Orientational order-dependent thermal expansion and compressibility of ZrW2O8 and ZrMo2O8

Literature Information

Publication Date 2013-10-11
DOI 10.1039/C3CP52876F
Impact Factor 3.676
Authors

Leighanne C. Gallington, Karena W. Chapman, Cody R. Morelock, Peter J. Chupas


View Original

Abstract

The role of MO4 (M = W, Mo) orientational disorder in the thermal expansion and compressibility of ZrW2O8 and ZrMo2O8 was investigated via in situ powder X-ray diffraction at elevated temperature and pressure. A dramatic reduction in the bulk modulus of α-ZrW2O8, which has ordered WO4 tetrahedra at room temperature, from 65 GPa at room temperature to 47 GPa at 386 K was observed to be concomitant with the onset of a reversible WO4 orientational disordering upon compression. Additionally, the coefficient of thermal expansion (CTE) of the α phase became more negative upon compression within the temperature range in which pressure-dependent disorder was observed; αl, over the range 298 to 386 K, was ∼−11 ppm K−1 at 35 MPa but ∼−16 ppm K−1 at 276 MPa. No softening upon heating or change in CTE upon compression was observed for ZrW2O8 above the order → disorder phase transition temperature. Cubic ZrMo2O8 has a disordered arrangement of MoO4 tetrahedra at all temperatures and pressures accessed in this study. Its bulk modulus was independent of temperature, and its CTE was insensitive to pressure, much like β-ZrW2O8. The stability/metastability of the cubic and orthorhombic phases upon heating above room temperature and compression is discussed, with a focus on changes in the thermodynamics and kinetics of the cubic ↔ orthorhombic transition.

Related Literature

Programmable diode/resistor-like behavior of nanostructured vanadium pentoxide xerogel thin film

Zhenni Wan, Robert B. Darling, M. P. Anantram

2015-10-26 Communication

DOI: 10.1039/C5CP04755B

An adaptive finite-element method for large-scale ab initio molecular dynamics simulations

Eiji Tsuchida, Yoong-Kee Choe, Takahiro Ohkubo

2015-04-20 Paper

DOI: 10.1039/C5CP00320B

Sign change of magnetoresistance in Gd-doped amorphous carbon granular films

Shihao Ding, Chao Jin, Ziwei Fan, Peng Li, Haili Bai

2015-10-26 Paper

DOI: 10.1039/C5CP05070G

Back cover

Cover

DOI: 10.1039/C6CP90010K

Molecular dynamics simulations of the enhanced recovery of confined methane with carbon dioxide

Quanzi Yuan, Xueyan Zhu, Kui Lin, Ya-Pu Zhao

2015-11-05 Paper

DOI: 10.1039/C5CP06649B

Fe– and Co–P4-embedded graphenes as electrocatalysts for the oxygen reduction reaction: theoretical insights

Liyan Feng, Yuejie Liu, Jingxiang Zhao

2015-10-22 Paper

DOI: 10.1039/C5CP05551B

Gas-phase synthesis of Mg–Ti nanoparticles for solid-state hydrogen storage

M. Calizzi, F. Venturi, M. Ponthieu, F. Cuevas, V. Morandi, T. Perkisas, S. Bals, L. Pasquini

2015-11-05 Paper

DOI: 10.1039/C5CP03092G

Computational prediction of the electronic structure and optical properties of graphene-like β-CuN3

Xu Zhang, Xudong Zhao, Yu Jing, Dihua Wu, Zhen Zhou

2015-11-06 Paper

DOI: 10.1039/C5CP06208J

Ultrafast charge carrier relaxation and charge transfer processes in CdS/CdTe thin films

Ruvini Dharmadasa, I. M. Dharmadasa, Thad Druffel

2015-05-27 Paper

DOI: 10.1039/C5CP01652E

You might also like

Compound Q&A

What are the main uses of (3alpha,5alpha)-3-Hydroxypregnane-11,20-dione (CAS: 23930-19-0)?

