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Eu^(3+)、Sm^(3+)共掺双钙钛矿Gd_(2)ZnTiO_(6)荧光粉的发光性能及其热稳定性
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作者 王佳琦 杜海红 +3 位作者 高静怡 武莉 孔勇发 许京军 《发光学报》 EI CAS CSCD 北大核心 2024年第12期1966-1974,共9页
具有高热稳定性的红色发光材料对于改善光转换型白光LED器件的性能具有重要意义。引入敏化剂来实现能量传递至发光中心从而提高荧光粉热稳定性是开发高效WLED用荧光粉的有效策略。本文以双钙钛矿结构化合物Gd_(2)ZnTiO_(6)为基质,制备... 具有高热稳定性的红色发光材料对于改善光转换型白光LED器件的性能具有重要意义。引入敏化剂来实现能量传递至发光中心从而提高荧光粉热稳定性是开发高效WLED用荧光粉的有效策略。本文以双钙钛矿结构化合物Gd_(2)ZnTiO_(6)为基质,制备了系列Sm^(3+)、Eu^(3+)激活的红色荧光粉,并讨论了Sm^(3+)→Eu^(3+)的能量传递过程,证实了这一过程对于该基质单一Eu^(3+)激活荧光粉热稳定的改善作用。双掺样品在150℃时的发光强度保持在室温时的74%。这一结果为离子间的能量传递可有效抑制荧光粉热猝灭的理论提供了依据。 展开更多
关键词 双钙钛矿 Gd_(2)ZnTiO_(6)∶Sm^(3+) Eu^(3+) 能量传递 热稳定性
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新型应力发光材料Ca_(5)Ga_(6)O_(14):Sm^(3+)制备及其性能
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作者 王强 刘伟 +5 位作者 杜玉松 李欢 张志军 饶光辉 程帅 赵景泰 《发光学报》 EI CAS CSCD 北大核心 2024年第6期959-969,共11页
采用高温固相法成功制备出新型Ca_(5-x)Ga_(6)O_(14):xSm^(3+)应力发光材料。通过X射线衍射、扫描电镜、漫发射光谱、光致激发和发射光谱、荧光衰减曲线、应力发光光谱和热释光光谱等测试详细研究了Ca_(5-x)Ga_(6)O_(14):xSm^(3+)的晶... 采用高温固相法成功制备出新型Ca_(5-x)Ga_(6)O_(14):xSm^(3+)应力发光材料。通过X射线衍射、扫描电镜、漫发射光谱、光致激发和发射光谱、荧光衰减曲线、应力发光光谱和热释光光谱等测试详细研究了Ca_(5-x)Ga_(6)O_(14):xSm^(3+)的晶体结构、表面形貌、光致发光和应力发光性能及其发光机理。在404 nm激发下,Ca_(5-x)Ga_(6)O_(14):xSm^(3+)呈现出4个发射峰,分别位于562,599,642,715 nm,对应Sm^(3+)的^(4)G_(5/2)→6Hj(j=5/2,7/2,9/2,11/2)的特征发射。随着Sm^(3+)离子掺杂浓度的增加,发光强度先增强后减弱,在x=0.07时获得最强发射,且衰减时间从1.92 ms缩短至1.30 ms。在滑动摩擦激发下可获得Ca_(5-x)Ga_(6)O_(14):xSm^(3+)的应力发光发射带,且应力发光强度与施加应力满足线性增长,表明该材料在应力传感领域具有潜在应用价值。 展开更多
关键词 应力发光 Ca_(5)Ga_(6)O_(14) Sm^(3+)
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反常热猝灭Sr_(2)Ga_(2)SiO_(7)∶Sm^(3)+红色荧光粉的合成及发光性能
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作者 李婧 许英朝 +2 位作者 洪俊煌 刘月 张贤玉 《发光学报》 EI CAS CSCD 北大核心 2024年第9期1456-1466,共11页
采用高温固相法合成了系列Sr_(2-x)Ga_(2)SiO_(7)∶xSm^(3)+红色荧光粉,通过X射线衍射(XRD)、扫描电子显微镜(SEM)、光致发光(PL)光谱、高温荧光光谱、荧光量子效率和荧光衰减寿命等一系列表征手段对合成荧光粉的物相及晶体结构、发光... 采用高温固相法合成了系列Sr_(2-x)Ga_(2)SiO_(7)∶xSm^(3)+红色荧光粉,通过X射线衍射(XRD)、扫描电子显微镜(SEM)、光致发光(PL)光谱、高温荧光光谱、荧光量子效率和荧光衰减寿命等一系列表征手段对合成荧光粉的物相及晶体结构、发光性能和热稳定性进行研究。一系列结果表明,在404 nm紫外光激发下,Sr_(2-x)Ga_(2)SiO_(7)∶xSm^(3)+荧光粉在598 nm处发出明亮的红色光。Sr_(2-x)Ga_(2)SiO_(7)∶xSm^(3)+荧光粉发光强度随Sm^(3)+离子浓度变化,在x=0.03时发生浓度猝灭,是由电偶极-电偶极相互作用导致的。随着温度逐渐上升,系列荧光粉表现出反常的热猝灭现象,在393 K时发光强度达到最大,强度为室温下的102.5%;在473 K时,发光强度仍可以保持室温下的101.3%。此外,最佳样品的荧光量子效率可达72.5%。研究表明,Sr_(2-x)Ga_(2)SiO_(7)∶xSm^(3)+红色荧光粉是一种具有高热稳定性、高量子效率可用于WLED的发光材料。 展开更多
关键词 反常热猝灭 高温固相法 硅酸盐 Sm^(3)+掺杂
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Ba_(3-x)B_(6)Si_(2)O_(16)∶xSm^(3+)发光材料的制备及其性能表征
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作者 曾帆 茹晶晶 +2 位作者 赵兵 施佳文 钟彤晖 《宁德师范学院学报(自然科学版)》 2024年第1期24-28,共5页
采用高温固相法制备Ba_(3)B_(6)Si_(2)O_(16)∶Sm^(3+)系列发光材料的荧光粉样品,对其进行粉末X射线衍射、荧光光谱、固体紫外-可见漫反射等相关性能的研究与表征,探讨不同的Sm^(3+)离子浓度对Ba_(3-x)B_(6)Si_(2)O_(16)荧光粉发光性能... 采用高温固相法制备Ba_(3)B_(6)Si_(2)O_(16)∶Sm^(3+)系列发光材料的荧光粉样品,对其进行粉末X射线衍射、荧光光谱、固体紫外-可见漫反射等相关性能的研究与表征,探讨不同的Sm^(3+)离子浓度对Ba_(3-x)B_(6)Si_(2)O_(16)荧光粉发光性能的影响,并对其浓度猝灭机理进行讨论.实验表明,在405 nm近紫外光激发下,Ba_(3-x)B_(6)Si_(2)O_(16)∶xSm^(3+)系列发光材料能够同时发射出571 nm(黄光)和606 nm(橙光)荧光,分别对应于Sm^(3+)离子的4G_(5/2)→6H_(5/2)和4G_(5/2)→6H_(7/2)能级跃迁.当x=0.21时,Ba_(2.79)B_(6)Si_(2)O_(16)∶0.21Sm^(3+)荧光粉发光性能最强;继续增加掺杂Sm^(3+)离子的浓度,则出现浓度猝灭现象.其浓度猝灭机制可以通过相邻Sm^(3+)离子之间的相互作用来解释.所制备的Ba_(3)B_(6)Si_(2)O_(16)∶Sm^(3+)荧光粉可被近紫外光有效激发,在白光LED领域具有潜在的应用前景. 展开更多
关键词 Sm^(3+)掺杂红色发光材料 稀土离子 发光材料 淬灭机制
