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用于电子学和自旋电子学的聚合物。

Polymers for electronics and spintronics.

机构信息

Faculty of Chemistry, Warsaw University of Technology, Noakowskiego 3, 00-664 Warsaw, Poland.

出版信息

Chem Soc Rev. 2013 Dec 7;42(23):8895-999. doi: 10.1039/c3cs60257e. Epub 2013 Sep 13.

Abstract

This critical review is devoted to semiconducting and high spin polymers which are of great scientific interest in view of further development of the organic electronics and the emerging organic spintronic fields. Diversified synthetic strategies are discussed in detail leading to high molecular mass compounds showing appropriate redox (ionization potential (IP), electron affinity (EA)), electronic (charge carrier mobility, conductivity), optoelectronic (electroluminescence, photoconductivity) and magnetic (magnetization, ferromagnetic spin interactions) properties and used as active components of devices such as n- and p-channel field effect transistors, ambipolar light emitting transistors, light emitting diodes, photovoltaic cells, photodiodes, magnetic photoswitches, etc. Solution processing procedures developed with the goal of depositing highly ordered and oriented films of these polymers are also described. This is completed by the description of principal methods that are used for characterizing these macromolecular compounds both in solution and in the solid state. These involve various spectroscopic methods (UV-vis-NIR, UPS, pulse EPR), electrochemistry and spectroelectrochemistry, magnetic measurements (SQUID), and structural and morphological investigations (X-ray diffraction, STM, AFM). Finally, four classes of polymers are discussed in detail with special emphasis on the results obtained in the past three years: (i) high IP, (ii) high |EA|, (iii) low band gap and (iv) high spin ones.

摘要

这篇评论文章主要讨论了半导体和高自旋聚合物,它们在有机电子学和新兴的有机自旋电子学领域的进一步发展中具有重要的科学意义。文中详细讨论了多样化的合成策略,这些策略可以得到高分子质量的化合物,具有适当的氧化还原(电离势 (IP)、电子亲和力 (EA))、电子(载流子迁移率、电导率)、光电(电致发光、光电导)和磁(磁化、铁磁自旋相互作用)性能,并可用作器件的活性组件,如 n-和 p-通道场效应晶体管、双极发光晶体管、发光二极管、光伏电池、光电二极管、磁光开关等。文中还描述了为了沉积这些聚合物的高度有序和定向薄膜而开发的溶液处理程序。这是通过描述用于在溶液和固态中表征这些高分子化合物的主要方法来完成的。这些方法涉及各种光谱方法(UV-vis-NIR、UPS、脉冲 EPR)、电化学和光谱电化学、磁测量(SQUID)以及结构和形态研究(X 射线衍射、STM、AFM)。最后,详细讨论了四类聚合物,特别强调了过去三年取得的成果:(i)高 IP,(ii)高 |EA|,(iii)低带隙和(iv)高自旋聚合物。

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