期刊文献+

La_(0.5)Ca_(0.5)MnO_3钙钛矿微晶的NH_4^+辅助水热合成及晶面调控

NH_4^+ assistant hydrothermal synthesis and facet tailoring of La_(0.5)Ca_(0.5)MnO_3 perovskite microcrystal
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摘要 为了研究特殊晶面与晶体材料的物理性质的关系,需要合成具有特殊晶面的晶体。采用水热法,通过调节反应过程中温度、尿素和KOH的质量,合成了具有不同形状和晶面的La_(0.5)Ca_(0.5)MnO_3钙钛矿微晶。利用X射线衍射仪、扫描电子显微镜对晶体的形貌、结构进行了表征,比较了不同温度、不同尿素和KOH质量对产物结构和形状等的影响,并对反应机理进行了研究。提出了制备八面体形状La_(0.5)Ca_(0.5)MnO_3微晶的最优方案,即温度为260℃、尿素质量为2.25g,且KOH质量为9g。为研究特殊晶面与材料的物化性质和材料的构效关系提供了依据。 In order to study the relationship of material’s physical properties and materials special facet,the special facets need to be obtained firstly. La0.5Ca0.5MnO3 microcrystals with different morphologies were obtained by hydrothermal method using dif-ferent concentration of urea, KOH and adjusting the reaction temperature. Characterization methods of powder X-ray diffraction (XRD),scanning electron microscope (SEM) were used to show the crystal structure and morphology information for as-pre-pared products. The synthesis condition and reactant concentration play important roles in crystal facet tailoring process. The optimal route to prepare octahedral shape of La0.5Ca0.5MnO3 microcrystal was discussed and its corresponding facet tailoring mecha-nism was also set up, which is important for further study and application on the relationship of structure and properties of perovskite structure oxides.
出处 《中国科技论文》 CAS 北大核心 2016年第6期601-605,共5页 China Sciencepaper
基金 国家自然科学基金资助项目(21427802 21131002 21201075) 高等学校博士学科点专项科研基金资助项目(20110061130005)
关键词 无机化学 水热合成 晶面调控 钙钛矿结构 inorganic chemistry hydrothermal synthesis facet tailoring perovskite structure
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参考文献26

  • 1DHANARAJ G, BYRAPPA K, PRASAD V, et al.Springer handbook of crystal growth [M]. Springer-Verlag, Berlin, Heidelberg, 2010.
  • 2QUAN Zewei, WANG Yuxuan, FANG Jiye. High-indexfaceted noble metal nanocrystals [J]. Accounts ofChemical Research, 2013, 46(2) : 191-202.
  • 3KUANG Qin, WANG Xue, JIANG Zhiyuan, et al.High-energy-surface engineered metal oxide micro- andnanocrystallites and their applications [J]. Accounts ofChemical Research, 2014, 47(2) : 308-318.
  • 4ZHOU Zhiyou, HUANG Zhizhong, CHEN Dejun, etal. High-index faceted platinum nanocrystals supportedon carbon black as highly efficient catalysts for ethanolelectrooxidation [J]. Angewandte Chemie InternationalEdition, 2010, 49: 411-414.
  • 5LENG Mei, LIU Mingzhu, ZHANG Yibo, et al. Polyhedral50-facet Cu2〇 microcrystals partially enclosed by{311} high-index planes: synthesis and enhanced catalyticCO oxidation activity [J]. Journal of the AmericanChemical Society, 2010, 132: 17084-17087.
  • 6VOORHOEVE R, JOHNSON D, REMEIKA J, et al.Perovskite oxides: materials science in catalysis [J].Science, 1977, 195: 827-833.
  • 7ROYER S, DUPREZ D. Catalytic oxidation of carbonmonoxide over transition metal oxides [J]. Chem-CatChem, 2011, 3 : 24-65.
  • 8张倩,陈静,颜冬,李箭.固体氧化物燃料电池钴系双钙钛矿阴极材料研究进展[J].中国科技论文,2015,10(4):457-462. 被引量:3
  • 9郭锡坤,史作辉,陈耀文.La_(0.8)Ba_(0.2)Ni_(0.6)M_(0.4)O_3系列钙钛矿型复合氧化物的制备与三效催化性能[J].中国科技论文在线,2009,4(12):910-914. 被引量:2
  • 10ZHU Junjiang, LI Hailong, ZHONG Linyun, et al.Perovskite oxides: preparation, characterizations, andapplications in heterogeneous catalysis [J]. ACS Catalysis,2014, 4 : 2917-2940.

二级参考文献41

  • 1喻瑶,龚茂初,郭家秀,林涛,袁书华,陈耀强.Zr_xTi_xAl_(1-2x)O_2的制备及其在三效催化剂上的应用[J].无机化学学报,2007,23(8):1453-1456. 被引量:10
  • 2Suzuki T, Hasan Z, Funahashi Y, et al. Impact of an- ode microstructure on solid oxide fuel cells [J]. Sci- ence, 2009, 325(5942): 852-855.
  • 3Zhou W, Ran R, Cai R, et al. Effect of a reducing a- gent for silver on the electrochemical activity of an Ag/ Ba0. 5 Sr0. s Coo. 8 Fe0. 2 03 e electrode prepared by electroless deposition technique[J]. Journal of Power Sources, 2009, 186(2) : 244-251.
  • 4Zhou Wei, Ran Ran, Shao Zongping. Progress in un- derstanding and development of Ba0.7Sr0. s Coo. 8 Fe0. 20a- based cathodes for intermediate~temperature solid-oxide fuel cells.- a review [J]. Journal of Power Sources, 2009, 192(2): 231-246.
  • 5Choi S, Yoo S, Kim J, et al. Highly efficient and ro- bust cathode materials for low-temperature solid oxide fuel cells.- PrBa0. s Sr0. s Co2~ Fen Os+[J]. Scientific Re ports, 2013, 3: article No. 2426.
  • 6Tarancon A, Burriel M, Santiso J, et al. Advances in layered oxide cathodes for intermediate temperature sol id oxide fuel cells [J]. Journal of Materials Chemistry, 2010, 20(19): 3799-3813.
  • 7Taskin A A, Lavrov A N, Ando Y. Achieving fast oF ygen diffusion in perovskites by cation ordering [J]. Applied Physics Letters, 2005, 86(9) .. 3.
  • 8Marrero-Jerez J, Pefia-Martinez J, N6fiez P. Study of the oxygen desorption from GdBal SrCo20s+e (z = 0, 0. 25, 0. 5 and 1) ~ effect of the Sr-content on the oxida- tion state of cobalt ions [J],Journal of Alloys and Corn pounds, 2014, 606.. 269-272.
  • 9Parfitt D, Chroneos A, Tarancon A, et al. Oxygen ion diffusion in cation ordered/disordered GdBaCo2Os+e[J]. Journal of Materials Chemistry, 2011, 21 (7): 2183 2186.
  • 10Shiiba H, Nakayama M, Kasuga T, et al. Calculation of arrangement of oxygen ions and vacancies in double perovskite GdBaCo2Os+e by first-principles DFT with Monte Carlo simulations [J ]. Physical Chemistry Chemical Physics, 2013, 15(25): 10494-10499.

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