Search

Article

x

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Temperature dependent Raman spectra and micro-structure study of hexagonal MgTiO3 crystal

Wang Li-Hong You Jing-Lin Wang Yuan-Yuan Zheng Shao-Bo Simon Patrick Hou Min Ji Zi-Fang

Citation:

Temperature dependent Raman spectra and micro-structure study of hexagonal MgTiO3 crystal

Wang Li-Hong, You Jing-Lin, Wang Yuan-Yuan, Zheng Shao-Bo, Simon Patrick, Hou Min, Ji Zi-Fang
PDF
Get Citation

(PLEASE TRANSLATE TO ENGLISH

BY GOOGLE TRANSLATE IF NEEDED.)

  • Hexagonal MgTiO3 crystal powder is prepared by solid-phase sintering method and characterized by X-ray diffraction method. Temperature dependent crystal cell parameters (2931473 K) are deduced from the results of in-situ X-ray diffraction measurement with temperature increasing. In-situ Raman spectra are recorded (2931623 K) at various temperatures and all the vibrational modes were assigned with the aid of theoretical calculation of first principles. It is demonstrated that temperature dependent Raman spectra are sensitive and can show the delicate variations of different bond lengths and angles between various atoms of local structure. But the relationship between Raman shift and bond length and angle can be independent of temperature. Those observed Raman vibrational bands being wider and overlapped with the increasing temperature reveals the enhanced amplitude of atomic instantaneous movement, which leads atoms to diffuse more heavily and the stability of the crystal to decrease, although MgTiO3 remains hexagonal crystal type.
    [1]

    Jong-Gab Baek, Tetsuhiko Isobe, Mamoru Senna 1996 Solid State Ionics 90 269

    [2]

    Parthasarathy G 2007 Materials Letters 61 4329

    [3]
    [4]
    [5]

    Wang M N, Qiu T, Yang J, Shen C Y 2007 China Ceramics 43 15 (in Chinese) [王美娜、丘 泰、杨 建、沈春英 2007 中国陶瓷 43 15]

    [6]

    Liu X G, Chen D M, Tong J F, Li B W 2006 China Powder Science and Technology 1 5 (in Chinese) [刘晓光、陈大明、仝建峰、李宝伟 2006 中国粉体技术 1 5]

    [7]
    [8]

    Papthasarathy G, Manorama S V 2006 Indian Academy of Sciences 19

    [9]
    [10]

    Zhu C G, Chen Y H, Chu D B 2005 Chinese Journal of Inorganic Chemistry 21 919 (in Chinese) [朱传高、陈永红、褚道葆 2005 无机化学学报 21 919]

    [11]
    [12]

    Wang Y M, Li M Q, Peng J Z 1996 Powder Technology 2 13 (in Chinese) [王毅敏、李懋强、彭建中 1996 粉体技术 2 13]

    [13]
    [14]
    [15]

    Deng C, Zhang S R, Tang B 2009 Electronic Components and Materials 28 9 (in Chinese) [邓 超、张树人、唐 斌 2009 电子元件与材料 28 9]

    [16]
    [17]

    Hirata T, Ishioka K, Kitajima M 1996 Journal of Solid State Chemistry 124 353

    [18]

    Eung Soo Kim, Chang Jun Jeon 2010 Journal of the European Ceramic Society 30 341

    [19]
    [20]
    [21]

    Freer R, Azough F 2008 Journal of the European Ceramic Society 28 1433

    [22]

    Xiang W, Shan Q, Leonid Dubrovinsky 2010 Geoscience Frontiers 1 69

    [23]
    [24]
    [25]

    Yuan B C, Cheng L H, Shih Hung Lin 2009 Journal of Alloys and Compounds 480 897

    [26]
    [27]

    Qi J Q, Li W, Wang Y L, Du Z L, Li L S 2002 Journal of Inorganic Materials 12 1199 (in Chinese) [齐建全、李 雯、王永力、桂治轮、李龙土 2002 无机材料学报 12 1199]

    [28]

    Ferri E A V, Sczancoski J C, Cavalcante L S, Paris E C, Espinosa J W M, de A T Figueiredo, Pizani P S, Mastelaro V R, Varelab J A, Longo E 2009 Materials Chemistry and Physics 117 192

    [29]
    [30]

    Wang C H, Jing X P, Lv J 2007 Advanced Functional Materials 4 54 (in Chinese) [王春海、荆西平、吕 进 2007 第六届功能 材料及其应用学术会议 4 54] 〖17] Parthasarathy G 2007 Materials Letters 61 3208

    [31]
    [32]
    [33]

    You J L, Jiang G C, Chen H, Xu K D 2006 Rare Metals 25 431

    [34]
    [35]

    YangY, LiuY L, Zhu K, Zhang L Y, Ma S Y, Liu J, Jiang Y J 2010 Chin. Phys. B 19 037802