(3alpha,5alpha)-3-Hydroxypregnane-11,20-dione is primarily used in the pharmaceu...

23930-19-0(3alpha,5alpha)-3-Hy...
Compound Q&A

What is the market or research trend for 4-Amino-6-chloro-2-pyridinecarboxylic acid (CAS: 546141-56-4)?

The market for 4-Amino-6-chloro-2-pyridinecarboxylic acid (CAS: 546141-56-4) is ...

546141-56-44-Amino-6-chloro-2-p...
Compound Q&A

Are there alternatives to (2-Benzoylethyl)trimethylammonium chloride (CAS: 24472-88-6) in synthesis?

Alternatives to (2-Benzoylethyl)trimethylammonium chloride (CAS: 24472-88-6) in ...

24472-88-6(2-Benzoylethyl)trim...
Compound Q&A

Is N-[4-Nitro-3-(trifluoromethyl)phenyl]acetamide (CAS: 393-12-4) safe?

N-[4-Nitro-3-(trifluoromethyl)phenyl]acetamide (CAS: 393-12-4) is generally safe...

393-12-4N-[4-Nitro-3-(triflu...
Compound Q&A

Are there alternatives to N,N'-Bis(3-aminopropyl)-1,3-propanediamine (CAS: 4605-14-5) in synthesis?

There are alternatives to N,N'-Bis(3-aminopropyl)-1,3-propanediamine (CAS: 4605-...

4605-14-5N,N'-Bis(3-aminoprop...
Compound Q&A

What precautions should be taken when handling Aluminium trihexadecanoate (CAS: 555-35-1)?

When handling Aluminium trihexadecanoate, it is important to use appropriate per...

555-35-1Aluminium trihexadec...
Compound Q&A

What is (1,1-Dioxido-3-oxo-1,2-benzothiazol-2(3H)-yl)acetic acid (CAS: 52188-11-1)?

(1,1-Dioxido-3-oxo-1,2-benzothiazol-2(3H)-yl)acetic acid is a chemical compound ...

52188-11-1(1,1-Dioxido-3-oxo-1...
Compound Q&A

Are there alternatives to 5,5-dimethyloxolan-2-one (CAS: 3123-97-5) in synthesis?

Several alternatives to 5,5-dimethyloxolan-2-one (CAS: 3123-97-5) can be used in...

3123-97-55,5-dimethyloxolan-2...

Source Journal

Physical Chemistry Chemical Physics

Physical Chemistry Chemical Physics
CiteScore: 5.5
Self-citation Rate: 10.3%
Articles per Year: 3036

Physical Chemistry Chemical Physics (PCCP) is an international journal co-owned by 19 physical chemistry and physics societies from around the world. This journal publishes original, cutting-edge research in physical chemistry, chemical physics and biophysical chemistry. To be suitable for publication in PCCP, articles must include significant innovation and/or insight into physical chemistry; this is the most important criterion that reviewers and Editors will judge against when evaluating submissions. The journal has a broad scope and welcomes contributions spanning experiment, theory, computation and data science. Topical coverage includes spectroscopy, dynamics, kinetics, statistical mechanics, thermodynamics, electrochemistry, catalysis, surface science, quantum mechanics, quantum computing and machine learning. Interdisciplinary research areas such as polymers and soft matter, materials, nanoscience, energy, surfaces/interfaces, and biophysical chemistry are welcomed if they demonstrate significant innovation and/or insight into physical chemistry. Joined experimental/theoretical studies are particularly appreciated when complementary and based on up-to-date approaches.

Recommended Compounds

Recommended Suppliers

Disclaimer
This page provides academic journal information for reference and research purposes only. We are not affiliated with any journal publishers and do not handle publication submissions. For publication-related inquiries, please contact the respective journal publishers directly.
If you notice any inaccuracies in the information displayed, please contact us at support@chemtradehub.com. We will promptly review and address your concerns.