首页> 外文会议>Fourth International Workshop on Materials Processing at High Gravity, May 29-Jun 2, 2000, Potsdam, New York >INFLUENCE OF CENTRIFUGATION ON THE CONDUCTIVITY OF POLY-N-EPOXYPROPYLCARBAZOLE - COPPER PHTHALOCYANINE FILMS DEPOSITED FROM SOLUTION
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INFLUENCE OF CENTRIFUGATION ON THE CONDUCTIVITY OF POLY-N-EPOXYPROPYLCARBAZOLE - COPPER PHTHALOCYANINE FILMS DEPOSITED FROM SOLUTION

机译:离心力对溶液中沉积的聚-N-环氧丙基咔唑-铜酞菁膜电导率的影响

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We investigated the electrical conductivity of films composed of two photosensitive organic semiconductors, poly-N-epoxipropylcarbazole (PEPC) and copper phthalocyanine (CuPc, C_(32)H_(16)N_8Cu), which had been deposited from solution at different gravity conditions from 1_g to 1107_g. Visually, the films grown with centrifugation were more homogeneous. The X-ray analysis of the deposited films indicated a small shift of the characteristic peak for copper phthalocyanine (at 2θ = 7.10°) as acceleration was increased. The electrical conductivity at 1000 Hz was measured in the range from 300 K to 410 K using a sandwich-type cell. There was a 1.5-fold increase in the conductivity and 2-fold decrease of activation energy with increased acceleration. Scanning electron microscopy (SEM) showed more uniform films at higher accelerations and with larger size of agglomerates. Analysis of the conductivity measurements indicated the presence of a compensative effect that manifested itself as a linear increase of activation energy with the logarithm of the pre-exponential factor.
机译:我们研究了由两种光敏有机半导体组成的薄膜的电导率,它们是从溶液在不同的重力条件下沉积的,该薄膜由聚N-环氧丙烷丙基咔唑(PEPC)和酞菁铜(CuPc,C_(32)H_(16)N_8Cu)组成1_g至1107_g。在视觉上,通过离心生长的膜更加均匀。沉积膜的X射线分析表明,随着加速度的增加,铜酞菁的特征峰有很小的偏移(在2θ= 7.10°时)。使用夹心型电池在300 K至410 K的范围内测量1000 Hz时的电导率。随着加速度的增加,电导率增加了1.5倍,活化能降低了2倍。扫描电子显微镜(SEM)显示,在较高的加速度下,附聚物尺寸较大,薄膜更均匀。对电导率测量值的分析表明存在补偿效应,该补偿效应表现为活化能随指数前因子的对数线性增加。

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