    [36]
    [37]
    [38]

    Simon P, Moulin B, Buixaderas E, Raimboux, Herault E, Chazallon B, Cattey H, Magneron N, Oswalt J, Hocrelle D 2003 Journal of Raman Spectroscopy 34 497

    [39]

    Jade 5.0, Materials Data Inc., MDI XRD Pattern Processing Software

    [40]
    [41]
    [42]

    Milman V, Refson K, Clark S J, Pickard C J, Yates J R, Gao S P, Hasnip P J, Probert M I J, Perlov A, Segall M D 2010 Journal of Molecular Structure 954 22

    [43]
    [44]

    Segall M D, Philip, Lindan J D, Probert M J, Pickard C J, Hasnip P J, Clark S J, Payne M C 2002 Journal of Physics: Condensed Matter 14 2717

    [45]

    Stefano Baroni, Stefano de Gironcoli, Andrea Dal Corso 2001 Reviews of Modern Physics 73 515

    [46]
    [47]

    Monkhorst H J, Pack J D 1976 Physical Review B 13 5188

    [48]
    [49]
    [50]

    Ruslan P Liferovich, Roger H 2004 Acta Crystallographica B 60 496

    [51]
    [52]

    Chen Y S, Yang S E, Wang J H, Lu J X, Gao X Y, Gu J H 2010 Chin. Phys. B 19 057205

    [53]

    Materials Studio Materials Studio Overview Web page: www.Materials-studio.com

  • [1]

    Jong-Gab Baek, Tetsuhiko Isobe, Mamoru Senna 1996 Solid State Ionics 90 269

    [2]

    Parthasarathy G 2007 Materials Letters 61 4329

    [3]
    [4]
    [5]

    Wang M N, Qiu T, Yang J, Shen C Y 2007 China Ceramics 43 15 (in Chinese) [王美娜、丘 泰、杨 建、沈春英 2007 中国陶瓷 43 15]

    [6]

    Liu X G, Chen D M, Tong J F, Li B W 2006 China Powder Science and Technology 1 5 (in Chinese) [刘晓光、陈大明、仝建峰、李宝伟 2006 中国粉体技术 1 5]

    [7]
    [8]

    Papthasarathy G, Manorama S V 2006 Indian Academy of Sciences 19

    [9]
    [10]

    Zhu C G, Chen Y H, Chu D B 2005 Chinese Journal of Inorganic Chemistry 21 919 (in Chinese) [朱传高、陈永红、褚道葆 2005 无机化学学报 21 919]

    [11]
    [12]

    Wang Y M, Li M Q, Peng J Z 1996 Powder Technology 2 13 (in Chinese) [王毅敏、李懋强、彭建中 1996 粉体技术 2 13]

    [13]
    [14]
    [15]

    Deng C, Zhang S R, Tang B 2009 Electronic Components and Materials 28 9 (in Chinese) [邓 超、张树人、唐 斌 2009 电子元件与材料 28 9]

    [16]
    [17]

    Hirata T, Ishioka K, Kitajima M 1996 Journal of Solid State Chemistry 124 353

    [18]

    Eung Soo Kim, Chang Jun Jeon 2010 Journal of the European Ceramic Society 30 341

    [19]
    [20]
    [21]

    Freer R, Azough F 2008 Journal of the European Ceramic Society 28 1433

    [22]

    Xiang W, Shan Q, Leonid Dubrovinsky 2010 Geoscience Frontiers 1 69

    [23]
    [24]
    [25]

    Yuan B C, Cheng L H, Shih Hung Lin 2009 Journal of Alloys and Compounds 480 897

    [26]
    [27]

    Qi J Q, Li W, Wang Y L, Du Z L, Li L S 2002 Journal of Inorganic Materials 12 1199 (in Chinese) [齐建全、李 雯、王永力、桂治轮、李龙土 2002 无机材料学报 12 1199]

    [28]

    Ferri E A V, Sczancoski J C, Cavalcante L S, Paris E C, Espinosa J W M, de A T Figueiredo, Pizani P S, Mastelaro V R, Varelab J A, Longo E 2009 Materials Chemistry and Physics 117 192

    [29]
    [30]

    Wang C H, Jing X P, Lv J 2007 Advanced Functional Materials 4 54 (in Chinese) [王春海、荆西平、吕 进 2007 第六届功能 材料及其应用学术会议 4 54] 〖17] Parthasarathy G 2007 Materials Letters 61 3208

    [31]
    [32]
    [33]

    You J L, Jiang G C, Chen H, Xu K D 2006 Rare Metals 25 431

    [34]
    [35]

    YangY, LiuY L, Zhu K, Zhang L Y, Ma S Y, Liu J, Jiang Y J 2010 Chin. Phys. B 19 037802

    [36]
    [37]
    [38]

