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1.
王飞  田一光  张乔 《无机化学学报》2014,30(11):2530-2536
由高温固相反应制得Sr0.955Al2Si2-xTixO8∶Eu2+(x=0~1.0)系列试样,研究了Ti4+置换Si4+对其晶体结构和光谱特性的影响。Ti4+以类质同相替代Si4+进入基质晶格中,形成了连续固溶体,其晶胞参数a,b,c,β和晶胞体积V随Ti4+置换量呈线性递增。Ti4+置换Si4+对晶胞参数c的影响显著,b其次,a最小。荧光激发谱为宽带,位于230~400nm,由267nm、305nm、350nm和375nm4个峰拟合成,表观峰值位于351nm;随着Ti4+置换量的增加,半高宽(FWHM)从105nm减小到93nm。发射光谱位于380~600nm,表观峰值位于407nm,可由406nm和441nm两峰拟合而成并且随Ti4+置换量增加线性红移,Ti4+进入晶格对长波长发射中心影响较少;Ti4+置换量为1.0时,表观发射峰位从407nm红移至417nm;利用试样荧光光谱和VanUitert经验公式,得出SrAl2Si2O8∶Eu2+中Sr2+的配位数为9。随着Ti4+置换量Si4+进入基质晶格,造成Eu-O距离变小,使得Eu2+所处的晶体场强度增强,发光中心Eu2+的5d能级分裂增大,造成Eu2+最低发射能级重心下移,两拟合谱峰峰位均呈线性红移。  相似文献   

2.
王飞  田一光  张乔  赵文光 《无机化学学报》2010,26(12):2170-2174
采用高温固相法在弱还原气氛下制备了Ca0.955Al2-xGaxSi2O8∶Eu2+(x=0~1.0)系列荧光粉,研究了Ga3+置换Al3+对晶体结构和光谱特性的影响。Ga3+以类质同相替代CaAl2Si2O8晶格中的Al3+形成连续固溶体,晶胞参数a,b,c和晶胞体积V随Ga3+置换量呈线性增大;晶面夹角α,β和γ随Ga3+置换量的增加呈线性递减。荧光激发谱为宽带,位于230~420 nm,可拟合成4个峰,表观峰值位于352 nm;随着Ga3+置换量的增加,半高宽从112 nm减小到98 nm。发射光谱位于375~560 nm,可由421和457 nm两峰拟合而成,表观峰值位于425 nm,随着Ga3+置换量的增加,两拟合峰均线性红移,且拟合峰强度比呈线性递减。  相似文献   

3.
采用高温固相法制备了(Ca,Me)La4Si3O13∶Eu3+(Me=Sr,Ba)系列红色荧光体,考察了Eu3+掺杂浓度和Sr2+,Ba2+置换对荧光体结构和发光特性的影响。Eu3+最佳掺杂浓度为nEu3+∶nLa3+=1∶7,5D0-7F2与5D0-7F1跃迁发射强度比为2.55。Eu3+掺杂使晶胞参数a和c呈线性变小,对c的影响大于a,使a/c比增大。Sr2+和Ba2+分别置换基质中的Ca2+可以形成完全固溶体,晶胞参数随Sr2+或Ba2+的置换量增加呈线性增大,使a/c比减小。各发射峰强度在Sr2+置换量为0.4 mol时出现极大值,但随Ba2+置换量的增加而不断增强,全置换后荧光强度最大。荧光体的色坐标为(0.638 5,0.353 0)。  相似文献   

4.
在弱还原气氛下采用高温固相法制备Ba0.955A l2-xGaxS i2O8:Eu2+(x=0~1.0)系列荧光粉,研究Ga3+置换A l3+对晶体结构和光谱特性的影响。Ga3+与A l3+以类质同相替代进入BaA l2S i2O8晶格形成连续固溶体,晶胞参数a,b,c,β和晶胞体积V均随Ga3+置换量呈线性增加。宽带激发光谱,覆盖范围为230~400 nm,可拟合成4个峰,表观峰值位于330 nm,基本不随Ga3+置换量变化;随着Ga3+置换量的增加,半高宽从93 nm减小至83 nm。发射光谱位于375~560 nm,可由422和456 nm两峰拟合而成,表观峰值位于434 nm,两拟合峰峰位均随Ga3+置换量呈线性红移,且拟合峰强度比呈线性递减。  相似文献   

5.
以α-Si3N4,SrCO3,Eu2O3为原料,采用碳热还原氮化法制备了Sr2Si5N8:Eu2+荧光粉.研究了材料的结构与光谱特性,分析了影响材料发光性能的工艺因素.结果表明,石墨粉含量和助熔剂的用量对Sr2Si5N8相的形成和发光性能有重要影响.当nc/nSr=1.5,助熔剂用量为4wt%时,合成样品的主晶相为正交晶系Sr2Si5N8,在400~550 nm可见光激发下,可发射峰值波长位于 609nm荧光.激发带的位置与Eu2+离子浓度无关,为400~550 nm之间的宽带激发;但发射强度随Eu2+离子浓度的增加而增加.Eu2+离子浓度达到5mol%时发射强度达最大值,在Eu2+离子浓度为2mol%~5mol%之间,观察到发射峰的红移现象.  相似文献   

