研究目的
Investigating the effect of heating and stirring in a facile wet chemical route to synthesize entangled nano-fibrous mesh of doped polyaniline (PANI) and its structural, morphological, and optical properties.
研究成果
The study successfully synthesized nano-fibrous entangled mesh of doped PANI using a facile oxidative polymerization technique. The synthesis conditions, particularly temperature and stirring, significantly affect the structural, morphological, and optical properties of PANI. The PANI mesh synthesized at 60 ℃ without stirring exhibited the highest electrical conductivity, making it suitable for various electronic applications.
研究不足
The study focuses on the synthesis and characterization of PANI nano-fibers under specific conditions. The scalability of the synthesis method and the application of the synthesized PANI in practical devices are areas for further investigation.
1:Experimental Design and Method Selection:
The study employed a facile wet chemical oxidative polymerization route to synthesize PANI nano-fibers. The effect of synthesis temperature and stirring on the properties of PANI was investigated.
2:Sample Selection and Data Sources:
PANI samples were prepared by altering synthesis parameters like stirring and polymerization temperature. Five distinct PANI samples were prepared under different conditions.
3:List of Experimental Equipment and Materials:
Aniline Hydrochloride, Ammonium Persulfate, Hydrochloric Acid were used. Equipment included X-ray diffractometer (Bruker, model D8-Advanced), Scanning Electron Microscope (JOEL, FE-SEM 7000), FTIR spectrophotometer (PerkinElmer, Spectrum BX), UV-Vis spectrophotometer (Shimadzu 1650PC).
4:Experimental Procedures and Operational Workflow:
PANI nano-fibers were synthesized by oxidative polymerization. The samples were characterized using XRD, SEM, TGA, FTIR, and UV-Vis spectroscopy. Electrical conductivity was measured using the four probe technique.
5:Data Analysis Methods:
The crystallite size was estimated using the Debye Scherrer formula. The structural, morphological, and optical properties were analyzed based on the characterization results.
独家科研数据包,助您复现前沿成果,加速创新突破
获取完整内容