    Simon P, Moulin B, Buixaderas E, Raimboux, Herault E, Chazallon B, Cattey H, Magneron N, Oswalt J, Hocrelle D 2003 Journal of Raman Spectroscopy 34 497

    [39]

    Jade 5.0, Materials Data Inc., MDI XRD Pattern Processing Software

    [40]
    [41]
    [42]

    Milman V, Refson K, Clark S J, Pickard C J, Yates J R, Gao S P, Hasnip P J, Probert M I J, Perlov A, Segall M D 2010 Journal of Molecular Structure 954 22

    [43]
    [44]

    Segall M D, Philip, Lindan J D, Probert M J, Pickard C J, Hasnip P J, Clark S J, Payne M C 2002 Journal of Physics: Condensed Matter 14 2717

    [45]

    Stefano Baroni, Stefano de Gironcoli, Andrea Dal Corso 2001 Reviews of Modern Physics 73 515

    [46]
    [47]

    Monkhorst H J, Pack J D 1976 Physical Review B 13 5188

    [48]
    [49]
    [50]

    Ruslan P Liferovich, Roger H 2004 Acta Crystallographica B 60 496

    [51]
    [52]

    Chen Y S, Yang S E, Wang J H, Lu J X, Gao X Y, Gu J H 2010 Chin. Phys. B 19 057205

    [53]