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Sm^(3+)掺杂Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr_(0.10)O_(3)无铅多功能铁电陶瓷的储能和光致发光性能
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作者 郑明 张怡笑 +2 位作者 杨健 关朋飞 李秀东 《无机化学学报》 SCIE CAS CSCD 北大核心 2024年第4期686-692,共7页
通过高温固相反应法制备了Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr_(0.10)O_(3)∶xSm^(3+)(BCTZ∶xSm^(3+),x=0.0%、0.2%、0.4%、0.6%、0.8%、1.0%,物质的量分数)陶瓷,系统研究了其微观形貌、铁电性能、储能性能和光致发光性能。研究表明,Sm^(3+... 通过高温固相反应法制备了Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr_(0.10)O_(3)∶xSm^(3+)(BCTZ∶xSm^(3+),x=0.0%、0.2%、0.4%、0.6%、0.8%、1.0%,物质的量分数)陶瓷,系统研究了其微观形貌、铁电性能、储能性能和光致发光性能。研究表明,Sm^(3+)掺入后,陶瓷平均晶粒大小明显下降,致密度显著提高。所有陶瓷均表现出典型的铁电性。BCTZ∶xSm^(3+)陶瓷放电储能密度得到了极大的提高,BCTZ∶1.0%Sm^(3+)陶瓷放电储能密度较纯BCTZ陶瓷可提高约49.0%。此外,在408 nm光的激发下,BCTZ∶xSm^(3+)陶瓷在596 nm左右表现出强烈的橙红色发光,且发光强度相对可调性可达449%。 展开更多
关键词 Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr_(0.10)O_(3) Sm^(3+) 铁电 储能 光致发光
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Robust Cross-Linked Na_(3)V_(2)(PO_(4))_(2)F_(3) Full Sodium-Ion Batteries 被引量:1
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作者 Jinqiang Gao Ye Tian +12 位作者 Lianshan Ni Baowei Wang Kangyu Zou Yingchang Yang Ying Wang Craig E.Banks Dou Zhang Kechao Zhou Huan Liu Wentao Deng Guoqiang Zou Hongshuai Hou Xiaobo Ji 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第1期9-20,共12页
Sodium-ion batteries(SIBs)have rapidly risen to the forefront of energy storage systems as a promising supplementary for Lithium-ion batteries(LIBs).Na_(3)V_(2)(PO_(4))_(2)F_(3)(NVPF)as a common cathode of SIBs,featur... Sodium-ion batteries(SIBs)have rapidly risen to the forefront of energy storage systems as a promising supplementary for Lithium-ion batteries(LIBs).Na_(3)V_(2)(PO_(4))_(2)F_(3)(NVPF)as a common cathode of SIBs,features the merits of high operating voltage,small volume change and favorable specific energy density.However,it suffers from poor cycling stability and rate performance induced by its low intrinsic conductivity.Herein,we propose an ingenious strategy targeting superior SIBs through cross-linked NVPF with multi-dimensional nanocarbon frameworks composed of amorphous carbon and carbon nanotubes(NVPF@C@CNTs).This rational design ensures favorable particle size for shortened sodium ion transmission pathway as well as improved electronic transfer network,thus leading to enhanced charge transfer kinetics and superior cycling stability.Benefited from this unique structure,significantly improved electrochemical properties are obtained,including high specific capacity(126.9 mAh g^(-1)at 1 C,1 C=128 mA g^(-1))and remarkably improved long-term cycling stability with 93.9%capacity retention after 1000 cycles at 20 C.The energy density of 286.8 Wh kg^(-1)can be reached for full cells with hard carbon as anode(NVPF@C@CNTs//HC).Additionally,the electrochemical performance of the full cell at high temperature is also investigated(95.3 mAh g^(-1)after 100 cycles at 1 C at 50℃).Such nanoscale dual-carbon networks engineering and thorough discussion of ion diffusion kinetics might make contributions to accelerating the process of phosphate cathodes in SIBs for large-scale energy storages. 展开更多
关键词 dual-nanocarbon networks full sodium-ion battery ion transfer kinetics Na_(3)V_(2)(PO_(4))_(2)F_(3) NASICON structure
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KY(CO_(3))_(2):Sm^(3+)新型红光荧光粉的制备及其发光性能研究
