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Dr Rijia Lin
Dr

Rijia Lin

Email: 
Phone: 
+61 7 334 66465

Overview

Background

Dr Rijia Lin received his PhD in Chemical Engineering from the University of Queensland in 2016. In 2022, he was awarded the ARC DECRA Fellow. His main research interests include metal-organic frameworks, membrane gas separation, design and engineering of new porous glass materials.

Availability

Dr Rijia Lin is:
Available for supervision

Qualifications

  • Doctor of Philosophy, The University of Queensland

Works

Search Professor Rijia Lin’s works on UQ eSpace

52 works between 2012 and 2024

41 - 52 of 52 works

2017

Journal Article

A facile method to synthesize boron-doped Ni/Fe alloy nano-chains as electrocatalyst for water oxidation

Yang, Yisu, Linzhou Zhuang, Rijia Lin, Mengran Li, Xu, Xiaoyong, Rufford, Thomas and Zhu, Zhonghua (2017). A facile method to synthesize boron-doped Ni/Fe alloy nano-chains as electrocatalyst for water oxidation. Journal of Power Sources, 349, 68-74. doi: 10.1016/j.jpowsour.2017.03.028

A facile method to synthesize boron-doped Ni/Fe alloy nano-chains as electrocatalyst for water oxidation

2017

Journal Article

Surface-etched halloysite nanotubes in mixed matrix membranes for efficient gas separation

Ge, Lei, Lin, Rijia, Wang, Li, Rufford, Thomas E., Villacorta, Byron, Liu, Shaomin, Liu, Lian X. and Zhu, Zhonghua (2017). Surface-etched halloysite nanotubes in mixed matrix membranes for efficient gas separation. Separation and Purification Technology, 173, 63-71. doi: 10.1016/j.seppur.2016.09.015

Surface-etched halloysite nanotubes in mixed matrix membranes for efficient gas separation

2016

Journal Article

Ionic liquids as the MOFs/polymer interfacial binder for efficient membrane separation

Lin, Rijia, Ge, Lei, Diao, Hui, Rudolph, Victor and Zhu, Zhonghua (2016). Ionic liquids as the MOFs/polymer interfacial binder for efficient membrane separation. ACS Applied Materials and Interfaces, 8 (46), 32041-32049. doi: 10.1021/acsami.6b11074

Ionic liquids as the MOFs/polymer interfacial binder for efficient membrane separation

2016

Other Outputs

MOFs-based Mixed Matrix Membranes for Gas Separation

Lin, Rijia (2016). MOFs-based Mixed Matrix Membranes for Gas Separation. PhD Thesis, School of Chemical Engineering, The University of Queensland. doi: 10.14264/uql.2016.670

MOFs-based Mixed Matrix Membranes for Gas Separation

2016

Journal Article

Amphiphobic PVDF composite membranes for anti-fouling direct contact membrane distillation

Lu, Xuemei, Peng, Yuelian, Ge, Lei, Lin, Rijia, Zhu, Zhonghua and Liu, Shaomin (2016). Amphiphobic PVDF composite membranes for anti-fouling direct contact membrane distillation. Journal of Membrane Science, 505, 61-69. doi: 10.1016/j.memsci.2015.12.042

Amphiphobic PVDF composite membranes for anti-fouling direct contact membrane distillation

2016

Journal Article

Propylene/propane selective mixed matrix membranes with grape-branched MOF/CNT filler

Lin, Rijia, Ge, Lei, Diao, Hui, Rudolph, Victor and Zhu, Zhonghua (2016). Propylene/propane selective mixed matrix membranes with grape-branched MOF/CNT filler. Journal of Materials Chemistry A, 4 (16), 6084-6090. doi: 10.1039/c5ta10553f

Propylene/propane selective mixed matrix membranes with grape-branched MOF/CNT filler

2015

Journal Article

Mixed-matrix membranes with metal-organic framework-decorated CNT fillers for efficient CO2 separation

Lin, Rijia, Ge, Lei, Liu, Shaomin, Rudolph, Victor and Zhu, Zhonghua (2015). Mixed-matrix membranes with metal-organic framework-decorated CNT fillers for efficient CO2 separation. ACS Applied Materials and Interfaces, 7 (27), 14750-14757. doi: 10.1021/acsami.5b02680

Mixed-matrix membranes with metal-organic framework-decorated CNT fillers for efficient CO2 separation

2015

Journal Article

Synthesis and characterization of three amino-functionalized metal-organic frameworks based on 2-aminoterphthalic ligand

