1、

It was proved that the PANI powder electrode had good electrochemical properties and could provide initial current and steady current by potentiodynamic polarization and potentiostat polarization.

通过动电位极化和恒电位极化实验证实了该电极具有良好的电化学性能,能提供较大的初始电流和稳态电流。

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2、

Influence of PVP on Structure and Conductibility of In-Situ Deposition PANI/ PI

PVP对原位沉积PANI/PI结构和导电性的影响

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3、

However, its applications have been greatly limited due to the high rigidity in the molecular chain backbone of PANI and the great interaction among molecular chains, which cause poor dissolubility and dispersibility.

但由于PANI分子链骨架的刚性强,分子间相互作用力大,导致其溶解分散性较差,对其实际应用造成了极大限制。

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4、

Through measuring the growth processes of tube-based fanlike PANI and discussing the oxidation polymerization of aniline, we give the possible interpretations to the formation of PANI rectangular tubes and their fanlike assembly, respectively.

通过管基扇状结构生长过程的测量以及苯胺氧化聚合过程的讨论,推测了矩形管的形成及其扇形组装的机理。

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5、

The water-dispersible clay-polyaniline ( Clay-PANI) composites was first prepared, it was introduced into the gel, and new PNIPA/ PANI/ Clay nanocomposite gels were prepared.

首次制备了水分散性粘土-聚苯胺(Clay-PANI)复合材料,将其引入凝胶中,制备了新型PNIPA/PANI/Clay纳米复合凝胶。

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6、

The results show that the size of PANI nanoparticles became bigger with increase the size of water pool, and ellipsoidal PANI could be formed from the small round nanoparticles by self-assembly at a high concentration.

结果表明,聚苯胺纳米粒子的尺寸随着反胶束水池的增大而增大,并能在较高单体浓度下进行自组装,聚苯胺纳米粒子从球形组装为米粒状;

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7、

Influences of electrolytic parameters ( the ratio of ton to toff, frequency, mean current density and temperature of electrolyte) on synthesis of nano-fibrous PANI were studied in detail. The process conditions were optimized.

详细探讨了电解工艺参数(脉冲占空比、频率、平均电流密度以及溶液温度)等对纳米纤维聚苯胺膜合成的影响,获得了制取纳米纤维聚苯胺的最佳工艺条件。

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8、

the pani/ c electrode is attempted to apply as negative electrode, the electrochemical potential window can be expand from 0.6? v to 1? v.

将PANI C电极作为负极使用,可将电化学窗口由0.6V扩展至1V。

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9、
10、

The conductivity of ZnO-PANI was measured by four probe electrical conductivity instrument and equal to 2.326 s · m-1, which was one order higher than that of RE-doped ZnO.

通过四探针电导率仪测试,ZnO-PANI为2.326s·m-1,比掺杂稀土时高一个数量级。

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11、

The forming mechanism of hollow CU2O/ PANI composite is proposed and proved by experiments.

提出了空心Cu2O-PANI复合物形成的机理,并进行了实验验证。

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12、

Polyaniline ( PANI) is one of the most investigated conducting polymers ( CP). It has been frequently studied due to its low cost, ease in preparation, good environmental stabilities, and high conductivity.

聚苯胺(PANI)因其单体价格便宜、制备条件简单以及较高的电导率和良好的环境稳定性,而成为倍受青睐的导电高分子材料。

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13、

The 0-3 piezoelectric composites were fabricated with the polyurethane ( PU) doped with polyaniline ( PANI) by in situ polymerization as matrix and lead zirconate titanate ( PZT) as function phase. The polarization and electrical properties of the composites were studied.

以聚苯胺(PANI)原位聚合改性聚氨酯(PU)树脂为基体,锆钛酸铅(PZT)陶瓷为功能相,制备了0-3型压电复合材料,研究了复合材料极化和电性能。

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14、

scanning electron microscopy ( sem) and transmitting electron microscopy ( tem) examinations showed that smooth pani layer with thickness of 10~ 60nm was formed with lower ani content in reactants;

扫描电子显微镜(SEM)和透射电子显微镜(TEM)观察表明,ANI用量较小时,在二氧化硅粒子表面形成均匀的PANI层,其厚度在10~60nm之间;

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15、

compared with the pure pva/ ps tfc membrane, the pani-pva/ ps tfc membrane had better hydrophilic property and higher flux.

该复合膜与纯PVA/PS复合膜相比具有较高的亲水性能和通量。

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16、

the results of conductivity testing show that the percolation thresholds of pani in abs resin is about 0.5 percent.

电导率测试分析得出PANI在ABS中的逾渗阈值约为0.5%。

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17、

Polyaniline ( PANI ) is one of the most intensively researched conductive polymer materials.

聚苯胺 ( PANI ) 是研究最为广泛的导电高分子材料之一.

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18、

The results show that re-dope PANI has good conductivity, solubility and better thermal stability than literature.

结果表明:溶液法再掺杂聚苯胺有良好的电导率 、 溶解性及热稳定性.

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19、

The film of polyaniline ( PANI ) doped with phthalocyanine copper acid was successfully prepared.

成功制备了酞菁铜羧酸掺杂聚苯胺 ( PANI ) 薄膜.

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20、

However, the PANI-TCNQ complex thin films are polycrystalline and more conductive than that of PANI film.

而PANI-TCNQ 薄膜确是多晶薄膜,且薄膜的电导率较PANI薄膜提高几个数量级.

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