Chauhan Archana, Lohra Sheetal, Langyan Ritu
Department of Chemistry, Kurukshetra University, Kurukshetra, Haryana, 136119, India.
Department of Chemistry, Maharshi Dayanand University, Rohtak, 124001, India.
J Fluoresc. 2022 Sep;32(5):1685-1694. doi: 10.1007/s10895-022-02970-x. Epub 2022 Jun 4.
This research article deals with the synthesis of ternary Sm complexes with 6,8-dichlorochromone-3-carboxaldehyde through solution-precipitation method. The photometric properties of resultant complexes were tuned by coordinating N-donor heterocyclic ligands with Sm ion. The emission spectra, obtained in the visible region have been studied. Under optical excitation of 370 nm, the complexes displayed characteristic Sm-centered emission peaks at ~ 563, 600 and 647 nm in solution as well as in powder state. The complexes showed thermal stability up to 175 °C. The complexes delivered quantum yield as high as 7.91% and longest emission lifetime of 0.564 ms. The color coordinates of the complexes, located in deep orange (in solution) and red (in powder) spectral region, matched well with the Society of Motion Picture and Television Engineers and European Broadcasting Union. The properties of complexes have been investigated to a significant extent due to their easy synthesis and potential applications as orange-red light emitter in a wide range of photonic applications such as display devices, OLEDs, dashboards, optical systems.
这篇研究文章通过溶液沉淀法研究了三元Sm配合物与6,8-二氯色酮-3-甲醛的合成。通过使含氮供体杂环配体与Sm离子配位来调节所得配合物的光度性质。对在可见光区域获得的发射光谱进行了研究。在370 nm的光激发下,该配合物在溶液和粉末状态下于~563、600和647 nm处均显示出以Sm为中心的特征发射峰。这些配合物在高达175°C的温度下表现出热稳定性。配合物的量子产率高达7.91%,最长发射寿命为0.564 ms。配合物的色坐标位于深橙色(溶液中)和红色(粉末中)光谱区域,与电影电视工程师协会和欧洲广播联盟的标准匹配良好。由于其易于合成以及在诸如显示设备、有机发光二极管、仪表盘、光学系统等广泛光子应用中作为橙红色发光体的潜在应用,对配合物的性质进行了大量研究。