Yang, Ying, Lin, Rijia, Ge, Lei, Hou, Lei, Bernhardt, Paul V., Rufford, Thomas, Wang, Shaobin, Rudolph, Victor, Wang, Yaoyu and Zhu, Zhonghua (2015). Synthesis and characterization of three amino-functionalized metal-organic frameworks based on 2-aminoterphthalic ligand. Dalton Transactions, 44 (17), 8190-8197. doi: 10.1039/c4dt03927k

Synthesis and characterization of three amino-functionalized metal-organic frameworks based on 2-aminoterphthalic ligand

2014

Journal Article

Mixed matrix membranes with strengthened MOFs/polymer interfacial interaction and improved membrane performance

Lin, Rijia, Ge, Lei, Hou, Lei, Strounina, Ekaterina, Rudolph, Victor and Zhu, Zhonghua (2014). Mixed matrix membranes with strengthened MOFs/polymer interfacial interaction and improved membrane performance. ACS Applied Materials and Interfaces, 6 (8), 5609-5618. doi: 10.1021/am500081e

Mixed matrix membranes with strengthened MOFs/polymer interfacial interaction and improved membrane performance

2013

Journal Article

Preparation of a solid amine adsorbent based on polypropylene fiber and its performance for CO2 capture

Zhuang, Linzhou, Chen, Shuixia, Lin, Rijia and Xu, Xiuzhu (2013). Preparation of a solid amine adsorbent based on polypropylene fiber and its performance for CO2 capture. Journal of Materials Research, 28 (20), 2881-2889. doi: 10.1557/jmr.2013.278

Preparation of a solid amine adsorbent based on polypropylene fiber and its performance for CO2 capture

2013

Journal Article

Design of a viscose based solid amine fiber: effect of its chemical structure on adsorption properties for carbon dioxide

Lin, Rijia, Zhuang, Linzhou, Xu, Xiuzhu and Chen, Shuixia (2013). Design of a viscose based solid amine fiber: effect of its chemical structure on adsorption properties for carbon dioxide. Journal of Colloid and Interface Science, 407, 425-431. doi: 10.1016/j.jcis.2013.06.029

Design of a viscose based solid amine fiber: effect of its chemical structure on adsorption properties for carbon dioxide

2012

Journal Article

Preparation of a bagasse-based anion exchange fiber for sugar decolorization

Liu, Xilian, Lin, Rijia, Chen, Shuixia, Ma, Nianfang and Huang, Yunan (2012). Preparation of a bagasse-based anion exchange fiber for sugar decolorization. Journal of Applied Polymer Science, 126 (SUPPL. 1), E345-E353. doi: 10.1002/app.36733

Preparation of a bagasse-based anion exchange fiber for sugar decolorization

Funding

Current funding

  • 2024 - 2025
    Converting raw mineral materials to highly efficient lighting and display devices
    Australia's Economic Accelerator Seed Grants
    Open grant
  • 2024
    Membrane CO2 capture processes for iron and steel industry
    Baosteel-Australia Joint Research and Development
    Open grant
  • 2023 - 2026
    Glassy metal-organic framework membranes for CO2 separation and conversion
    ARC Discovery Early Career Researcher Award
    Open grant

Past funding

  • 2024
    Study of melting mechanism and interfacial interactions of metal-organic framework glass composites
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2024
    Cu single atoms anchored metal organic frameworks photocatalysts for highly selective CO2 reduction
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2024
    Revealing the function of perovskite's nano-crystallization behaviour in a heterogeneous photocatalyst
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2024
    Dynamic study of mixed matrix metal-organic framework glass membranes for lithium recovery
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2023
    THz spectroscopic characterization of the dynamics and bonding properties of MOF(UiO-66-NH2)-based single atom photocatalysts
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2023
    Elucidating the coordination geometry of metals within multimetallic metal-organic framework glasses via X-ray adsorption techniques Part 2
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2023
    Dynamic study of glassy metal-organic framework membranes for lithium recovery
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2023
    Elucidating the coordination geometry of metals within multimetallic metal-organic framework glasses via X-ray adsorption techniques Part 1
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2022
    Dynamic and bonding properties of bilayer metal-organic framework membranes for ionic separation
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2022
    Dynamic properties of the order-disorder interface in metal-organic framework crystal-glass composite membranes
    Australian Nuclear Science and Technology Organisation
    Open grant
  • 2021 - 2022
    Metal-Organic Framework (MOF) Crystal-Glass Composite Membranes for Gas Separation
    AINSE Early Career Research Grant
    Open grant
  • 2021
    Dynamic study of the glassy metal-organic frameworks
    Australian Nuclear Science and Technology Organisation
    Open grant

Supervision

Availability

Dr Rijia Lin is:
Available for supervision

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Supervision history

Current supervision

Completed supervision

Media

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