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Associate Professor Ruirui Qiao
Associate Professor

Ruirui Qiao

Email: 
Phone: 
+61 7 344 31295

Overview

Background

Associate Professor Ruirui Qiao is a Group Leader, NHMRC Emerging Leadership Fellow (2021–2026), and ARC Future Fellow (2026–2030) at the Australian Institute for Bioengineering and Nanotechnology (AIBN), The University of Queensland (UQ). She received her BSc (2005) and MSc (2007) in Pharmaceutical Sciences from Peking University and completed her PhD in Physical Chemistry at the Institute of Chemistry, Chinese Academy of Sciences (CAS), in 2014. Before joining UQ, she held academic appointments at CAS as an Assistant Professor (2009–2015) and tenured Associate Professor (2016–2017), and subsequently served as a Project Co-Leader at the ARC Centre of Excellence in Convergent Bio-Nano Science and Technology at Monash University.

A/Prof Qiao leads a multidisciplinary research program focused on smart biomaterials, precision delivery, microfluidic biomanufacturing, and 3D/4D-printed soft robotic systems. Her group develops functional polymer–inorganic nanohybrids and bioengineered platforms that integrate nanotechnology, polymer chemistry, microfluidics, and advanced manufacturing. These technologies span multiple length scales, from nanoparticles and microcarriers to biointegrated devices, and are applied to brain-targeted nanomedicine, drug and gene delivery, disease modelling, organoid and cell manufacturing, regenerative engineering, and wearable biomedical technologies.

A major focus of her research is the development of advanced materials and delivery platforms for brain diseases, including paediatric brain cancers and neurodegenerative disorders. Her team engineers polymer-functionalised magnetic nanoparticles, liquid-metal nanocomposites, biofunctional hydrogels, and stimuli-responsive delivery systems for non-invasive brain entry, spatially controlled therapeutic delivery, molecular imaging, and gene regulation. The group also develops droplet-microfluidic microgel platforms for scalable organoid production, blood–brain barrier modelling, drug screening, and advanced cell manufacturing.

In parallel, A/Prof Qiao’s group pioneers nanoparticle- and liquid-metal-enabled materials for 3D/4D printing, soft robotics, and biointegrated devices. This research establishes new strategies for programming the mechanical, electrical, optical, and biological properties of soft materials, enabling stimuli-responsive robotic systems, wearable sensors, actuators, and adaptive biomedical interfaces. Her long-term vision is to establish an integrated, materials-driven technology platform that connects fundamental materials science with precision medicine, biomanufacturing, and intelligent biomedical devices.

A/Prof Qiao has published more than 130 peer-reviewed articles in leading international journals, including Science, Nature Communications, Advanced Materials, and Advanced Functional Materials. Her work has received more than 9,500 citations, with an h-index of 53. Her scientific contributions have been recognised through major awards and fellowships, including the ARC Future Fellowship, NHMRC Investigator Grant, Young Tall Poppy Science Award, UQ Foundation Research Excellence Award, and Springer Nature Editor of Distinction Award.

In addition to her research leadership, A/Prof Qiao contributes extensively to institutional governance, research culture, and equity, diversity, and inclusion. She is a member of the UQ Academic Board, Chair of the AIBN Equity, Diversity and Inclusion Committee, and Co-Chair of the AIBN Early- and Mid-Career Researcher Committee. She also holds leadership roles in international scientific conferences and university partnership initiatives.

A/Prof Qiao serves as an Associate Editor of Science Advances and the Journal of Nanobiotechnology, and as an Editor of Chemical Engineering Journal: Engineered Materials. She also contributes to the editorial leadership of ACS Polymer Science & Technology and regularly leads international special issues and collections in nanomedicine, polymeric delivery systems, and advanced biomaterials.

A/Prof Qiao welcomes applications from highly motivated PhD candidates with backgrounds in materials science, chemistry, chemical engineering, biomedical engineering, nanotechnology, pharmaceutical sciences, or related disciplines. Competitive scholarship opportunities may be available to outstanding domestic and international candidates.

