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1)  poly(3-octylthiophene)
聚3-辛基噻吩
1.
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
2.
Some research work is conducted on poly(3-octylthiophene)(P3OT) and poly(3-thiophene)/carbon nanotube composites.
本文主要对聚3-辛基噻吩(P3OT)及与碳纳米管(MWNTs)复合材料的制备结构及导电性能进行研究,主要包括以下三个方面:1。
3.
Multi-walled carbon nanotubes (MWNT) were used as filler to prepare poly(3-octylthiophene) (P3OT)/MWNT composites in chloroform, which were ultrasound blended.
采用在氯仿溶液中超声共混,制备聚3-辛基噻吩(P3OT)和多壁碳纳米管(MWNTs)复合材料。
2)  Poly(3-octylthiophene-2,5-diyl)
3-辛基取代聚噻吩
3)  poly 3-octylthien-2,5-ylenediethynylene-co-benzo c-1,2,5-thiadiazo-3,6-ylenedi(2,5-thieny-lene)
聚4,7-二(2-噻吩基)苯并噻二唑-3-辛基噻吩二炔
4)  3-octoxythiophene
3-辛氧基噻吩
5)  poly[3-octylthiophen-2,5-diylethynylene-(benzothiadiazole-4,7-diyl)ethynylene]
聚苯并噻二唑3-辛基噻吩二炔
6)  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。
补充资料:聚[3,3-双(氟甲基)氧杂环丁烷]
分子式:
CAS号:

性质: 以氟原子取代氯的卤化聚醚树脂类似物。同氯化聚醚一样,经拉伸和极化处理的该类树脂也表现出压电和热电性质。由于分子中碳氟键的极性比碳氯键大,预期在热电性质方面具有优越性质,而且氟取代物的碳氟键能高,其化学稳定性要好于氯取代类似物。聚[3,3-双(氟甲基)氧杂环丁烷]的合成与聚[3,3-双(氯甲基)氧杂环丁烷]的制备类似,首先合成3,3-双(氟甲基)氧杂环丁烷,然后利用开环聚合反应得到该聚合物。

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