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Crystal structure and optical performance analysis of a new type of persistent luminescence material with multi-functional application prospects 被引量:2
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作者 Songsong Ding Pohua Chen +4 位作者 Haijie Guo Peng Feng Yunpeng Zhou Yuhua Wang Junliang Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第6期150-160,I0005,共12页
Persistent luminescence (PersL) materials,as environmentally friendly and energy-saving materials,have broad application prospects in many fields such as lighting,chemistry and even biomedicine.However,studies on the ... Persistent luminescence (PersL) materials,as environmentally friendly and energy-saving materials,have broad application prospects in many fields such as lighting,chemistry and even biomedicine.However,studies on the types,performances and mechanism of PersL materials are still insufficient,which significantly restricts their development and application.Under this consideration,we successfully synthesized a yellow PersL material CaSrGa_(4)O_(8)(CSG).The crystal structure was studied in detail through Rotation Electron Diffraction (RED) and Powder X-ray Diffraction (PXRD).What’s more,by co-doping Mn^(2+) and Yb^(3+),the afterglow brightness of CSG could be increased by nearly 20 times,and the afterglow duration could reach more than 6 h.It is worth mentioning that the samples also have excellent performances in mechanical luminescence (ML),photostimulated luminescence (PSL) and cathodoluminescence (CL),which was also investigated systematically.Finally,an anti-counterfeiting label was designed by the samples to reveal the potential of their application in anti-counterfeiting.The results showed that our research not only provided a new candidate PersL material for multifunctional applications,but also gave good help for studying the physical and chemical properties of CSG. 展开更多
关键词 Persistent luminescence multifunctional materials MECHANOluminescENCE ANTI-COUNTERFEITING CATHODOluminescENCE
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A novel multifunction material with both electrorheological performance and luminescence property
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作者 陈明星 商艳丽 +1 位作者 贾云玲 李俊然 《Journal of Rare Earths》 SCIE EI CAS CSCD 2014年第11期1022-1026,共5页
A multifunctional material with both electrorheological(ER) performance and luminescence property was synthesized by a simple coprecipitation. The tetrabutyl titanate, as well as the Tb(NO3)3·6H2O and sulphos... A multifunctional material with both electrorheological(ER) performance and luminescence property was synthesized by a simple coprecipitation. The tetrabutyl titanate, as well as the Tb(NO3)3·6H2O and sulphosalicylic acid(C7H6O6S·2H2O, SSA) were chosen as starting materials. The composition, ER performance and luminescence property of the material were studied. The results showed that a novel material(TiTbSSA) with both ER performance and luminescence property was obtained. The relative shear stress τr(τr=τE/τ0, τE and τ0 were the shear stresses of the suspension with and without an applied electric field) of the suspension(30 wt.%) of the material in silicone oil reached 32.7 at a shear rate of 12.5 s–1 and an electric field strength of 4 kV/mm(DC electric field). The material containing the rare earth(RE=Tb) complex exhibited fine luminescence performance and higher ER activity. Therefore, it is a novel multifunction material which would have wide application prospect. 展开更多
关键词 multifunctional material electrorheological performance luminescence property rare earth complex
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Highly Efficient Multifunctional Luminescent Radicals
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作者 Yihan Zhao Alim Abdurahman +3 位作者 Yimeng Zhang Ping Zheng Ming Zhang Feng Li 《CCS Chemistry》 CAS 2022年第2期722-731,共10页
