Structural and ionic transport mechanism of rare earth doped cerium oxide nanomaterials: Effect of ionic radius of dopant cations

被引:52
作者
Anirban, Sk. [1 ,2 ]
Dutta, Abhigyan [1 ]
机构
[1] Univ Burdwan, Dept Phys, Burdwan 713104, W Bengal, India
[2] Govt Gen Degree Coll, Dept Phys, Salboni 721516, Paschim Medinip, India
关键词
Doped nanoceria; Ionic radius; Impedance spectroscopy; Dielectric relaxation; VRH model; DEFECT CLUSTER FORMATION; ELECTRICAL-CONDUCTIVITY; DIELECTRIC-RELAXATION; GD; SM; DY; SIZE; YB; HO; LN;
D O I
10.1016/j.ssi.2017.07.020
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This work focuses on the effect of ionic radius of dopant cations on the structural and electrical properties of different rare earth doped ceria based nanoparticles. The lattice parameter of the doped samples increases linearly with dopant ionic radius. The Gd3+ doped ceria shows minimum r.m.s. strain among the others. The conductivity and activation energy of the samples are significantly affected by the dopant ionic radius. The Gd3+ doped ceria shows highest conductivity and lowest activation energies among the other rare earth doped ceria. The conductivity decreases and activation energy increases for the dopants having ionic radii higher and lower with respect to Gd3+. The ion movements at grain and grain boundary are also found to depend on the ionic radius of the dopants. Scaling of frequency dependent modulus spectra reveals the temperature and ionic radius independent relaxation mechanism. The dielectric constant shows that the stability of defect associates is higher for the samples having ionic radius lower and higher than the ionic radius of Gd3+ ions. The conductivity values are well supported by the VRH model.
引用
收藏
页码:137 / 145
页数:9
相关论文
共 30 条
[1]   Charge conduction and relaxation in MoS2 nanoflakes synthesized by simple solid state reaction [J].
Ahmad, Mushtaq ;
Rafiq, M. A. ;
Imran, Z. ;
Rasool, Kamran ;
Shahid, R. N. ;
Javed, Yasir ;
Hasan, M. M. .
JOURNAL OF APPLIED PHYSICS, 2013, 114 (04)
[2]   THE DETERMINATION OF HOPPING RATES AND CARRIER CONCENTRATIONS IN IONIC CONDUCTORS BY A NEW ANALYSIS OF AC CONDUCTIVITY [J].
ALMOND, DP ;
DUNCAN, GK ;
WEST, AR .
SOLID STATE IONICS, 1983, 8 (02) :159-164
[3]   Structural interpretation of optical properties and ion transport mechanism in mixed valent Pr containing nanoceria [J].
Anirban, Sk. ;
Dutt, Abhigyan .
MATERIALS RESEARCH BULLETIN, 2017, 86 :119-130
[4]   Dielectric relaxation and charge carrier mechanism in nanocrystalline Ce-Dy ionic conductors [J].
Anirban, Sk. ;
Dutta, Abhigyan .
RSC ADVANCES, 2016, 6 (55) :49852-49861
[5]   Studies on structural, morphological and electrical properties of Ce0.8Ln0.2O2-δ (Ln = Y3+, Gd3+, Sm3+, Nd3+ and La3+) solid solutions prepared by citrate complexation method [J].
Anjaneya, K. C. ;
Nayaka, G. P. ;
Manjanna, J. ;
Govindaraj, G. ;
Ganesha, K. N. .
JOURNAL OF ALLOYS AND COMPOUNDS, 2014, 585 :594-601
[6]   Electrical conductivity of the ZrO2-Ln2O3 (Ln = lanthanides) system [J].
Arachi, Y ;
Sakai, H ;
Yamamoto, O ;
Takeda, Y ;
Imanishai, N .
SOLID STATE IONICS, 1999, 121 (1-4) :133-139
[7]   Ionic transport properties and their variations with grain size in nanostructured double doped cerias such as Ce0.8Gd0.1Pr0.1O2-δ and Ce0.8Gd0.15Pr0.05O2-δ [J].
Baral, Ashok Kumar .
ELECTROCHIMICA ACTA, 2010, 56 (02) :667-675
[8]   Ionic Transport Properties in Nanocrystalline Ce0.8A0.2O2-δ (with A = Eu, Gd, Dy, and Ho) Materials [J].
Baral, Ashok Kumar ;
Sankaranarayanan, V. .
NANOSCALE RESEARCH LETTERS, 2010, 5 (03) :637-643
[9]  
Dell R.M., 1978, SOLID ELECTROLYTES
[10]   Analysis of complex impedance of p-CuIn3Se5 by impedance spectroscopy [J].
Essaleh, L. ;
Marin, G. ;
Wasim, S. M. ;
Lahlali, S. ;
Chehouani, H. .
JOURNAL OF ALLOYS AND COMPOUNDS, 2016, 688 :210-215