    Materials Studio Materials Studio Overview Web page: www.Materials-studio.com

  • [1] Yi Qi-Ru, Xiong Pei-Yu, Wang Huan-Hua, Li Gang, Wang Yun-Kai, Dong En-Yang, Chen Yu, Shen Zhi-Bang, Wu Yun, Yuan Jie, Jin Kui, Gao Chen. Microstructure study of YBa2Cu3O7-δ thin film with synchrotron-based three-dimensional reciprocal space mapping. Acta Physica Sinica, 2023, 72(4): 046101. doi: 10.7498/aps.72.20221776
    [2] Zhang Mao-Lin, Ma Wan-Yu, Wang Lei, Liu Zeng, Yang Li-Li, Li Shan, Tang Wei-Hua, Guo Yu-Feng. Investigation of high-temperature performance of WO3/β-Ga2O3 heterojunction deep-ultraviolet photodetectors. Acta Physica Sinica, 2023, 72(16): 160201. doi: 10.7498/aps.72.20230638
    [3] Li Zhi-Qiang, Tan Xiao-Yu, Duan Xin-Lei, Zhang Jing-Yi, Yang Jia-Yue. Deep learning molecular dynamics simulation on microwave high-temperature dielectric function of silicon nitride. Acta Physica Sinica, 2022, 71(24): 247803. doi: 10.7498/aps.71.20221002
    [4] Li Ming-Zhu, Cai Xiao-Wu, Zeng Chuan-Bin, Li Xiao-Jing, Li Duo-Li, Ni Tao, Wang Juan-Juan, Han Zheng-Sheng, Zhao Fa-Zhan. Effect of high-temperature on holding characteristics in MOSFET ESD protecting device. Acta Physica Sinica, 2022, 71(12): 128501. doi: 10.7498/aps.71.20220172
    [5] Li Jia-Hong, Sun Gui-Hua, Zhang Qing-Li, Wang Xiao-Fei, Zhang De-Ming, Liu Wen-Peng, Gao Jin-Yun, Zheng Li-Li, Han Song, Chen Zhao, Yin Shao-Tang. Effect of annealing atmosphere on the structure and spectral properties of GdScO3 and Yb:GdScO3 crystals. Acta Physica Sinica, 2022, 71(16): 164206. doi: 10.7498/aps.71.20220196
    [6] Song Ting, Sun Xiao-Wei, Wei Xiao-Ping, Ouyang Yu-Hua, Zhang Chun-Lin, Guo Peng, Zhao Wei. High-pressure structure prediction and high-temperature structural stability of periclase. Acta Physica Sinica, 2019, 68(12): 126201. doi: 10.7498/aps.68.20190204
    [7] Zhou Hai-Liang, Gu Qing-Tian, Zhang Qing-Hua, Liu Bao-An, Zhu Li-Li, Zhang Li-Song, Zhang Fang, Xu Xin-Guang, Wang Zheng-Ping, Sun Xun, Zhao Xian. Raman spectroscopic study on the micro-structure of NH4H2PO4 and ND4D2PO4 crystals. Acta Physica Sinica, 2015, 64(19): 197801. doi: 10.7498/aps.64.197801
    [8] Liang Yuan, Xing Huai-Zhong, Chao Ming-Ju, Liang Er-Jun. Syntheses of negative thermal expansion materials Sc2(MO4)3 (M=W, Mo) with a CO2 laser and their Raman spectra. Acta Physica Sinica, 2014, 63(24): 248106. doi: 10.7498/aps.63.248106
    [9] Zhang Peng, Liu Qin-Zhuang, Su Fu-Hai, Liu Qiang-Chun, Liu Zhe, Song Wen-Hai, Dai Jian-Ming. Mn-doping effects on structural, optical and magnetic properties of BaSn1-xMnxO3. Acta Physica Sinica, 2013, 62(2): 027101. doi: 10.7498/aps.62.027101
    [10] Liu Min, Yu Hua, Zhang Pan, Zhang Ming, Liu Yan, Zhao Li-Juan. Effects of Al2O3 on micro-structure and crystallization of oxyfluoride glass. Acta Physica Sinica, 2012, 61(11): 118102. doi: 10.7498/aps.61.118102
    [11] Yuan Chang-Lai, Liu Xin-Yu, Ma Jia-Feng, Zhou Chang-Rong. Study on the microstructures and electrical properties of Bi0.5Ba0.5Fe0.5Ti0.49Nb0.01O3 thermistor ceramic. Acta Physica Sinica, 2010, 59(6): 4253-4260. doi: 10.7498/aps.59.4253
    [12] Zhang Hong-Hua, Zhang Chong-Hong, Li Bing-Sheng, Zhou Li-Hong, Yang Yi-Tao, Fu Yun-Chong. Optical properties revealing annealing behavior of high-temperature He-implantation induced defects in silicon carbide. Acta Physica Sinica, 2009, 58(5): 3302-3308. doi: 10.7498/aps.58.3302
    [13] Liu Xue-Qin, Han Guo-Jian, Huang Chun-Kui, Lan Wei. Thickness dependence of microstructure for La0.9Sr0.1MnO3/Si films determined by micro-Raman spectroscopy. Acta Physica Sinica, 2009, 58(11): 8008-8013. doi: 10.7498/aps.58.8008
    [14] Zhou Wen-Ping, Wan Song-Ming, Zhang Xia, Zhang Qing-Li, Sun Dun-Lu, Qiu Huai-Li, You Jing-Lin, Yin Shao-Tang. Study of growth units and the growth habit of PbMoO4 crystal using high temperature Raman spectra. Acta Physica Sinica, 2008, 57(11): 7305-7309. doi: 10.7498/aps.57.7305
    [15] Song Xiao-Shu, Cheng Xin-Lu, Yang Xiang-Dong, Linghu Rong-Feng. Line intensities of 3000—0200 and 1001—0110 transition bands of 14N216O at high temperature. Acta Physica Sinica, 2007, 56(8): 4428-4434. doi: 10.7498/aps.56.4428
    [16] Zhang Hong-Di, An Yu-Kai, Mai Zhen-Hong, Gao Ju, Hu Feng-Xia, Wang Yong, Jia Quan-Jie. Thickness effect on structure and magnetic properties of La0.8Ca0.2MnO3/SrTiO3 films. Acta Physica Sinica, 2007, 56(9): 5347-5352. doi: 10.7498/aps.56.5347
    [17] Li Gong-Ping, Zhang Mei-Ling. Energetics and structures of high-temperature copper cluster studied by Monte Carlo method. Acta Physica Sinica, 2005, 54(6): 2873-2876. doi: 10.7498/aps.54.2873
    [18] Sun Dun-Lu, Qiu Huai-Li, Hang Yin, Zhang Lian-Han, Zhu Shi-Ning, Wang Ai-Hua, Yin Shao-Tang. Study on laser-micro-Raman spectra in near-stoichiometric LiNbO3 crystals. Acta Physica Sinica, 2004, 53(7): 2270-2274. doi: 10.7498/aps.53.2270
    [19] Ding Pei, Liang Er-Jun, Zhang Hong-Rui, Liu Yi-Zhen, Liu Hui, Guo Xin-Yong, Du Zu-Liang. Growth mechanism and Raman spectroscopic study of “interlinked-cone" shaped CNx nanotubes. Acta Physica Sinica, 2003, 52(1): 237-241. doi: 10.7498/aps.52.237
    [20] WANG YONG-QIAN, CHEN CHANG-YONG, CHEN WEI-DE, YANG FU-HUA, DIAO HONG-WEI, XU ZHEN-JIA, ZHANG SHI-BIN, KONG GUANG-LIN, LIAO XIAN-BO. THE MICROSTRUCTURE AND ITS HIGH-TEMPERATURE ANNEALING BEHAVIOURS OF a-Si∶O∶H FILM. Acta Physica Sinica, 2001, 50(12): 2418-2422. doi: 10.7498/aps.50.2418
Metrics
  • Abstract views:  9153
  • PDF Downloads:  959
  • Cited By: 0
Publishing process
  • Received Date:  13 January 2011
  • Accepted Date:  23 January 2011
  • Published Online:  05 May 2011

/

返回文章
返回