Stable organic luminescent radicals are a special class of compounds integrating optical,electrical,and magnetic properties.Luminescent radicals not only have potential applications in the field of the organic light-e... Stable organic luminescent radicals are a special class of compounds integrating optical,electrical,and magnetic properties.Luminescent radicals not only have potential applications in the field of the organic light-emitting diodes(OLEDs)but can also be applied in the fields of fluorescence sensing,bioimaging,and so forth.Nevertheless,due to the adverse effects of solvent polarity on the luminescent performance of radicals,no feasible approaches have been found in the literature toward fluorescent sensing.In this work,we report two luminescent radicals,2αPyID-TTM and 2δPyID-TTM,whose emissions show high efficiency and less dependence on solvent polarity.Both radicals show remarkable protonation–deprotonation properties.Besides,2αPyID-TTM exhibits significant fluorescence quenching and colorimetric response toward Fe^(3+)in aqueous solution.This suggests the possibility of a fluorometric/colorimetric dual-channel probe for Fe^(3+).Moreover,an optimized OLED using 2δPyID-TTM as an emissive dopant shows pure red emission and a maximum external quantum efficiency(EQE)of 10.6%.These results show promise for luminescent radicals as fluorescent probes and electroluminescent emitters. 展开更多
关键词 luminescent radical proton response fluorescence probe multifunctional materials organic light-emitting diodes
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多功能蓄能发光材料辅助隧道照明光环境研究 被引量:17
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作者 冯守中 陈雪峰 +2 位作者 冒卫星 周龙 朱合华 《地下空间与工程学报》 CSCD 北大核心 2021年第6期2030-2036,共7页
现有公路隧道照明系统多具有能耗大的弊端,导致照明电耗成为公路隧道运营的沉重负担。利用多功能蓄能发光材料结合LED灯具进行隧道照明设计,是公路隧道照明节能发展的新方向。为研究多功能蓄能发光材料辅助隧道照明的光环境特性,选取了... 现有公路隧道照明系统多具有能耗大的弊端,导致照明电耗成为公路隧道运营的沉重负担。利用多功能蓄能发光材料结合LED灯具进行隧道照明设计,是公路隧道照明节能发展的新方向。为研究多功能蓄能发光材料辅助隧道照明的光环境特性,选取了一条长160 m的原型隧道结构开展照明试验,根据试验得出了不同色温LED光源下隧道内壁面与路面亮度、光源光谱与显色指数及小物体可视距离的变化规律。试验结果表明,多功能蓄能发光材料反射率较大,隧道侧壁涂装该材料后,壁面亮度与地面亮度比提升至1.3~1.4,增加了背景、路面与物体间的亮度反差,有利于提高司驾人员的视觉功效、增加司驾人员的视反应能力。LED光源色温为3500~5500 K时人眼感官最为舒适,且色温为3500 K时光源功率较多地分布在波长480~580 nm区间、显色指数最高,隧道内小物体的可视距离最大,此时多功能蓄能发光材料的增光效果最佳。研究成果可为多功能蓄能发光材料辅助公路隧道照明设计及工程应用提供参考和依据。 展开更多
关键词 隧道照明 多功能蓄能发光材料 光环境 试验
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基于二苯甲酮框架的多功能有机发光材料
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作者 汤炜 邴研 +1 位作者 刘旭东 姜鸿基 《化学进展》 SCIE CAS CSCD 北大核心 2023年第10期1461-1485,共25页
有机发光材料的光电性能与分子的化学结构、构象变化的灵活性以及分子间相互作用密切相关。从结构上看,二苯甲酮的羰基和苯环具有很高的可化学修饰性,本文从材料合成角度首先综述了近年来基于二苯甲酮框架的多功能有机发光材料的构建策... 有机发光材料的光电性能与分子的化学结构、构象变化的灵活性以及分子间相互作用密切相关。从结构上看,二苯甲酮的羰基和苯环具有很高的可化学修饰性,本文从材料合成角度首先综述了近年来基于二苯甲酮框架的多功能有机发光材料的构建策略,主要包括多取代二苯甲酮、用杂原子作为桥连基团以及以C=C偶联和苯环为中心直接偶联等三种策略。已经基于此开发了多种多功能有机发光材料,主要包括荧光材料、贵金属磷光配合物的主体、热激活延迟荧光材料、聚集诱导发光材料和纯有机室温磷光材料等。最后,还展望了基于二苯甲酮框架的多功能有机发光材料未来的研究重点和发展前景。 展开更多
关键词 二苯甲酮 化学改性 多功能有机发光材料 荧光 主体 热活化延迟荧光 聚集诱导发光 纯有机室温磷光
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铋层状化合物Na_(0.5)Ho_(0.5-x)Yb_xBi_4Ti_4O_(15)陶瓷材料的上转换发光、铁电、介电性能研究 被引量:1
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作者 惠新伟 李艳霞 王旭升 《中国科学:技术科学》 EI CSCD 北大核心 2014年第12期1233-1237,共5页
采用传统的固相烧结法,制备了Na0.5Ho0.5-xYbxBi4Ti4O15铋层状结构陶瓷.经X射线衍射(XRD)表征,新合成材料为单相结构,且扫描电子显微镜下的表面和断面图像均为层状,说明合成材料为新型铋层状材料.室温时,在可见光波长范围内,有2个峰,... 采用传统的固相烧结法,制备了Na0.5Ho0.5-xYbxBi4Ti4O15铋层状结构陶瓷.经X射线衍射(XRD)表征,新合成材料为单相结构,且扫描电子显微镜下的表面和断面图像均为层状,说明合成材料为新型铋层状材料.室温时,在可见光波长范围内,有2个峰,分别为546 nm处的绿光峰和656 nm处的红光峰,分别对应于Ho3+离子的5F4+5S2→5I8和5F5→5I8跃迁.为研究其机理,测试了变功率条件下的发光强度,经计算,绿光和红光发射均为双光子过程.研究陶瓷样品在变温(-130~270°C)条件下的发光性能时,发现红光与绿光的强度比值与温度呈线性关系,该材料有望应用于光学温度传感器领域.经介电性能测试发现当Ho:Yb=1:9时,样品的居里温度为686.4°C.研究铁电性能发现当Ho:Yb=3:2时,剩余极化Pr为9.3μC/cm2,矫顽场强为Ec=82 k V/cm,表明具有一定的铁电性能.以上研究结果表明,制得的新材料是一种具有优异光学性能的多功能材料. 展开更多
关键词 铋层状结构材料 上转换发光 铁电性 介电性 多功能材料
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