3-甲基噻吩,3-methylthiophene
1)3-methylthiophene3-甲基噻吩
1.Theoretical Study of the Photoisomerization of 2-Methylthiophene to 3-Methylthiophene;2-甲基噻吩光异构化成3-甲基噻吩的理论研究
2.High-Quality Conducting Polymers Prepared from 3-Methylthiophene and Pyrrole, Indole, Carzole by Electrochemical Copolymerization;3-甲基噻吩与吡咯、吲哚、咔唑电化学共聚制备高性能导电高分子
3.Nano-TiO_2 electrode was prepared by sol-gel method,and then applied the electrode to the elec- tropolymerization of 3-methylthiophene.采用溶胶凝胶法制成了纳米TiO_2电极,在离子液体中将其应用于3-甲基噻吩的电化学聚合。
英文短句/例句

1.Thermodynamic Analysis for Alkylation of 3-Methylthiophene with Isobutene3-甲基噻吩与异丁烯烷基化反应的热力学分析
2.High-Quality Conducting Polymers Prepared from 3-Methylthiophene and Pyrrole, Indole, Carzole by Electrochemical Copolymerization;3-甲基噻吩与吡咯、吲哚、咔唑电化学共聚制备高性能导电高分子
3.Preparation of a poly(3-methylthiophene) modified electrode and its application to the study on the electrochemical bihavior and determination of dopamine聚(3-甲基噻吩)修饰电极的制备及其用于多巴胺的电化学行为及测定研究
4.Studies on the Synthesis of 3-Hydroxy-2-Thiophene Cirboxylic Acid Methyl Ester;3-羟基-2-噻吩甲酸甲酯的合成
5.The results show that the sequence of sulfur-containing compounds cracking from difficulty to ease is thiophene, 2-methylthiophene, 2,5-dimethylthiophene.结果表明,噻吩类硫化物的裂化难易顺序为噻吩甲基噻吩甲基噻吩。
6.thenyldiamine hydrochloride噻吩甲基二氨基盐酸盐
7.Structure and conductive properties of polythiophenes and poly(3-octylthiophene)聚噻吩及聚3-辛基噻吩结构与导电性能研究
8.Synthesis and aroma characteristic of 3-Benzylthiothiophene,3-Furfurylthiothiophene and 3-Dodecylthiothiophene3-苄硫基噻吩、3-糠硫基噻吩和3-十二烷硫基噻吩的合成及其香气特征
9.Study on the Synthesis and Flavor Characteristic of 3-Alkoxythiophene and 3-Thienyl Sulfide;3-烷氧基噻吩和3-噻吩硫化物的合成及其香味特征研究
10.Study on Synthesis,Characterization and Fluorescence Property of Ethyl 5-acetyl-2-amino-4-methylthiophene-3-carboxylate5-乙酰基-2-氨基-4-甲基噻吩-3-甲酸乙酯的合成、表征及荧光性能研究
11.Photopolymerization of Methyl Methacrylate Sensitized by N-Acrylyl-phenothiazine;N-丙烯酰吩噻嗪敏化的甲基丙烯酸甲酯光聚合
12.Research on the Synthesis and Optical Properties of Poly(3-phenylthiophene);聚3-苯基噻吩的合成及其光学性能研究
13.Synthesis and Electrochemical Characteristics of 3-Alkylthiophene Copolymers3-烷基噻吩交替共聚物的合成及其电化学性质
14.Conductive Properties of Poly(3-octylthiophene)/Multi-walled Carbon Nanotubes Composites聚3-辛基噻吩/MWNTs复合材料的导电性能研究
15.The Oxidation Removal of Benzothiophene and Dimethyl Disulfide苯并噻吩和二甲基二硫醚氧化脱除的研究
16.Objective To synthesize 2-(4-methoxypheny)-6-methoxy-benzo [b]thiophene.目的合成目的产物2-(4-甲氧基苯基)-6-甲氧基苯并噻吩。
17.Photopolymerization of methyl methacrylate sensitized by N acrylyl phenothiazine sulf dioxide;N—丙烯酰吩噻嗪二氧化物敏化的甲基丙烯酸甲酯的光聚合
18.Synthesis,Crystal-structure and Thermal Properties of (5-Fluoro-2,4-dioxo-3,4-dihydropyrimidin-1(2H)-yl) Methyl Thiophene-2-carboxylate2-噻吩甲酸(5-氟尿嘧啶-1-基)甲酯的合成、晶体结构和热性质
相关短句/例句