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作者 钱健 黄磊 李德川 《淮北师范大学学报(自然科学版)》 CAS 2024年第1期38-42,共5页
为解决白光LED中因蓝光芯片激发黄色荧光粉而导致显色指数较低问题,采用水热法制备一种新型红光荧光粉KY(CO_(3))_(2):Sm^(3+)。通过X射线粉末衍射、光致发光光谱、色度坐标及荧光寿命等表征手段研究样品的物相结构及其发光性能。结果表... 为解决白光LED中因蓝光芯片激发黄色荧光粉而导致显色指数较低问题,采用水热法制备一种新型红光荧光粉KY(CO_(3))_(2):Sm^(3+)。通过X射线粉末衍射、光致发光光谱、色度坐标及荧光寿命等表征手段研究样品的物相结构及其发光性能。结果表明:掺入Sm^(3+)后,KY(CO_(3))_(2)的晶体结构并没有发生改变。随着Sm^(3+)掺杂量的增加,荧光粉的发光强度先增强后减弱,最佳掺杂浓度为10%。Dexter理论分析表明,Sm^(3+)的浓度猝灭归因于电偶极-电偶极相互作用机制。以596 nm作为监测波长,KY(CO_(3))_(2):Sm^(3+)荧光粉激发峰主要包含402 nm (6H_(5/2)→4F_(7/2))和474 nm (6H_(5/2)→4I_(13/2)) 2波长,表明该荧光粉可以被商用紫外LED芯片和蓝光LED芯片有效激发。改变Sm^(3+)掺杂比例,荧光粉色度坐标值基本保持不变,均位于标准红光区,因此KY(CO_(3))_(2):Sm^(3+)红光荧光粉有望作为白光LED用红光荧光粉。 展开更多
关键词 水热法 KY(CO_(3))_(2) Sm^(3+) 红光 荧光粉
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Sm^(3+)掺杂Na_(5)Y(MoO_(4))_(4-y)(WO_(4))_(y)高热稳定性荧光粉的制备及发光性能研究
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作者 胡正开 杨伟斌 +3 位作者 熊飞兵 郭益升 白鑫 李明明 《人工晶体学报》 CAS 北大核心 2024年第6期1016-1025,共10页
本文采用高温固相法合成了一系列Na_(5)Y_(1-x)(MoO_(4))_(4-y)(WO_(4))y∶xSm^(3+)(x=0~0.10,y=0~4)橙红色荧光粉。通过粉末衍射、透射电镜、常温/变温荧光发射谱、荧光激发谱、荧光动态衰减曲线和CIE色度坐标等光谱手段对荧光粉样品... 本文采用高温固相法合成了一系列Na_(5)Y_(1-x)(MoO_(4))_(4-y)(WO_(4))y∶xSm^(3+)(x=0~0.10,y=0~4)橙红色荧光粉。通过粉末衍射、透射电镜、常温/变温荧光发射谱、荧光激发谱、荧光动态衰减曲线和CIE色度坐标等光谱手段对荧光粉样品的光谱性能进行了研究。粉末衍射结果表明,合成的样品相位与Na_(5)Y(MoO_(4))_(4)的标准相一致,Sm^(3+)掺杂与引入(WO_(4))2-均未改变材料的相结构。在波长为406 nm光源的激发下,Na_(5)Y0.92(MoO_(4))3WO_(4)∶0.08Sm^(3+)荧光粉在643 nm附近橙红色荧光发射强度最高,继续增加Sm^(3+)的掺杂浓度,存在荧光猝灭现象,浓度猝灭的主要原因归为电偶极-电偶极相互作用。研究发现,Na_(5)Y(MoO_(4))_(4)基质中掺杂Sm^(3+)会引起电负性改变和晶格畸变,在Na_(5)Y_(1-x)(MoO_(4))_(4)∶xSm^(3+)中引入(WO_(4))2-阴离子基团,可以弥补因掺杂Sm^(3+)出现的缺陷,改善Na_(5)Y(MoO_(4))_(4)∶xSm^(3+)荧光粉的发光性能。在300~440 K,样品具有优异的热稳定性,荧光发射强度均超过室温时的96%;其CIE色度坐标均位于橙红光区域。以上结果表明新型Na_(5)Y_(1-x)(MoO_(4))_(4-y)(WO_(4))y∶xSm^(3+)橙红色荧光粉在WLED应用上有潜在价值。 展开更多
关键词 Na_(5)Y(MoO_(4))_(4) 荧光粉 Sm^(3+)掺杂 高温固相法 荧光发射强度 热稳定性 白光LED
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Preparation of CaS∶Eu^(2+), Sm^(3+) by Solid Reaction Method and Its Photostimulated Luminescence 被引量:6
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作者 张希艳 姜薇薇 +4 位作者 杨魁胜 曹志峰 柏朝晖 王晓春 卢利平 《Journal of Rare Earths》 SCIE EI CAS CSCD 2004年第4期466-469,共4页
The CaS∶Eu^(2+), Sm^(3+) powders were prepared by high-temperature solid method in a reducing atmosphere. The influences of temperature and fired-time on properties of samples were studied. XRD analysis shows that cr... The CaS∶Eu^(2+), Sm^(3+) powders were prepared by high-temperature solid method in a reducing atmosphere. The influences of temperature and fired-time on properties of samples were studied. XRD analysis shows that crystal structure of CaS has formed at 700 ℃. Spectrum analysis results show that the samples which were stimulated by 980 nm laser after excited by ultraviolet lamp emit red luminescence peaking at 649 nm. 展开更多
关键词 opstics CaS∶Eu^(2+) Sm^(3+) PREPARATion photo-stimulated luminescence rare earths
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Extending the solid solution range of sodium ferric pyrophosphate:Off‐stoichiometric Na_(3)Fe(2.5)(P_(2)O_(7))_(2)as a novel cathode for sodium‐ion batteries 被引量:1
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作者 Xiang jun Pu Kunran Yang +6 位作者 Zibing Pan Chunhua Song Yangyang Lai Renjie Li Zheng‐Long Xu Zhongxue Chen Yuliang Cao 《Carbon Energy》 SCIE EI CAS CSCD 2024年第4期128-139,共12页