The University of Queensland is one of Australia’s leading research-intensive universities. UQ is currently ranked equal 40th in the 2027 QS World University Rankings, equal 42nd in the 2026–2027 U.S. News Best Global Universities Rankings, 80th in the 2026 Times Higher Education World University Rankings, 65th in the 2025 Academic Ranking of World Universities, and 37th in the 2025 NTU Performance Ranking of Scientific Papers for World Universities.

Availability

Associate Professor Ruirui Qiao is:
Available for supervision
Media expert

Qualifications

  • Bachelor of Pharmaceutical Sciences, Peking University
  • Masters (Research) of Medicinal Chemistry, Peking University
  • Doctoral Diploma of Natural Science, University of the Chinese Academy of Science

Research impacts

A/Prof Qiao demonstrates strong leadership in research communication, community engagement, and the promotion of inclusive participation in science. She actively translates complex research into accessible messages for researchers, students, industry stakeholders, and the wider community, thereby increasing public awareness of emerging technologies in advanced materials, nanomedicine, biomanufacturing, and soft robotics.

Through her leadership roles at AIBN, including Co-Chair of the Early- and Mid-Career Researcher Committee and Chair of the Equity, Diversity and Inclusion Committee, A/Prof Qiao has contributed to initiatives that support researcher development, career progression, and an inclusive institutional culture. She played a key role in organising AIBN Career Development Week, which provided early- and mid-career researchers with practical training, mentoring opportunities, and exposure to diverse academic and non-academic career pathways. She has also participated in Women in Science panels and related EDI activities, sharing her own career experiences and encouraging greater representation and participation of women and other underrepresented groups in STEM.

A/Prof Qiao has achieved substantial public and media engagement through the communication of her research. Her work on 4D-printed soft robots, advanced functional materials, and environmentally responsive polymers has been featured by major media outlets, including COSMOS Magazine, Australian Manufacturing, and The Sydney Morning Herald. Through media interviews, public presentations, institutional communications, and research outreach, she has helped make technically complex scientific advances understandable and relevant to broader audiences.

The reach of these activities has been significant, with associated media coverage reaching approximately 190,000 people through radio, 580,000 through print media, and 15.6 million through online platforms. This engagement has increased the visibility of Australian research in advanced materials and biomedical engineering, promoted greater public understanding of emerging scientific technologies, and demonstrated the potential of materials innovation to address important health, manufacturing, and environmental challenges.

Overall, A/Prof Qiao’s communication and engagement activities extend the impact of her research beyond academic publications. They contribute to scientific literacy, inspire students and emerging researchers, strengthen participation in STEM, and foster stronger connections between researchers, industry, policymakers, and the wider community.

Works

Search Professor Ruirui Qiao’s works on UQ eSpace

135 works between 2008 and 2026

1 - 20 of 135 works

2026

Journal Article

Spore-Forming Probiotic-Embedded Biomaterials for Targeted Gut Microplastic Biodegradation

Nicolas, George Michael, Yuan, Tianying, Rukmana, Andriansjah, Zhang, Zheng, Qiao, Ruirui and Ma, Shaohua (2026). Spore-Forming Probiotic-Embedded Biomaterials for Targeted Gut Microplastic Biodegradation. ACS Pharmacology & Translational Science, 9 (7) acsptsci.6c00183, 1726-1741. doi: 10.1021/acsptsci.6c00183

Spore-Forming Probiotic-Embedded Biomaterials for Targeted Gut Microplastic Biodegradation

2026

Journal Article

Physically inactivated tumor organoids enable rapid and personalized enrichment of cytotoxic T cells for solid tumor immunotherapypy

Zhang, Yu, Zhao, Haoran, Zeng, Junhong, Wang, Zitian, Dai, Xiaoyong, Cai, Yongde, Qiao, Ruirui, Wang, Qingwen, Lobie, Peter E. and Ma, Shaohua (2026). Physically inactivated tumor organoids enable rapid and personalized enrichment of cytotoxic T cells for solid tumor immunotherapypy. Advanced Healthcare Materials, 15 (20) e03992, 1-11. doi: 10.1002/adhm.202503992

