This article has analyzed conducting polymer from the viewpoint of material properties, which is polymerized under atmospheric pressure condition for coupling and remote conditions, respectively. The experimental results show that the atmospheric pressure plasma polymerized pyrrole (pPPy) exhibits similar characteristics from the viewpoint of crystallinity, but the shapes and roughness of the particles are significantly distinguished. In the case of coupling condition, a uniform and flat layer like a thin film was obtained. However, in the case of remote condition, the deposited layer had more rough nanoparticles compared to that of coupling condition. The pPPy surface characteristic and morphology changes are discussed by using field emission scanning electron microscopy (FE-SEM), atomic force microscopy (AFM), and X-ray diffraction (XRD) results. Fourier transform infrared spectroscopy (FT-IR) and X-ray photoelectron spectroscopy (XPS) analysis are used to determine the chemical changes introduced by the atmospheric pressure plasma for coupling and remote conditions. The both pPPy materials, which were obtained by coupling and remote conditions, are expected to be applied to various fields, especially for designing the thin conducting electrode layer of polymer light emitting diode (P-LED) or for improving the efficiency by inserting conducting polymer powder on hole injection layer.
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Beijing Inst Technol, Sch Phys, Beijing 100081, Peoples R ChinaCapital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R China
Yang, Bingyan
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Ouyang, Jiting
Zhang, Chenyang
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Beijing Inst Technol, Sch Phys, Beijing 100081, Peoples R ChinaCapital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R China
Zhang, Chenyang
Lai, Yu
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Shijiazhuang Hosp Tradit Chinese Med, 233 Zhongshan Rd, Shijiazhuang 050051, Hebei, Peoples R ChinaCapital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R China
Lai, Yu
Shi, Zhongfang
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Capital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R ChinaCapital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R China
Shi, Zhongfang
Han, Ruoyu
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Beijing Inst Technol, Sch Phys, Beijing 100081, Peoples R ChinaCapital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R China
Han, Ruoyu
Zhang, Wei
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Capital Med Univ, Beijing Tiantan Hosp, Dept Neurosurg, Beijing 100050, Peoples R ChinaCapital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R China
Zhang, Wei
Yuan, Fang
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Capital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R ChinaCapital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R China
Yuan, Fang
Ostrikov, Kostya
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Queensland Univ Technol, Sch Chem & Phys, Brisbane, Qld 4000, Australia
Queensland Univ Technol, Ctr Biomed Technol, Brisbane, Qld 4000, AustraliaCapital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Dept Pathophysiol, Beijing 100050, Peoples R China