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Synthesis and optical properties of iron(III) complexes of 2-benzylidene-1-indanone derivative thin films

机译:2-亚苄基-1-茚满酮衍生物薄膜的铁(III)配合物的合成和光学性质

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In this work, we propose a different method to synthesize 2-benzylidene-1-indanone derivatives and a new method to obtain iron(III) complexes of 2-benzylidene-1-indanone derivatives, used to prepare semiconducting thin films. The 2-benzylidene-1-indanone derivatives were obtained from the reaction of o-phthalaldehyde with acetophenone in a basic medium and were later complexed with Fe2(CO)9 to form iron(III) complexes from the corresponding redox reaction. One of the iron complexes (4a) was fully characterized by single-crystal X-ray diffraction. Iron(III) complexes of 1-indenol derivative thin films were obtained by thermal evaporation in a high vacuum source. All the samples were grown at room temperature (25 °C) and low deposition rates (0.2 A s~(-1)) on quartz substrates and (100) single-crystalline silicon (c-Si) wafers. The surface morphology and structure of the deposited films were studied by atomic force microscopy (AFM) and scanning electron microscopy (SEM). Optical absorption studies of the iron(III) complex films were performed in the 100-1150 nm wavelength range. The optical band gap (E_g) of the thin films was determined from the (αhv)~(1/2) vs. hv plots for indirect allowed transitions. The iron(III) complex films show optical activation energies around 2.1 eV, depending on the 1-indenol derivative. From these results, iron complexes of 1-indenol derivatives may prove suitable for photovoltaic or luminescence applications.
机译:在这项工作中,我们提出了一种不同的方法来合成2-亚苄基-1-茚满酮衍生物,以及一种新的方法来获得2-亚苄基-1-茚满酮衍生物的铁(III)配合物,用于制备半导体薄膜。通过在碱性介质中邻苯二甲醛与苯乙酮的反应获得2-亚苄基-1-茚满酮衍生物,然后将其与Fe2(CO)9络合以通过相应的氧化还原反应形成铁(III)络合物。铁配合物(4a)之一通过单晶X射线衍射充分表征。通过在高真空源中热蒸发获得1-茚满衍生物薄膜的铁(III)配合物。所有样品均在室温(25°C)和低沉积速率(0.2 A s〜(-1))下生长在石英基板和(100)单晶硅(c-Si)晶圆上。通过原子力显微镜(AFM)和扫描电子显微镜(SEM)研究了沉积膜的表面形貌和结构。铁(III)络合物薄膜的光吸收研究是在100-1150 nm波长范围内进行的。薄膜的光学带隙(E_g)由(αhv)〜(1/2)与hv图确定,用于间接允许的跃迁。铁(III)配合物薄膜显示出约2.1 eV的光学活化能,具体取决于1-茚满醇衍生物。根据这些结果,可以证明1-茚满醇衍生物的铁络合物适用于光伏或发光应用。

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