Iron‐based pyrophosphates are attractive cathodes for sodium‐ion batteries due to their large framework,cost‐effectiveness,and high energy density.However,the understanding of the crystal structure is scarce and on... Iron‐based pyrophosphates are attractive cathodes for sodium‐ion batteries due to their large framework,cost‐effectiveness,and high energy density.However,the understanding of the crystal structure is scarce and only a limited candidates have been reported so far.In this work,we found for the first time that a continuous solid solution,Na_(4−α)Fe_(2+α)_(2)(P_(2)O_(7))_(2)(0≤α≤1,could be obtained by mutual substitution of cations at center‐symmetric Na3 and Na4 sites while keeping the crystal building blocks of anionic P_(2)O_(7) unchanged.In particular,a novel off‐stoichiometric Na_(3)Fe(2.5)(P_(2)O_(7))_(2)is thus proposed,and its structure,energy storage mechanism,and electrochemical performance are extensively investigated to unveil the structure–function relationship.The as‐prepared off‐stoichiometric electrode delivers appealing performance with a reversible discharge capacity of 83 mAh g^(−1),a working voltage of 2.9 V(vs.Na^(+)/Na),the retention of 89.2%of the initial capacity after 500 cycles,and enhanced rate capability of 51 mAh g^(−1)at a current density of 1600 mA g^(−1).This research shows that sodium ferric pyrophosphate could form extended solid solution composition and promising phase is concealed in the range of Na_(4−α)Fe_(2+α)_(2)(P_(2)O_(7))_(2),offering more chances for exploration of new cathode materials for the construction of high‐performance SIBs. 展开更多
关键词 extending solid‐solution range off‐stoichiometric Na_(3)Fe_(2.5)(P_(2)O_(7))_(2) sodium‐ion batteries structure-function relationship
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固态照明用Li_(2)Gd_(4)(MoO_(4))_(7):Sm^(3+)橙红色荧光粉的结构和发光特性
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作者 禄靖雯 赵瑾 +3 位作者 张永春 涂茹婷 刘馥妮 冷稚华 《物理学报》 SCIE EI CAS CSCD 北大核心 2024年第21期142-152,共11页
白光LED具有广阔的应用前景与市场需求,而红色荧光粉对改善器件性能至关重要.本文采用高温固相法制备了一系列Li_(2)Gd_(4-x)Sm_(x)(MoO_(4))_(7)(x=0.01—0.13)荧光粉,利用X射线衍射、扫描电子显微镜、X射线光电子能谱和荧光光谱仪对... 白光LED具有广阔的应用前景与市场需求,而红色荧光粉对改善器件性能至关重要.本文采用高温固相法制备了一系列Li_(2)Gd_(4-x)Sm_(x)(MoO_(4))_(7)(x=0.01—0.13)荧光粉,利用X射线衍射、扫描电子显微镜、X射线光电子能谱和荧光光谱仪对样品进行了表征.在406 nm激发下,Li_(2)Gd_(4)(MoO_(4))_(7):Sm^(3+)荧光粉的发射峰分别位于563,598,645,706 nm处,这是由于Sm^(3+)的4f-4f跃迁引起的.当Sm^(3+)浓度为0.07时发光最强,浓度猝灭主要归因于电偶极-电偶极相互作用.随着Sm^(3+)浓度的增大,荧光寿命逐渐缩短.温度依赖性发射光谱研究发现,当温度为423 K时,Li_(2)Gd_(4)(MoO_(4))_(7):0.07Sm^(3+)的发射强度依然保持在298 K时的79%,显示了样品优良的热稳定性.CIE色度图确认了该荧光粉的发射位于橙红色区域.进一步利用最佳样品制作了白光LED,其CIE色坐标为(0.3788,0.3134),位于白光圈内.研究表明Li_(2)Gd_(4)(MoO_(4))_(7):Sm^(3+)荧光粉是一种很有前途的白光LED用橙红色荧光粉. 展开更多
关键词 荧光粉 发光性能 LED Sm^(3+)
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新型红色荧光粉Sr_(3)CaNb_(2)O_(9):Sm^(3+),Eu^(3+)的发光特性和能量传递分析 被引量:1
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作者 洪俊煌 孟宪国 +3 位作者 许英朝 肖泽宇 刘月 林振鹏 《厦门理工学院学报》 2024年第1期88-96,共9页
利用高温固相反应法制备一系列单基质荧光粉Sr_(3)CaNb_(2)O_(9):xSm^(3+),yEu^(3+)(x=0.04~0.09,y=0.03~0.15),并对样品的物相形貌、发光性能、能量传递机制和CIE色坐标进行分析。研究表明,Sr_(3)CaNb_(2)O_(9):xSm^(3+)荧光粉在激发... 利用高温固相反应法制备一系列单基质荧光粉Sr_(3)CaNb_(2)O_(9):xSm^(3+),yEu^(3+)(x=0.04~0.09,y=0.03~0.15),并对样品的物相形貌、发光性能、能量传递机制和CIE色坐标进行分析。研究表明,Sr_(3)CaNb_(2)O_(9):xSm^(3+)荧光粉在激发波长为407 nm时的浓度淬灭点为x=0.07。在Sr_(3)CaNb_(2)O_(9):0.07Sm^(3+),yEu^(3+)荧光粉中,随着Eu^(3+)掺杂浓度的增加,Sm^(3+)的发光强度降低而Eu^(3+)发光强度却先增加后降低,Eu^(3+)的浓度淬灭点为y=0.09。Sm^(3+)→Eu^(3+)的能量传递以电偶极-电偶极相互作用为主,能量传递效率达到76.6%。色坐标图表明Eu^(3+)离子的加入可使色坐标从橙红色区域向纯红色区域移动。此外,样品还具有较高的色纯度和较低的色温。结果表明,Sr_(3)CaNb_(2)O_(9)∶Sm^(3+),Eu^(3+)荧光粉有望成为白光LED发出红光物质的候选材料。 展开更多