Physically inactivated tumor organoids enable rapid and personalized enrichment of cytotoxic T cells for solid tumor immunotherapypy

2026

Journal Article

De novo development of bioresponsive nanoparticles with antimicrobial activity to treat bacterial infections

Zhao, Liang, Liu, Junyu, Li, Xiaobin, Xing, Xupu, Li, Yiting, Chen, Yun, Huang, Yuqing, Wang, Yi, Zhang, Shilong, Guo, Xin Dong, Qiao, Ruirui, Ogura, Shun-ichiro, Tsuge, Takeharu, Xing, Xin-Hui and Zhang, Can Yang (2026). De novo development of bioresponsive nanoparticles with antimicrobial activity to treat bacterial infections. Advanced Healthcare Materials, 15 (17) e05683, 1-19. doi: 10.1002/adhm.202505683

De novo development of bioresponsive nanoparticles with antimicrobial activity to treat bacterial infections

2026

Journal Article

Nanobiotechnology-enabled strategies for molecular and cellular imaging of lymph nodes

Dai, Huan, Biggs, Heather, Li, Yiwei, Wen, Juan, Qiao, Ruirui and Xu, Chun (2026). Nanobiotechnology-enabled strategies for molecular and cellular imaging of lymph nodes. Nano Research, 19 (5) 94908163, 1-27. doi: 10.26599/nr.2025.94908163

Nanobiotechnology-enabled strategies for molecular and cellular imaging of lymph nodes

2026

Journal Article

Vat photopolymerization of liquid metal nanoparticle‐integrated hydrogels

Huang, Xumin, Zhang, Liwen, Nasar, Naufal Kabir Ahamed, Liu, Liwei, Gu, Xinyan, Lin, Yiliang, Davis, Thomas P., Kalantar‐Zadeh, Kourosh and Qiao, Ruirui (2026). Vat photopolymerization of liquid metal nanoparticle‐integrated hydrogels. Advanced Functional Materials, 36 (26) e23767, 1-13. doi: 10.1002/adfm.202523767

Vat photopolymerization of liquid metal nanoparticle‐integrated hydrogels

2026

Journal Article

USING CHELATOR-FREE RADIOLABELLING OF 64CU-LIQUID METAL NANOPARTICLES VIA GALVANIC REPLACEMENT FOR FUTURE GENERATION THERANOSTIC AGENTS IN COLORECTAL CANCER

Biggs, Heather, Zhu, Jiayuan and Qiao, Ruirui (2026). USING CHELATOR-FREE RADIOLABELLING OF 64CU-LIQUID METAL NANOPARTICLES VIA GALVANIC REPLACEMENT FOR FUTURE GENERATION THERANOSTIC AGENTS IN COLORECTAL CANCER. EANM Innovation, 2 100132, 100132. doi: 10.1016/j.eanmi.2026.100132

USING CHELATOR-FREE RADIOLABELLING OF 64CU-LIQUID METAL NANOPARTICLES VIA GALVANIC REPLACEMENT FOR FUTURE GENERATION THERANOSTIC AGENTS IN COLORECTAL CANCER

2025

Journal Article

Nanoparticle‐empowered 4D printing: materials, stimuli, and emerging actuation strategies

Huang, Xumin, Zhang, Liwen, Liu, Liwei, Gu, Xinyan, Ahamed Nasar, Naufal Kabir, Davis, Thomas P., Zheng, Xiaoyu (Rayne) and Qiao, Ruirui (2025). Nanoparticle‐empowered 4D printing: materials, stimuli, and emerging actuation strategies. Advanced Materials Technologies, 11 (7) e01443. doi: 10.1002/admt.202501443

Nanoparticle‐empowered 4D printing: materials, stimuli, and emerging actuation strategies

2025

Journal Article

Nanoparticles decorated nanotubes: advanced local therapies from anodized nanoengineered titanium implants

