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首页> 外文期刊>Advanced Functional Materials >The Influence of UV Irradiation on Ketonic Defect Emission in Fluorene-Based Copolymers
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The Influence of UV Irradiation on Ketonic Defect Emission in Fluorene-Based Copolymers

机译:紫外线辐射对芴基共聚物中酮缺陷发射的影响

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The influence of UV irradiation in inert atmosphere on the emission spectrum of fluorenone containing poly[9,9-bis(2-ethyl)hexylfluorene] (PF2/6) has been investigated by means of optical absorption, photoluminescence (PL) and Fourier transform infrared (FTIR) spectroscopy. It is shown that a substantial reduction of green emission arising from ketonic defect sites can be achieved by irradiation of thin films with UV light. This is found to be accompanied by partial cross-linking of the films. FTIR measurements show no reduction of the C=O stretching mode upon irradiation, and, moreover, the degree of cross-linking does not scale with the relative fluorenone content (0.1,0.5, and 5%). Therefore, the reduced emission intensity in the green spectral region is rather associated with the occurrence of interruptions in the polymer backbone, which reduce the effective conjugation length and subsequently inhibit the energy transfer onto the ketonic defect sites. The found results enabled us to build organic light emitting devices (OLEDs) that can be structured by selective illumination of the emitting layer with an intense UV light source. This method allows for the fabrication of rather efficient (2000 cd m~(-2) at 7 V) two-color OLEDs.
机译:通过光吸收,光致发光(PL)和傅里叶变换研究了惰性气氛中紫外线辐射对含聚[9,9-双(2-乙基)己基芴](PF2 / 6)芴酮的发射光谱的影响。红外(FTIR)光谱。结果表明,通过用紫外线辐照薄膜可以大大减少酮缺陷部位引起的绿色发射。发现这伴随着膜的部分交联。 FTIR测量显示,辐照后C = O拉伸模式没有降低,此外,交联度不随相对芴酮含量(0.1、0.5和5%)缩放。因此,绿色光谱区域中降低的发射强度与聚合物主链中断的发生有关,这减少了有效的共轭长度并随后抑制了能量转移到酮缺陷位点上。发现的结果使我们能够构建有机发光器件(OLED),该器件可以通过用强紫外线光源选择性照射发光层来构造。该方法允许制造相当有效的(在7 V下为2000 cd m〜(-2))双色OLED。

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