关键词 Sr_(3)CaNb_(2)O_(9):Sm^(3+) Eu^(3+) 稀土掺杂 发光特性 能量传递
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Insights on advanced g‐C_(3)N_(4)in energy storage:Applications,challenges,and future
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作者 Xiaojie Yang Jian Peng +7 位作者 Lingfei Zhao Hang Zhang Jiayang Li Peng Yu Yameng Fan Jiazhao Wang Huakun Liu Shixue Dou 《Carbon Energy》 SCIE EI CAS CSCD 2024年第4期22-78,共57页
Graphitic carbon nitride(g‐C_(3)N_(4))is a highly recognized two‐dimensional semiconductor material known for its exceptional chemical and physical stability,environmental friendliness,and pollution‐free advantages... Graphitic carbon nitride(g‐C_(3)N_(4))is a highly recognized two‐dimensional semiconductor material known for its exceptional chemical and physical stability,environmental friendliness,and pollution‐free advantages.These remarkable properties have sparked extensive research in the field of energy storage.This review paper presents the latest advances in the utilization of g‐C_(3)N_(4)in various energy storage technologies,including lithium‐ion batteries,lithium‐sulfur batteries,sodium‐ion batteries,potassium‐ion batteries,and supercapacitors.One of the key strengths of g‐C_(3)N_(4)lies in its simple preparation process along with the ease of optimizing its material structure.It possesses abundant amino and Lewis basic groups,as well as a high density of nitrogen,enabling efficient charge transfer and electrolyte solution penetration.Moreover,the graphite‐like layered structure and the presence of largeπbonds in g‐C_(3)N_(4)contribute to its versatility in preparing multifunctional materials with different dimensions,element and group doping,and conjugated systems.These characteristics open up possibilities for expanding its application in energy storage devices.This article comprehensively reviews the research progress on g‐C_(3)N_(4)in energy storage and highlights its potential for future applications in this field.By exploring the advantages and unique features of g‐C_(3)N_(4),this paper provides valuable insights into harnessing the full potential of this material for energy storage applications. 展开更多
关键词 g‐C_(3)N_(4) lithium‐ion batteries lithium‐sulfur batteries potassium‐ion batteries sodium‐ion batteries SUPERCAPACITORS
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In situ luminescence measurements of GaN/Al_(2)O_(3) film under different energy proton irradiations
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作者 蒋文丽 欧阳潇 +6 位作者 仇猛淋 英敏菊 陈琳 庞盼 张春雷 张耀锋 廖斌 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第5期704-710,共7页
Ion beam-induced luminescence(IBIL) experiments were performed to investigate the in situ luminescence of GaN/Al_(2)O_(3) at varying ion energies,which allowed for the measurement of defects at different depths within... Ion beam-induced luminescence(IBIL) experiments were performed to investigate the in situ luminescence of GaN/Al_(2)O_(3) at varying ion energies,which allowed for the measurement of defects at different depths within the material.The energies of H^(+)were set to 500 keV,640 keV and 2 MeV,the