6.
采用高温固相法制备了SrAl2Si2O8∶Eu2+系列荧光粉,研究了灼烧温度以及助熔剂硼酸浓度和激活剂Eu2+离子浓度对发光性能的影响,研究了SrAl2Si2O8的微结构。结果表明,以3.0wt%H3BO3为助熔剂,在1250℃灼烧3h可制备发光性能优良的SrAl2Si2O8∶Eu2+荧光粉,Eu2+离子的最佳掺杂浓度为2.5mol%,Eu2+离子浓度过大时的浓度猝灭是由电偶极-电四极之间的相互作用引起的。SrAl2Si2O8∶Eu2+的激发和发射光谱均为宽带谱,在280~380nm光的激发下,可发射峰值波长位于429nm的蓝色光。  相似文献   

7.
Ca10(Si2O7)3Cl2:Eu2+Mn2+单-基质白光荧光粉的发光性质   总被引:1,自引:0,他引:1  
用高温固相法合成了颜色可调的Ca10(Si2O7)3Cl2:Eu2+Mn2+荧光粉.研究了它的发光性质和Eu2+与Mn2+之间的能量传递.Eu2+离子在Ca10(Si2O7)3Cl2晶体中形成了峰值为426 nm和523 nm的5d→4f跃迁发光,Eu2+中心向Mn2+中心传递能量,敏化Mn2+离子4T1(4G)-6A1(6S)跃迁而产生585 nm的黄光发射.黄绿蓝3个发射带叠加在单一基质中实现了白光发射.3个发射带的激发谱范围位于250-480 nm处,Ca10(Si2O7)3Cl2:Eu2+Mn2+在紫外-近紫外波段(350~410 nm)范围内有很强的激发,是一种适合InGaN管芯激发的单一基质白光LED荧光粉.  相似文献   

8.
采用高温固相法在空气中合成了Ba1.97-yZn1-xMgxSi2O7∶0.03Eu,y Ce3+系列荧光粉。分别采用X-射线衍射和荧光光谱对所合成荧光粉的物相和发光性质进行了表征。在紫外光330~360 nm激发下,固溶体荧光粉Ba1.97-yZn1-xMgxSi2O7∶0.03Eu的发射光谱在350~725 nm范围内呈现多谱峰发射,360和500 nm处有强的宽带发射属于Eu2+离子的4f 65d1-4f 7跃迁,590~725 nm红光区窄带谱源于Eu3+的5D0-7FJ(J=1,2,3,4)跃迁,这表明,在空气气氛中,部分Eu3+在Ba1.97-yZn1-xMgxSi2O7基质中被还原成了Eu2+;当x=0.1时,荧光粉Ba1.97Zn0.9Mg0.1Si2O7∶0.03Eu的绿色发光最强,表明Eu3+被还原成Eu2+离子的程度最大。当共掺入Ce3+离子后,形成Ba1.97-yZn0.9Mg0.1Si2O7∶0.03Eu,y Ce3+荧光粉体系,其发光随着Ce3+离子浓度的增大由蓝绿区经白光区到达橙红区;发现名义组成为Ba1.96Zn0.9Mg0.1Si2O7∶0.03Eu,0.01Ce3+的荧光粉的色坐标为(0.323,0.311),接近理想白光,是一种有潜在应用价值的白光荧光粉。讨论了稀土离子在Ba2Zn0.9Mg0.1Si2O7基质中的能量传递与发光机理。  相似文献   

9.
Eu~(2+),Mn~(2+)共激活碱土镁硅酸盐基红色荧光粉的发光性能   总被引:1,自引:0,他引:1  
制备了以R3MgSi2O8(R=Ba,Sr,Ca)为基,Eu2+,Mn2+共激活的红色荧光粉并研究了其荧光性质。分别以Ba3MgSi2O8,Sr3MgSi2O8,Ca3MgSi2O8为基质时,由于晶体场环境不同,发光强度、发射峰产生相应变化。研究了以(Ba,Sr)3MgSi2O8为基的荧光粉中Ba,Sr相对量,及Eu2+,Mn2+浓度对发光性质的影响并探讨了Eu2+,Mn2+在基质中所处格位;结果表明,红光是由基质中处于九配位的Eu2+将能量传递给八面体六配位的Mn2+,而由Mn2+所发射的。  相似文献   

10.
采用高温固相法合成了系列单相Ca(1-x-y)Al2O4:Eu2+x,Nd3+y(0≤x≤0.045,0≤y≤0.0037)粉末样品,并表征了其发光特性.研究结果表明,样品的发射光谱为最大发射峰位于440nm的宽带谱,属于Eu2+的4f65d→4f7跃迁.通过对Eu2+,Nd3+掺杂量与样品发光性能之间关系的研究发现,Eu2+和Nd3+最佳掺杂量分别为x=0.00125和y=0.0025,并且Nd3+对改善蓝色长余辉材料CaAl4:Eu2+的余辉性能具有重要的作用.在最佳掺杂条件下,样品的余辉时间可达1000min,初始亮度大于1200mcd/m2,60min后发光粉的亮度仍然在10mcd/m2以上.利用正电子湮灭技术和热释光技术,研究了Eu2+和Nd3+对CaAl2O4:Eu2+,Nd3+材料的发光性能的影响.  相似文献   