Chopra, Divya, Zhang, Liwen, Guo, Tianqi, Ivanovski, Sašo, Qiao, Ruirui and Gulati, Karan (2025). Nanoparticles decorated nanotubes: advanced local therapies from anodized nanoengineered titanium implants. Advanced Functional Materials, 35 (50) e10739, 1-35. doi: 10.1002/adfm.202510739

Nanoparticles decorated nanotubes: advanced local therapies from anodized nanoengineered titanium implants

2025

Journal Article

The evolution of nanomedicine: the rise of next-generation nanomaterials in cancer nanomedicine

Forgham, Helen, Chang, Yixin, Wang, Yao, Zhu, Jiayuan, Liu, Liwei, Biggs, Heather, Kakinen, Aleksandr, Jiang, Yuhao, You, Xinru, Thurecht, Kristofer J., Ma, Shaohua, Ju, Lining Arnold, Tao, Wei, Davis, Thomas P., Wong, Joyce Y. and Qiao, Ruirui (2025). The evolution of nanomedicine: the rise of next-generation nanomaterials in cancer nanomedicine. Science Advances, 11 (43) eadx1576, 1-18. doi: 10.1126/sciadv.adx1576

The evolution of nanomedicine: the rise of next-generation nanomaterials in cancer nanomedicine

2025

Journal Article

Design and synthesis of fluorosurfactants for microfluidic droplet-based bioapplications

Li, Xiangke, Zhang, Cheng, Peng, Huadong, Ma, Shaohua, Davis, Thomas P. and Qiao, Ruirui (2025). Design and synthesis of fluorosurfactants for microfluidic droplet-based bioapplications. Polymer Science & Technology, 2 (2) polymscitech.5c00092, 66-78. doi: 10.1021/polymscitech.5c00092

Design and synthesis of fluorosurfactants for microfluidic droplet-based bioapplications

2025

Journal Article

Combinatorial discovery of RAFT cationic polymers for mRNA delivery: structure–function insights from high-throughput screening and machine learning

Yang, Wenting, Li, Shangqian, Yu, Siqi, de Sá, Alex G. C., Ita, Tanmayee Sai Sivani, Liang, Tian, Forgham, Helen, Qiao, Ruirui, Li, Jiulong, Stayton, Patrick S., Ascher, David B., Meng, Huan, Whittaker, Andrew K. and Fu, Changkui (2025). Combinatorial discovery of RAFT cationic polymers for mRNA delivery: structure–function insights from high-throughput screening and machine learning. Biomacromolecules, 26 (11), 7724-7738. doi: 10.1021/acs.biomac.5c01236

Combinatorial discovery of RAFT cationic polymers for mRNA delivery: structure–function insights from high-throughput screening and machine learning

2025

Journal Article

Corrigendum to “Effect of extraction methods on the preparation of electrospun/electrosprayed microstructures of tilapia skin collagen” [J. Biosci. Bioeng. 128 (2) (2019) 234–240]

Bi, Chunhuan, Li, Xiaohui, Xin, Qi, Han, Wei, Shi, Cuiping, Guo, Ruihua, Shi, Wenzheng, Qiao, Ruirui, Wang, Xichang and Zhong, Jian (2025). Corrigendum to “Effect of extraction methods on the preparation of electrospun/electrosprayed microstructures of tilapia skin collagen” [J. Biosci. Bioeng. 128 (2) (2019) 234–240]. Journal of Bioscience and Bioengineering, 140 (4), 269-269. doi: 10.1016/j.jbiosc.2025.07.001

Corrigendum to “Effect of extraction methods on the preparation of electrospun/electrosprayed microstructures of tilapia skin collagen” [J. Biosci. Bioeng. 128 (2) (2019) 234–240]

2025

Journal Article

A universal biomimetic approach for making artificial antigen‐presenting cells for T cell activation