Bragg peaks of which correspond to the GaN film,GaN/Al_(2)O_(3) heterojunction and Al_(2)O_(3) substrate,respectively.A photoluminescence measurement at 250 K was also performed for comparison,during which only near band edge(NBE) and yellow band luminescence in the GaN film were observed.The evolution of the luminescence of the NBE and yellow band in the GaN film was discussed,and both exhibited a decrease with the fluence of H^(+).Additionally,the luminescence of F centers,induced by oxygen vacancies,and Cr^(3+),resulting from the ^(2)E →^(4)A_(2) radiative transition in Al_(2)O_(3),were measured using 2 MeV H^(+).The luminescence intensity of F centers increases gradually with the fluence of H^(+).The luminescence evolution of Cr^(3+)is consistent with a yellow band center,attributed to its weak intensity,and it is situated within the emission band of the yellow band in the GaN film.Our results show that IBIL measurement can effectively detect the luminescence behavior of multilayer films by adjusting the ion energy.Luminescence measurement can be excited by various techniques,but IBIL can satisfy in situ luminescence measurement,and multilayer structural materials of tens of micrometers can be measured through IBIL by adjusting the energy of the inducing ions.The evolution of defects at different layers with ion fluence can be obtained. 展开更多
关键词 ion beam-induced luminescence(IBIL) GaN/Al_(2)O_(3) ion beam
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Polypyride intercalation boosting the kinetics and stability of V_(3)O_(7)·H_(2)O cathodes for aqueous zinc-ion batteries
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作者 Qingqing He Jie Bai +4 位作者 Mengda Xue Yanxin Liao Huayu Wang Mujun Long Lingyun Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期361-370,I0007,共11页
V_(3)O_(7)·H_(2)O(VO)is a high capacity cathode material in the field of aqueous zinc ion batteries(AZIBs),but it is limited by slow ion migration and low electrical conductivity.In this paper,polypyridine(PPyd)i... V_(3)O_(7)·H_(2)O(VO)is a high capacity cathode material in the field of aqueous zinc ion batteries(AZIBs),but it is limited by slow ion migration and low electrical conductivity.In this paper,polypyridine(PPyd)intercalated VO with nanoribbon structure was prepared by a simple in-situ pre-intercalation,which is noted VO-PPyd.The total density of states(TDOS)shows that after the pre-intercalation of PPyd,an intermediate energy level appears between the valence band and conduction band,which provides a step that can effectively reduce the band gap and enhance the electron conductivity.Furthermore,the density functional theory(DFT)results found that Zn^(2+)is more easily de-intercalated from the V-O skeleton,which proves that the embeddedness of PPyd improves the diffusion kinetics of Zn^(2+).Electrochemical studies have shown that VO-PPyd cathode materials exhibit excellent rate performance(high specific capacity of 465 and 192 mA h g^(-1)at 0.2 and 10 A g^(-1),respectively)and long-term cycling performance(92.7%capacity retention rate after 5300 cycles),due to their advantages in structure and composition.More importantly,the energy density of VO-PPyd//Zn at 581 and 5806 W kg^(-1)is 375 and 247 W h kg^(-1),respectively.VO-PPyd exhibits excellent electrochemical properties compared to previously reported vanadium based cathodes,which makes it highly competitive in the field of high-performance cathode materials of AZIBs. 展开更多
