 
 Journal of Inorganic Materials ›› 2021, Vol. 36 ›› Issue (2): 188-196.DOI: 10.15541/jim20200268
Special Issue: 【信息功能】纪念殷之文先生诞辰105周年虚拟学术专辑
• RESEARCH PAPER • Previous Articles Next Articles
					
													MENG Meng1,2,3( ), QI Qiang1,4, DING Dongzhou1,5(
), QI Qiang1,4, DING Dongzhou1,5( ), HE Chongjun2,3(
), HE Chongjun2,3( ), ZHAO Shuwen1, WAN Bo1, CHEN Lu1, SHI Junjie1,5, REN Guohao1,5
), ZHAO Shuwen1, WAN Bo1, CHEN Lu1, SHI Junjie1,5, REN Guohao1,5
												  
						
						
						
					
				
Received:2020-05-15
															
							
																	Revised:2020-08-03
															
							
															
							
																	Published:2021-02-20
															
							
																	Online:2020-09-09
															
						About author:MENG Meng(1994-), male, Master candidate. E-mail: 865770183@qq.com				
													Supported by:CLC Number:
MENG Meng, QI Qiang, DING Dongzhou, HE Chongjun, ZHAO Shuwen, WAN Bo, CHEN Lu, SHI Junjie, REN Guohao. Twisted Growth, Component Segregation and Characteristics of Gd3(Al,Ga)5O12:Ce Scintillation Crystal[J]. Journal of Inorganic Materials, 2021, 36(2): 188-196.
| Sample | nGd : nAl : nGa | 
|---|---|
| Melt | 3.0 : 2.3 : 2.7 | 
| Twisted growth crystal | 3.00 : 3.57 : 0.83 | 
Table 1 Component analysis data by Inductively Coupled Plasma Optical Emission Spectrum (ICP-OES) of polycrystal twisted growth samples
| Sample | nGd : nAl : nGa | 
|---|---|
| Melt | 3.0 : 2.3 : 2.7 | 
| Twisted growth crystal | 3.00 : 3.57 : 0.83 | 
| Sample | nGd : nA : nGa | 
|---|---|
| Melt | 3.0 : 2.3 : 2.7 | 
| Crystal head | 3.00 : 3.56 : 1.57 | 
| Crystal tail | 3.0 : 2.3 : 2.7 | 
Table 2 Component analysis data by Inductively Coupled Plasma Optical Emission Spectrum (ICP-OES) of crystal head and tail samples
| Sample | nGd : nA : nGa | 
|---|---|
| Melt | 3.0 : 2.3 : 2.7 | 
| Crystal head | 3.00 : 3.56 : 1.57 | 
| Crystal tail | 3.0 : 2.3 : 2.7 | 
| Spectrum | Mole fraction/mol% | Ratio of ions | |||
|---|---|---|---|---|---|
| Gd | Ce | Al+Ga | O | Gd:(Al+Ga):O | |
| 1 (inclusion) | 20.61 | - | 19.39 | 60 | 1 : 1 : 3 | 
| 2 (matrix) | 14.97 | - | 25.03 | 60 | 3 : 5 : 12 | 
Table 3 Component analysis data by Electronic Differential System (EDS) of GAGG:Ce crystal
| Spectrum | Mole fraction/mol% | Ratio of ions | |||
|---|---|---|---|---|---|
| Gd | Ce | Al+Ga | O | Gd:(Al+Ga):O | |
| 1 (inclusion) | 20.61 | - | 19.39 | 60 | 1 : 1 : 3 | 
| 2 (matrix) | 14.97 | - | 25.03 | 60 | 3 : 5 : 12 | 
 
																													Fig. 9 X-ray excited spectra of partial crystal and ceramics (a) Head and tail of partial crystal; (b) GdAl0.5Ga0.5O3:Ce (GAGP:Ce), Gd3Al2.5Ga2.5O3:Ce (GAGG:Ce), and Gd4Al2O9:Ce (GAM:Ce)
 
																													Fig. 11 Transmission and X-ray excited spectra of GAGG:1% crystal at room temperature Black solid line representing the transmittance; Red solid line representing the X-ray excited spectra; Blue solid dots representing the theoretical limit of transmittance calculated from the measured refractive indices N
| Parameter | λ/nm | |||||
|---|---|---|---|---|---|---|
| 400 | 475 | 520 | 575 | 625 | 700 | |
| n | 1.951 | 1.919 | 1.91 | 1.904 | 1.9 | 1.898 | 
| T/% | 81.17 | 81.97 | 82.18 | 82.34 | 82.43 | 82.48 | 
Table 4 Refractive index and theoretical transmittance of GAGG:1%Ce crystal
| Parameter | λ/nm | |||||
|---|---|---|---|---|---|---|
| 400 | 475 | 520 | 575 | 625 | 700 | |
| n | 1.951 | 1.919 | 1.91 | 1.904 | 1.9 | 1.898 | 
| T/% | 81.17 | 81.97 | 82.18 | 82.34 | 82.43 | 82.48 | 
 