11.
The transition-metal-catalyzed [2+2+2] cyclotrimerization of a diyne and an alkyne provides a convergent route to highly-substituted aromatic rings. This reaction possesses distinct drawbacks, especially low chemo- and regioselectivities, which hamper its application in combinatorial synthesis. These problems have been solved by the development of solid-supported [2+2+2]-cycloaddition reactions. If conducted on a solid-support, this reaction enables rapid combinatorial access to diverse sets of carbo- and heterocyclic small-molecule arrays. The scope of this methodology has been investigated by examining different immobilization strategies, different diyne precursors, and a variety of functionalized alkyne reaction partners. Overall, isoindoline, phthalan, and indan libraries were assembled in good to excellent yields and with high purities.  相似文献   

12.
Photoionization mass spectrometer techniques have been employed to study the charge transfer reactions: Xe+ + O2 → O+2 + Xe and O+2 + Xe → Xe+ + O2. The results show the reaction of Xe+(2P32) ions with O2 molecules is much more efficient than the reaction of Xe+(2P12) ions with O2 molecules. The charge transfer reaction of O+2 ions with Xe atoms was detected for O+2 ions in the a 4Πu state.  相似文献   

13.
Cycloheptyne-dicobalt hexacarbonyl complexes, substituted by propargylic ether functions, undergo 2 + 2 + 2 cycloaddition reactions with alkynes to give tricyclic benzocycloheptanes; an all-intramolecular version of this transformation is also possible.  相似文献   

14.
15.
Wang XN  Shen LT  Ye S 《Organic letters》2011,13(24):6382-6385
The enantioselective N-heterocyclic carbene-catalyzed formal [2 + 2] and [2 + 2 + 2] cycloaddition of ketenes and isothiocyanates were developed. Reaction with N-aryl isothiocyanates at room temperature favors the [2 + 2] cycloaddition, while reaction with N-benzoyl isothiocyanates at -40 °C favors the [2 + 2 + 2] cycloaddition.  相似文献   

16.
17.
Metal-mediated intracellular reactions are becoming invaluable tools in chemical and cell biology, and hold promise for strongly impacting the field of biomedicine. Most of the reactions reported so far involve either uncaging or redox processes. Demonstrated here for the first time is the viability of performing multicomponent alkyne cycloaromatizations inside live mammalian cells using ruthenium catalysts. Both fully intramolecular and intermolecular cycloadditions of diynes with alkynes are feasible, the latter providing an intracellular synthesis of appealing anthraquinones. The power of the approach is further demonstrated by generating anthraquinone AIEgens (AIE=aggregation induced emission) that otherwise do not go inside cells, and by modifying the intracellular distribution of the products by simply varying the type of ruthenium complex.  相似文献   

18.
It has been established that a cationic rhodium(I)/H8‐binap complex catalyzes the [3+2+2] cycloaddition of 1,6‐diynes with cyclopropylideneacetamides to produce cycloheptadiene derivatives through cleavage of cyclopropane rings. In contrast, a cationic rhodium(I)/(S)‐binap complex catalyzes the enantioselective [2+2+2] cycloaddition of terminal alkynes, acetylenedicarboxylates, and cyclopropylideneacetamides to produce spiro‐cyclohexadiene derivatives which retain the cyclopropane rings.  相似文献   

19.
Abstract

A new inorganic ion exchanger, lead antimonate has been synthesized having an Pb:Sb ratio of 1:5 and cation exchange capacity of 1.46 mequiv./g. It is fairly stable in water and dilute solutions of acids, bases and salts. Ion distribution studies on twenty metal ions have been determined on this gel at pH 1,2,3 and 5. The following mixtures have been separated: Mg2+ - Pb2+, Zn2+ - Pb2+, Zn2+ - Pb2+, Cu2+ - Pb2+, Al3+ - Pb2+, Zn2+ - Cd2+ and Mg2+ - Cd2+. Mg2+ and Al3+ were removed with 0.4 M ammonium nitrate, Cu2+ and Zn2+ with 0.4 M ammonium nitrate + 0.1M nitric acid (1:1), Pb2+ with 0.5M nitric acid and Cd2+ with 0.25M nitric acid. A tentative structure of this material is proposed on the basis of chemical analysis, pH titrations, thermogravimetry and IR spectrophotometry.  相似文献   

20.
Participation of alkenes and allenes in [2+2+2] cycloaddition reactions has attracted much attention recently. This version of the well‐established alkyne cyclotrimerization renders interesting products, such as cyclohexadienes and other polycycles, through cascade processes. Many mechanistic variations are observed when using certain metal complexes as catalysts. The frequent generation of stereogenic centers has prompted the development of efficient asymmetric versions. This Minireview summarizes the efforts reported to date on the use of double bonds as partners in [2+2+2] cyclotrimerizations.  相似文献   

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