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Synthesis and characterization of new octasubstituted phthalocyanines: Supramolecular materials for thin film electronic, optical and chemical sensor applications

机译:新型八取代酞菁的合成与表征:用于薄膜电子,光学和化学传感器应用的超分子材料

摘要

The synthesis, structure, and properties of a number of new octasubstituted phthalocyanines, were investigated in this work. Substituent functionality and design has a profound influence on the film forming, and hence, chemical/physical properties of these model molecular electronic materials. Highly ordered thin films, of the benzyl terminated Pc, (2,3,9,10,16,17,23,24-octa(2-benzyloxyethoxy) phthalocyaninato) copper, CuPc(OC₂OBz)₈ and its di-hydrogen analogue were prepared and characterized. These materials form ordered Langmuir films composed of close packed columnar assemblies. Full compression of these materials produces thin films of stable bilayers that show remarkable mechanical stability, and can be transferred with high efficiency to substrates using a horizontal transfer protocol. The physical, spectroscopic, spectroelectrochemical, electrochemical, and electronic properties of these materials were characterized. These properties are strongly dependent on film morphology and structure. The conductivity of these materials relative to the Pc column axis, is highly anisotropic, and with electrochemical doping, the conductivity along the column axis is ca. 10⁻⁶ S/cm. 2,3,9,10,16,17,23,24-Octa(2-benzyloxytriethoxy) phthalocyaninato) copper, and di-hydrogen materials were prepared and characterized. These Pc derivatives did not exhibit the extraordinary properties of their shorter chained analogues. Film preparation efforts with these materials produced poorly ordered isotropic films. Chain length and benzyl termination are combined, in CuPc(OC₂OBz)₈, to produce a unique self assembling material with properties comparable to that reported previously for rigid-rod polymeric Pc materials.
机译:在这项工作中,研究了许多新型八取代酞菁的合成,结构和性能。取代基的功能和设计对成膜具有深远的影响,因此,对这些模型分子电子材料的化学/物理性质也有很大影响。由苄基封端的Pc,(2,3,9,10,16,17,23,24-八(2-苄氧基乙氧基)酞菁铜),CuPc(OC 2 OBz)3及其二氢类似物组成的高度有序的薄膜是准备和表征。这些材料形成由密堆积的柱状组件组成的有序Langmuir薄膜。这些材料的完全压缩会产生稳定的双层薄膜,该薄膜显示出显着的机械稳定性,并且可以使用水平转移方案将其高效转移到基材上。表征了这些材料的物理,光谱,光谱电化学,电化学和电子性质。这些性质在很大程度上取决于膜的形态和结构。这些材料相对于Pc柱轴的电导率是高度各向异性的,并且通过电化学掺杂,沿柱轴的电导率为ca。 10⁻⁶S / cm。制备并表征了2,3,9,10,16,17,23,24-八(2-苄氧基三乙氧基)酞菁铜)和二氢材料。这些Pc衍生物没有表现出其短链类似物的非凡性能。用这些材料进行膜制备的努力产生了有序的各向同性膜。在CuPc(OC 2 OBz)3中结合链长和苄基封端,可生产出一种独特的自组装材料,其性能可与先前报道的刚性棒状聚合物Pc材料相媲美。

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    Smolenyak Paul Eric 1959-;

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  • 年度 1998
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