,b ) in quantitative yield. Heating 2b to reflux in methanol under neutral conditions gave 9b but in the form of the hydrochloride 8b which could be converted into the free base 9b by treating with ammonia water. When compounds 2a,b were treated with triethylamine in methanol at elevated temperature, 3-(2′-mercaptoethylamino)- and 3-(3′-mercaptopropylamino)-2H-1,2,4-benzothiadiazine 1,1-dioxides ( 10a,b ) were obtained in good yield. Alternatively, 10a,b could also be prepared from 9a,b in 95% and 77% yield respectively.  相似文献   

17.
Oligoadenylates with 2′–5′ linkage were prepared in aqueous solution catalyzed by lead nitrate. Phosphorylation of the resulting triadenylate gave oligonucleotide inhibitor of protein synthesis, ppA2′p5′A2′p5′A.  相似文献   

18.
Synthesis of binuclear Cu(II) terminally closed [ 2+2 ]- double-stranded helicate-like macrocycles 1, 1′ , 1″ , 2 , 2′ , 2″ and 2+4- μ4-oxo tetranuclear open frame complexes 3 , 3′ , 3″ , 4 , 4′ , 4″ are established. Adapting one-pot self-assembly technique from simple three components systems: 1,1′-binaphthyl-2,2′-diamine, 4-methyl-2,6-diformyl phenol and cupric salts, the helicate-like [ 2+2 ]- macrocyclic complexes 1–1″, 2–2″ and 2+4- μ4-oxo tetranuclear complexes 3–3″ , 4–4″ were obtained by appropriately altering the reaction condition such as temperature and subcomponent ratio. Density Functional Theory (DFT) calculations were carried out for understanding the structural geometries, intermediates involved in the diverse formation of [ 2+2 ] and 2+4 frameworks. The single crystal X-ray structures obtained for 1′ , 2 and 3 confirms the self-assembly process in line with DFT. This detailed analysis tempted us to derive a plausible mechanism for this long standing challenge in the synthesis of such macrocycles using 1,1′-binaphthyl-2,2′-diamine (BNDA) and aromatic aldehyde. The chiroptical properties of enantiopure complexes and their catalytic applications in asymmetric oxidative coupling of 2-naphthol to chiral 1,1’-Bi-2-naphthol (BINOL) achieved in good yield and ee were discussed.  相似文献   

19.
Semiempirical calculations have been carried out on the interactions of [R2Sn(H2O)2]2+, [R = H(CH2)n: n = 1–8], mainly with five nucleotides, 5′‐adenosine monophosphate (5′‐AMP), but also with guanosine 5′‐monophosphate (5′‐GMP), cytidine 5′‐monophosphate (5′‐CMP), uridine‐5′‐monophosphate (5′‐UMP) and inosine 5′‐monophosphate (5′‐IMP). The preferred sites of interaction were calculated to be the ribose O2 and O3 hydroxyl oxygens and/or the phosphate oxygens, with the nitrogen sites in the bases the least attractive to the tin compounds. This is in general agreement with experimental findings. Structures of the 1:1 coordination complexes vary from distorted tetrahedral, to distorted trigonal pyramidal to distorted octahedral geometries. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

20.
Reactions of the substituted 2‐formyl chromones with aroylhydrazines gave corresponding 2‐(aroylhydrazonomethylidyne) chromones. Then 2‐(3′‐acetyl‐5′‐aryl‐2′,3′‐dihydro‐1′,3′,4′‐oxadiazol‐2′‐yl) chromones were prepared by these 2‐(aroylhydrazonomethylidyne) chromones under refluxing with Ac2O. All target compounds were characterized through elemental analysis and IR, 1H NMR, MS.  相似文献   

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