关键词 V_(3)O_(7)·H_(2)O POLYPYRIDINE ion migration Electrical conductivity Aqueous zinc ion batteries DFT calculation
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Co-Precipitation Synthesis and Spectral Characteristics of Long Afterglow Phosphor Y_2O_2S:Sm^(3+), Mg^(2+), Ti^(4+) 被引量:3
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作者 杨志平 李兴民 +4 位作者 刘冲 李旭 杨勇 徐小岭 李盼来 《Journal of Rare Earths》 SCIE EI CAS CSCD 2007年第1期23-26,共4页
Y2O2S:Sm^3+, Mg^2+, Ti^4+ phosphor was synthesized by co-precipitation method. The crystalline structure of all synthesized phosphors was investigated by XRD. The result showed that all synthesized phosphors had a... Y2O2S:Sm^3+, Mg^2+, Ti^4+ phosphor was synthesized by co-precipitation method. The crystalline structure of all synthesized phosphors was investigated by XRD. The result showed that all synthesized phosphors had a hexagonal crystal structure, which was the same as Y2O2S. The emission spectrum and excitation spectrum were measured, and the effect of Sm^3 + molar ratio on the spectra was discussed. The emission spectra of the phosphors showed three emission peaks due to typical transitions of Sm^3 + (4G5/2→6HJ ,J = 5/2, 7/2, 9/2), and the emission peaks at 606 nm was stronger than others. With the increase of Sm^3 + molar ratio, the emission intensity was strengthened. The excitation peaks were ascribed to the representative energy transition 4f→4f of Ti^4+ phosphor prepared by co-precipitation method was Sm^3+ ions. The results indicated that the Y2O2S : Sm^3+ , Mg^2+ , an efficient long afterglow phosphor. 展开更多
关键词 Y2O2S: Sm^3+ Mg^2+ Ti^4+ CO-PRECIPITATion emission spectra excitation spectra rare earths
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Enhancing zinc storage performance of Mn_(3)O_(4)cathode through Ag-doping and-crosslinking dual-modification strategy
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作者 Xin-yuan WANG Tian-zhen JIAN +5 位作者 Ya-ting YANG Jian-ping MA Xian-hong LI Zi-long XUE Wen-qing MA Cai-xia XU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第11期3693-3706,共14页
Octahedral Mn_(3)O_(4)nanoparticles with an Ag-doping and nanoporous Ag(NPS)framework was simply fabricated through an alloying-etching engineering.The dual-modified Mn_(3)O_(4)(denoted as Ag−Mn_(3)O_(4)/NPS)consists ... Octahedral Mn_(3)O_(4)nanoparticles with an Ag-doping and nanoporous Ag(NPS)framework was simply fabricated through an alloying-etching engineering.The dual-modified Mn_(3)O_(4)(denoted as Ag−Mn_(3)O_(4)/NPS)consists of Ag-doped Mn_(3)O_(4)nanoparticles crosslinked with three dimensional nanoporous Ag framework.The incorporated Ag dopant is effective in improving the intrinsic ionic and electronic conductivities of Mn_(3)O_(4),while the NPS framework is introduced to improve the electron/mass transfer across the entire electrode.Profiting from the dual-modification strategy,the Ag−Mn_(3)O_(4)/NPS exhibits admirable rate capability and cycling stability.A high reversible capacity of 88.7 mA·h/g can still be retained for over 1000 cycles at a current density of 1 A/g.Moreover,a series of ex-situ experimental techniques indicate that for Ag−Mn_(3)O_(4)/NPS electrode during the zinc ion storage,Mn_(3)O_(4)is electrochemically oxidized into various MnOx(e.g.,Mn_(2)O_(3),MnO2)species in the initial charging,and the subsequent battery reaction is actually the intercalation/deintercalation of H+and Zn2+into MnOx. 展开更多
