24-26 November 2021
Online
Australia/Sydney timezone

In-situ X-ray diffaction for hydrogen sorption study of Mg-La alloys

24 Nov 2021, 14:00
15m
Online

Online

Oral Advanced Materials Advanced Materials

Speaker

Manjin Kim

Description

Trace Na additions can enhance the reaction kinetics of Mg-5%La (wt.%) alloys, resulting in a potential hydrogen storage material. In this study, we used in-situ synchrotron Powder X-ray Diffraction (PXRD) to examine the hydrogen sorption behaviour of the Na-modified Mg-5%La. A setup equipped with a hydrogen gas flow cell and a hot air blower at the Powder Diffraction beamline of the Australian Synchrotron facility is used to allow for PXRD data collection during hydrogen sorption reactions to study the phase evolutions and the cyclability of the alloy. To shed light on the underlying processes during the reactions, in-situ desorption and absorption were performed in a hydrogen atmosphere between 30-480 °C and atmospheric pressure to 2MPa H2. Rietveld refinement was conducted using the TOPAS-Academic V6 software to calculate the weight percentage and lattice expansion of each phase in the sample. In addition, in-situ High Voltage Transmission Electron Microscopy (HVTEM) was used as a complementary technique to study the volume expansion properties during desorption as a function of temperature.

Pronouns He/Him
Which facility did you use for your research Australian Synchrotron
Do you wish to take part in the Student Poster Slam No
Presenter Gender Man
Condition of submission Yes
Students Only - Are you interested in AINSE student funding Yes
Level of Expertise Student

Primary author

Manjin Kim

Co-authors

Xin Fu Tan (University of Queensland) Qinfen Gu (Australian Synchrotron (ANSTO)) Dr Stuart McDonald (The University of Queensland) Dr Yahia Ali (School of Mechanical and Mining Engineering, University of Queensland) Prof. Syo Matsumura (Department of Applied Quantum Physics and Nuclear Engineering, Kyushu University) Kazuhiro Nogita (The University of Queensland)

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