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首页> 外文期刊>CrystEngComm >Green synthesis and characterization of crystalline zinc phthalocyanine and cobalt phthalocyanine prisms by a simple solvothermal route
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Green synthesis and characterization of crystalline zinc phthalocyanine and cobalt phthalocyanine prisms by a simple solvothermal route

机译:一种简单的溶剂热途径结晶锌酞菁和钴酞菁棱镜的绿色合成与表征

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摘要

A facile, environmentally-friendly and low-cost method for one-step synthesis of zinc phthalocyanine (ZnPc) and cobalt phthalocyanine (CoPc) prism-shaped crystals was proposed. The well-defined crystalline prisms (ZnPc, up to 8 mm and CoPc, more than 1 mm) can be grown during a solvothermal process at 160 degrees C for 6 h. It is noted that ethanol (pentanol or benzyl alcohol) was used as the reaction medium and no surfactants or other chemical additives were used in this preparation. To the best of our knowledge, this is the first report on the green and direct synthesis from simple raw materials to large ZnPc and CoPc crystals with high quality. Compared to the traditional preparation of MPc solids and their re-crystallization purification by using H2SO4, our method is very convenient, safe and time-efficient. The complete characterization, including scanning electron microscopy (SEM), transmission electron microscopy (TEM), atomic force microscopy (AFM), single crystal X-ray diffraction, powder X-ray diffraction, and Fourier transform infrared (FT-IR) and Raman spectrometry, was performed to measure the molecular structures, crystal structures, and surface morphologies. The highly predominant crystal face of ZnPc crystals was determined to be (100) and the probable crystal growth mechanism was proposed. Moreover, the thermal and photoelectric measurements of ZnPc and CoPc crystals show their excellent thermal stability and photoelectric transformation performance, respectively.
机译:提出了一种适用于一步合成锌酞菁(ZnPC)和钴酞菁(COPC)棱镜形晶体的一步,环保和低成本的方法。在160℃的溶剂热过程中,在160℃下,可以生长明确定义的结晶棱镜(ZnPC,高达8mm和COPC,超过1mm)。应注意,使用乙醇(戊醇或苄醇)作为反应介质,并且在该制剂中没有使用表面活性剂或其他化学添加剂。据我们所知,这是一份关于绿色和直接合成从简单的原材料到大型ZnPC和高品质的COPC晶体的报告。与使用H2SO4的MPC固体的传统制剂和它们的再结晶纯化相比,我们的方法非常方便,安全,节约效率。完整表征,包括扫描电子显微镜(SEM),透射电子显微镜(TEM),原子力显微镜(AFM),单晶X射线衍射,粉末X射线衍射和傅立叶变换红外(FT-IR)和拉曼进行光谱法,进行测量分子结构,晶体结构和表面形态。确定ZnPC晶体的高度主要晶体面积为(100),提出了可能的晶体生长机制。此外,ZnPC和COPC晶体的热和光电测量分别显示出优异的热稳定性和光电变换性能。

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  • 来源
    《CrystEngComm》 |2018年第19期|共10页
  • 作者单位

    Xuchang Univ Sch Chem &

    Chem Engn Key Lab Micronano Mat Energy Storage &

    Convers He Xuchang 461000 Henan Peoples R China;

    Xuchang Univ Inst Surface Micro &

    Nano Mat Key Lab Micronano Mat Energy Storage &

    Convers He Henan Joint Int Res Lab Nanomat Energy &

    Catalysi Xuchang 461000 Henan Peoples R China;

    Xuchang Univ Sch Chem &

    Chem Engn Key Lab Micronano Mat Energy Storage &

    Convers He Xuchang 461000 Henan Peoples R China;

    Univ Edinburgh Sch Chem Edinburgh EH9 3FJ Midlothian Scotland;

    Xuchang Univ Inst Surface Micro &

    Nano Mat Key Lab Micronano Mat Energy Storage &

    Convers He Henan Joint Int Res Lab Nanomat Energy &

    Catalysi Xuchang 461000 Henan Peoples R China;

    Xuchang Univ Inst Surface Micro &

    Nano Mat Key Lab Micronano Mat Energy Storage &

    Convers He Henan Joint Int Res Lab Nanomat Energy &

    Catalysi Xuchang 461000 Henan Peoples R China;

    Xuchang Univ Inst Surface Micro &

    Nano Mat Key Lab Micronano Mat Energy Storage &

    Convers He Henan Joint Int Res Lab Nanomat Energy &

    Catalysi Xuchang 461000 Henan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;晶体学;
  • 关键词

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