																													Fig. 13 GAGG:1%Ce crystal time behavior (a) Light output curve at different time Gates and its fitted line; (b) Scintillation decay curve and its fitted line
| [1] | MENG MENG, QI QIANG, DING DONG-ZHOU, et al. Research progress on novel scintillation crystal Gd3(Al,Ga)5O12:Ce3+. Journal of Synthetic Crystals, 2019,48(8):1386-1394. | 
| [2] | VAN EIJK C. Inorganic Scintillators in Positron Emission Tomography. Radiation Detectors for Medical Applications. Netherland: Springer Netherlands, 2006: 259-274. | 
| [3] | KAMADA K, TAKAYUKI A, YANAGIDA T, et al. 2 inch diameter single crystal growth and scintillation properties of Ce:Gd3Al2Ga3O12. Journal of Crystal Growth, 2012,352(1):88-90. | 
| [4] | TAMAGAWA Y, INUKAI Y, OGAWA I, et al. Alpha-gamma pulse-shape discrimination in Gd3Al2Ga3O12:Ce3+ crystal scintillator using shape indicator. Nuclear Instruments and Methods in Physics Research, 2015,795(21):192-195. | 
| [5] | KOCHURIKHIN V, KAMADA K, IVANOV M, et al. Czochralski growth of 4-inch diameter Ce:Gd3Al2Ga3O12single crystals for scintillator applications. Journal of Crystal Growth, 2020,531:1. | 
| [6] | FENG DA-JIAN. Study on the growth and scintillation properties of Ce:GAGG crystal. Piezoelectrics and Acoustooptics, 2016,38(3):430-432. | 
| [7] | WANG CHAO, WU YUN-TAO, DING DONG-ZHOU, et al. Optical and scintillation properties of ce-doped (Gd2Y1)Ga2.7Al2.3O12, single crystal grown by Czochralski method. Nuclear Instruments and Methods in Physics Research A, 2016,820:8-13. | 
| [8] | YUAN HANG, CHEN YU-XIAO, WANG YING-JIE, et al. Inorganic scintillator gadolinium gallium aluminum garnet (GAGG)’s performance research and application. Modern Industrial Economy and Informationization, 2018,8(11):24-26. | 
| [9] | SHISHIDO T, OKAMURA K, YAJIMA S. Gd3Al5O12 phase obtained by crystallization of amorphous Gd2O3·5/3Al2O3. J. Am. Ceram. Soc., 1978,61(7/8):37-375. | 
| [10] | ASADIAN M, HAJIESMAEILBAIGI F, MIRZAEI N, et al. Composition and dissociation processes analysis in crystal growth of Nd:GGG by the Czochralski method. Journal of Crystal Growth, 2010,312(9):1645-1650. | 
| [11] | DIGIUSEPPE A, SOLED L, WENNER M, et al. Phase diagram relationships of the garnet-perovskite transformation in the Gd2O3-Ga2O3 and Sm2O3-Ga2O3 systems. Progress in Crystal Growth and Characterization of Materials, 1980,49(4):746-748. | 
| [12] | DING DONG-ZHOU, LI HUAN-YING, QIN LAI-SHUN, et al. Research on the defects in LuxY1-xAlO3:Ce crystals. Journal of Inorganic Materials, 2010,25(10):1021-1024. | 
| [13] | KAMADA K, NIKL M, KUROSAWA S, et al. Alkali earth co-doping effects on luminescence and scintillation properties of Ce-doped Gd3Al2Ga3O12 scintillator. Optical Materials, 2015,41(13):63-66. | 
| [14] | ZHANG YE, CHEN XIAN-QIANG, QIN HAI-MING, et al. Fabrication of Ce-doped Gd3(Al,Ga)5O12 powders using Co-precipitation Method. Journal of Inorganic Materials, 2016,31(10):1151-1156. | 
| [15] | KUCERA M, HANUS M, ONDERISINOVA Z, et al. Energy transfer and scintillation properties of Ce3+ doped (Lu,Y,Gd)3(Al,Ga)5O12 multicomponent garnets. IEEE Transactions on Nuclear Science, 2014,61(1):282-289. | 
| [16] | VERWEIJ J, COHEN M, BOUTTET D, et al. Luminescence properties of GdAlO3:Ce powders. Chemical Physics Letters, 1995,239(1/2/3):51-55. | 
| [17] | SINHA A, SHARMA B, GOPALAN P, et al. Study on phase evolution of GdAl1-xGaxO3 system. Journal of Alloys and Compounds, 2009,492(2010):325-330. | 
| [18] | ETIENNETTE A, RAMUNAS A, ANDREI F, et al. Excitation transfer engineering in Ce-doped oxide crystalline scintillators by codoping with alkali-earth ions. Physica Status Solidi A, 2018,215(7):1700798. | 
| [19] | KOZLOVA N S, BUSANOV O A, ZABELINA E V, et al. Optical properties and refractive indices of Gd3Al2Ga3O12:Ce3+ crystals. Crystal Lography Reports, 2016,61(3):474-478. | 
| [20] | ZELMON D E, SMALL D L, PAGE R. Refractive-index measurements of undoped yttrium aluminum garnet from 0.4- 5.0 μm. Applied Optics, 1998,37(21):4933-4935. URL PMID | 
| [21] | ZHANG GUO-QING, YANG FAN, WU YUN-TAO, et al. Influence of F/Cl ratio on the crystal growth and luminescence properties of PbFCl crystals. Journal of Inorganic Materials, 2014,29(2):162-166. | 
| [22] | YOSHIHO M, KAMADA K, SHOJI Y, et al. Effect of Mg co-doping on scintillation properties of Ce:Gd3(Ga,Al)5O12single crystals with various Ga/Al ratios. Journal of Crystal Growth, 2017,468:420-423. | 
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