关键词 Ag-doped Mn_(3)O_(4) zinc ion battery nanoporous Ag DEALLOYING
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Solid-state NMR study on sodium intercalation at low voltage window for Na_(3)V_(2)(PO_(4))_(3) as an anode
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作者 Yuxin Liao Fushan Geng +1 位作者 Ming Shen Bingwen Hu 《Magnetic Resonance Letters》 2024年第2期40-45,共6页
In-situ XRD,^(31)P NMR and ^(23)Na NMR were used to analyze the interaction behavior of Na_(3)V_(2)(PO_(4))_(3) at low voltage,and then a new intercalation model was proposed.During the transition from Na_(3)V_(2)(PO_... In-situ XRD,^(31)P NMR and ^(23)Na NMR were used to analyze the interaction behavior of Na_(3)V_(2)(PO_(4))_(3) at low voltage,and then a new intercalation model was proposed.During the transition from Na_(3)V_(2)(PO_(4))_(3) to Na_(4)V_(2)(PO_(4))_(3),Na ions insert into M1,M2 and M3 sites simultaneously.Afterwards,during the transition of Na_(4)V_(2)(PO_(4))_(3)to Na_(5)V_(2)(PO_(4))_(3),Na ions mainly insert into M3 site. 展开更多
关键词 Na_(3)V_(2)(PO_(4))_(3) ANODE Low voltage NMR Sodium ion battery
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基于Sm^(3+)敏化的红色荧光粉Na_(5)Y(MoO_(4))_(4)∶Eu^(3+)发光性能研究
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作者 郭益升 胡正开 +1 位作者 白鑫 熊飞兵 《化工新型材料》 CAS CSCD 北大核心 2024年第11期245-251,共7页
采用高温固相法制备了一系列新型Na_(5)Y_(1-x)(MoO_(4))_(4)∶x Eu^(3+)(x=0~0.14)和Na_(5)Y_(0.9)-y(MoO_(4))_(4)∶0.1Eu^(3+),y Sm^(3+)(y=0~0.08)红色荧光粉,并对Na_(5)Y_(1-x)(MoO_(4))_(4)∶x Eu^(3+)(x=0~0.14)和Na_(5)Y_(0.9)-... 采用高温固相法制备了一系列新型Na_(5)Y_(1-x)(MoO_(4))_(4)∶x Eu^(3+)(x=0~0.14)和Na_(5)Y_(0.9)-y(MoO_(4))_(4)∶0.1Eu^(3+),y Sm^(3+)(y=0~0.08)红色荧光粉,并对Na_(5)Y_(1-x)(MoO_(4))_(4)∶x Eu^(3+)(x=0~0.14)和Na_(5)Y_(0.9)-y(MoO_(4))_(4)∶0.1Eu^(3+),y Sm^(3+)(y=0~0.08)的物相结构、发光性能、热稳定性、荧光寿命等性能进行了研究。结果表明,在单掺Eu^(3+)的条件下,Na_(5)Y_(1-x)(MoO_(4))_(4)∶x Eu^(3+)(x=0~0.14)荧光粉在395nm紫外光激发下,发射出峰值波长在615nm的强红光,其掺杂浓度为x=0.1,样品的发光强度最高。进一步探究Sm^(3+)对Eu^(3+)在Na_(5)Y_(1-x)(MoO_(4))_(4)∶x Eu^(3+)(x=0~0.14)中的敏化增强作用。通过研究该样品不同Sm^(3+)掺杂浓度下的荧光发射谱,发现Sm^(3+)敏化增强的最佳掺杂浓度为y=0.04;相较于单掺Eu^(3+)的样品,Sm^(3+)敏化后的样品其发光强度为原来的113.8%。Sm^(3+)敏化后的样品存在能量传递现象,能量传递机制为Eu^(3+)与Sm^(3+)之间的电偶极-电偶极相互作用。温度相关荧光发射谱实验结果表明Na_(5)Y_(0.86)(MoO_(4))_(4)∶0.1Eu^(3+),0.04Sm^(3+)具有较好的热稳定性,在437K时荧光发射强度约为室温时的70%左右,而Na_(5)Y_(0.9)(MoO_(4))_(4)∶0.1Eu^(3+)在437K时的荧光发射强度约为室温时的68%左右。因此,Sm^(3+)敏化的Eu^(3+)掺杂Na_(5)Y(MoO_(4))_(4)荧光粉在白光LED领域中具有较大的应用可能性。 展开更多
关键词 高温固相法 Na_(5)Y(MoO_(4))_(4)∶Eu^(3+) Sm^(3+) 荧光粉 发光性能 能量传递 热稳定性
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碱金属掺杂对高温固相法制备的CaMoO_(4):Sm^(3+)荧光粉发光性质的影响
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作者 陈栋 狄世航 +2 位作者 邓茜文 牛鹏英 吴宏越 《江西化工》 CAS 2024年第2期82-85,共4页
在无机发光材料领域里,值得注意的是具有稳定化学及物理性质的优良材料钼酸钙。本次研究使用高温固相法制备一系列单一基质Ca MoO_(4)掺杂Sm^(3+)的白光荧光粉,并使用XRD测试其物相结构,用激发和发射光谱测试发光性能。最终研究发现钼酸... 在无机发光材料领域里,值得注意的是具有稳定化学及物理性质的优良材料钼酸钙。本次研究使用高温固相法制备一系列单一基质Ca MoO_(4)掺杂Sm^(3+)的白光荧光粉,并使用XRD测试其物相结构,用激发和发射光谱测试发光性能。最终研究发现钼酸钙(CaMoO_(4))中Sm^(3+)掺杂浓度为0.020时,荧光粉发光性能最强。当进一步掺杂碱金属作电荷补偿剂时,CaMoO_(4):0.020Sm^(3+)的发光强度最优异,其中掺杂K^(+)的荧光粉样品具有最大的发光强度,表明这种荧光粉在发光二极管照明方面具有深远而广阔的发展前景。 展开更多
关键词 无机发光材料 钼酸钙 Sm^(3+) 高温固相法 碱金属
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