Hou, Fei, Ranaweera, Supun, Li, Xiangke, Qiao, Ruirui, Hui, Yue and Zhao, Chun‐Xia (2025). A universal biomimetic approach for making artificial antigen‐presenting cells for T cell activation. Advanced Functional Materials, 35 (40) 2504733, 1-12. doi: 10.1002/adfm.202504733

A universal biomimetic approach for making artificial antigen‐presenting cells for T cell activation

2025

Journal Article

Fabrication of organic/inorganic nanocomposites: from traditional synthesis to additive manufacturing

Zhang, Liwen, Huang, Xumin, Liu, Liwei, Nasar, Naufal Kabir Ahamed, Gu, Xinyan, Davis, Thomas P., Zheng, Xiaoyu (Rayne), Wang, Lianzhou and Qiao, Ruirui (2025). Fabrication of organic/inorganic nanocomposites: from traditional synthesis to additive manufacturing. Advanced Materials, 37 (37) 2505504, 1-34. doi: 10.1002/adma.202505504

Fabrication of organic/inorganic nanocomposites: from traditional synthesis to additive manufacturing

2025

Journal Article

Recent developments in nanoparticle‐hydrogel hybrid materials for controlled release

Fan, Yiping, Han, Qi, Li, Haiyan, Cai, Xudong, Dyett, Brendan, Qiao, Ruirui, Drummond, Calum J., Thang, San H. and Zhai, Jiali (2025). Recent developments in nanoparticle‐hydrogel hybrid materials for controlled release. Advanced Science, 12 (35) e07209, 1-25. doi: 10.1002/advs.202507209

Recent developments in nanoparticle‐hydrogel hybrid materials for controlled release

2025

Journal Article

Smart fluorosurfactant‐assisted microfluidics powered on‐demand generation and retrieval of cell‐laden microgels

Li, Xiangke, Forgham, Helen, Shen, Qiuren, Zhang, Liwen, Meinert, Christoph, Zhao, Chun‐Xia, Lin, Yiliang, Yuan, Dan, Davis, Thomas P. and Qiao, Ruirui (2025). Smart fluorosurfactant‐assisted microfluidics powered on‐demand generation and retrieval of cell‐laden microgels. Advanced Materials Interfaces, 12 (12) 2500178. doi: 10.1002/admi.202500178

Smart fluorosurfactant‐assisted microfluidics powered on‐demand generation and retrieval of cell‐laden microgels

2025

Journal Article

Macrophage hitchhiking nanomedicine for enhanced β-elemene delivery and tumor therapy

Chen, Shuying, Li, Yongjiang, Zhou, Zhuoming, Saiding, Qimanguli, Zhang, Yiming, An, Soohwan, Khan, Muhammad Muzamil, Ji, Xiaoyuan, Qiao, Ruirui, Tao, Wei, Kong, Na, Chen, Wei and Xie, Tian (2025). Macrophage hitchhiking nanomedicine for enhanced β-elemene delivery and tumor therapy. Science Advances, 11 (21) eadw7191, 1-20. doi: 10.1126/sciadv.adw7191

Macrophage hitchhiking nanomedicine for enhanced β-elemene delivery and tumor therapy

2025

Journal Article

Reverse magnetic resonance tuning nanoplatform with heightened sensitivity for non-invasively multiscale visualizing ferroptosis-based tumor sensitization therapy

Zhu, Yi, Deng, Jiali, Lu, Hongwei, Mei, Zhu, Lu, Ziwei, Guo, Jiajing, Chen, An, Cao, Rong, Ding, Xinyi, Wang, Jingyi, Forgham, Helen, Qiao, Ruirui and Wang, Zhongling (2025). Reverse magnetic resonance tuning nanoplatform with heightened sensitivity for non-invasively multiscale visualizing ferroptosis-based tumor sensitization therapy. Biomaterials, 315 122935, 122935. doi: 10.1016/j.biomaterials.2024.122935

Reverse magnetic resonance tuning nanoplatform with heightened sensitivity for non-invasively multiscale visualizing ferroptosis-based tumor sensitization therapy

2025

Journal Article

Sequence design of poly(ester-co-carbonate): a unique example of degradable self-healing copolymers