Poly(3-methylthiophene)聚3-甲基噻吩
1.The Q-CdS, Q-PbS quantum dot were formed in situ on the nanocrystalline TiO2 electrode using chemical bath deposition techniques and the poly(3-methylthiophene) (PMeT) was prepared with electro- chemical method on TiO2/Q-CdS (Q-PbS) film.用光电化学方法研究了PMeT修饰Q-CdS,Q-PbS连接TiO2纳米结构膜,实验结果表明,PMeT和Q-CdS,Q-PbS单独修饰纳米结构TiO2电极和PMeT修饰Q-CdS,Q-PbS连接纳米结构TiO2电极的光电流产生的起始波长都向长波方向移动;一定条件下在可见光区光电转换效率均较纳米结构TiO2的光电转换效率有明显的提高;聚3-甲基噻吩(PMeT)与Q-CdS,Q-PbS连接的纳米结构TiO2之间存在p-n异质结。
2.The experimental results showed that photocurrent produced by the poly(3-methylthiophene) (PMeT) modified titanate nanotubes and the poly(3-hexylthiophene) (P3HT) modi- fied titanate nanotubes was higher than that of the pure titanate nanotubes.结果表明,聚3-甲基噻吩[poly(3-methylthiophene),PMeT]、聚3-己基噻吩[poly(3-hexylthiophene),P3HT]修饰钛酸盐纳米管后产生的光电流均较纯钛酸盐纳米管的光电流高,且使产生光电流的波长向长波区移动。
3.The photoeleetrochemieal properties of the pure CdSe nanorods and CdSe nanorods modified with poly(3-Methylthiophene)(PMeT) and poly(3-Chlorothiophene)(P3CT)respectively were investigated.本论文采用水热法制备了CdSe纳米棒,并对CdSe纳米棒进行了一系列表征,主要利用光电流作用谱、循环伏安、瞬态光电流等光电化学方法对CdSe纳米棒及不同晶型CdSe纳米棒、聚3-甲基噻吩和3-氯噻吩分别修饰CdSe纳米棒的光电化学性质进行了研究。
3)3-methoxythiophene3-甲氧基噻吩
1.Improved Synthesis of 3-methoxythiophene and Determination by GC;3-甲氧基噻吩合成方法的改进及气相分析
4)poly-3-methyl-thiophene聚-3-甲基-噻吩
1.Study of polythiophene,poly-3-methyl-thiophene and poly(3,4-ethylendioxythiophene) as supercapacitor electrode materials;聚噻吩(PT)、聚-3-甲基-噻吩(PMT)和聚-3,4-亚乙二氧基-噻吩(PEDT)作为超电容器电极材料的研究
5)3 carboxymethylthiophene3-羧甲基噻吩
6)poly (3-methylthiophene)聚(3-甲基噻吩)
延伸阅读

3-甲基噻吩国标编号 32112 CAS号 616-44-1 分子式 C5H6S;CHCHC(CH3)CHS分子量 98.17无色油状液体;蒸汽压 1.33kPa/9.1℃;闪点11℃;熔点-69℃ ;沸点115.4℃;溶解性:不溶于水,可混溶于乙醇、乙醚、苯、丙酮、氯仿;密度:相对密度(水=1)1.02;稳定性:稳定;危险标记 7(易燃液体);主要用途:用于有机合成 2.对环境的影响:一、健康危害侵入途径:吸入、食入、经皮吸收。健康危害:本品具有刺激性。接触后能引起头痛、恶心、呕吐。二、毒理学资料及环境行为急性毒性:LD50800mg/kg(小鼠经口);LC5018000mg/m32小时(小鼠吸入)危险特性:遇明火、高热或与氧化剂接触,有引起爆炸的危险。其蒸气比空气重,能在较低处扩散到相当远的地方,遇火源引着回燃。若遇高热,容器内压增大,有开裂和爆炸的危险。燃烧(分解)产物:一氧化碳、二氧化碳、硫化氢、氧化硫。3.现场应急监测方法: 4.实验室监测方法:气相色谱法,参照《分析化学手册》(第四分册,色谱分析),化学工业出版社5.环境标准: 6.应急处理处置方法:一、泄漏应急处理疏散泄漏污染区人员至安全区,禁止无关人员进入污染区,切断火源。建议应急处理人员戴自给式呼吸器,穿一般消防防护服。在确保安全情况下堵漏。喷水雾会减少蒸发,但不能降低泄漏物在受限制空间内的易燃性。用活性炭或其它惰性材料吸收,然后使用无火花工具收集运至废物处理场所处置。也可以用不燃性分散剂制成的乳液刷洗,经稀释的洗水放入废水系统。如大量泄漏,利用围堤收容,然后收集、转移、回收或无害处理后废弃。二、防护措施呼吸系统防护:高浓度环境中,应该佩带防毒口罩。紧急事态抢救或逃生时,建议佩带自给式呼吸器。眼睛防护:戴化学安全防护眼镜。身体防护:穿相应的工作服。手防护:戴防化学手套。其它:工作现场严禁吸烟。工作后,淋浴更衣。注意个人清洁卫生。三、急救措施皮肤接触:脱去污染的衣着,立即用流动清水彻底冲洗。眼睛接触:立即提起眼睑,用大量流动清水彻底冲洗。吸入:脱离现场至空气新鲜处。呼吸困难时给输氧。呼吸停止时,立即进行人工呼吸。就医。食入:误服者给饮大量温水,催吐。就医。灭火方法:泡沫、干粉、二氧化碳、砂土。