Yang, Zhenjie, Hu, Chenyang, Pang, Xuan, Zhang, Liwen, Qiao, Ruirui, Davis, Thomas P., Liu, Shunjie, Wang, Xianhong and Chen, Xuesi (2025). Sequence design of poly(ester-co-carbonate): a unique example of degradable self-healing copolymers. Macromolecules, 58 (4), 1827-1834. doi: 10.1021/acs.macromol.4c02670

Sequence design of poly(ester-co-carbonate): a unique example of degradable self-healing copolymers

2025

Journal Article

Amyloid targeting-gold nanoparticles-assisted X-ray therapy rescues islet β-cells from amyloid fibrils and restores insulin homeostasis

Forgham, Helen, Matre, Stetson Van, Chung, Ka Hang Karen, Tahir, Muhammad Sajid, Ali, Syed Aoun, Kikuchi, Kai, Kaur, Amandeep, Qiao, Ruirui, Kakinen, Aleksandr, Qamar, Ahmad Zaman, Davis, Thomas Paul and Javed, Ibrahim (2025). Amyloid targeting-gold nanoparticles-assisted X-ray therapy rescues islet β-cells from amyloid fibrils and restores insulin homeostasis. ACS Nano, 19 (5), 5460-5474. doi: 10.1021/acsnano.4c13916

Amyloid targeting-gold nanoparticles-assisted X-ray therapy rescues islet β-cells from amyloid fibrils and restores insulin homeostasis

Funding

Current funding

  • 2026 - 2030
    4D printing of Liquid Metal-Reinforced Tough Hydrogel as Robotic Device
    ARC Future Fellowships
    Open grant
  • 2026 - 2029
    National Platform for Targeted mRNA Therapeutics <MRFF> administered by <University of Adelaide>
    MRFF - National Critical Infrastructure Initiative
    Open grant
  • 2024 - 2026
    Selection of Optimal Heavy Metal Substrates and Surface Conditions for Thorium Deposition
    AdvanCell Isotopes Pty Limited
    Open grant
  • 2024 - 2027
    Bio-inspired Nanoparticles for Mechano-Regulation of Stem Cell Fate
    ARC Discovery Projects
    Open grant
  • 2023 - 2027
    Advancing the treatment of brain cancer in children (UNSW led NHMRC Synergy Grant)
    University of New South Wales
    Open grant
  • 2021 - 2026
    Biocompatible Gadolinium-free contrast agents for molecular targeted MR imaging
    NHMRC Investigator Grants
    Open grant

Past funding

  • 2024 - 2025
    Single-molecule Manipulation and Interaction Facility (SMIF) (ARC LIEF grant administered by The University of Sydney)
    University of Sydney
    Open grant
  • 2023 - 2025
    Seawater-Degradable Plastic Materials
    Queensland-Chinese Academy of Sciences (Q-CAS) Collaborative Science Fund (DES)
    Open grant
  • 2023 - 2024
    Nano-engineered bacteriobot for the treatment of biofilms infection on dental implants
    Australian Dental Research Fund Inc
    Open grant
  • 2022
    Stimuli-Responsive Nanohybrids as Remotely Controlled Carriers
    UQ Foundation Research Excellence Awards
    Open grant
  • 2021 - 2022
    Dr Ruirui Qiao - AQ WRAP
    Advance Queensland Women's Research Assistance Program
    Open grant
  • 2021 - 2022
    UQ AWARE - Dr Ruirui Qiao
    UQ Amplify Women's Academic Research Equity
    Open grant
  • 2019 - 2021
    Development of Superior Sentinel Lymph Node Mapping Procedures using Magnetic Tracers (NHMRC Development Grant administered by University of South Australia)
    University of South Australia
    Open grant
  • 2019 - 2020
    Development of Superior Sentinel Lymph Node Mapping Procedures using Magnetic Tracers (Unversity of South Australia led NHMRC Development Grant)
    University of South Australia
    Open grant

Supervision

Availability

Associate Professor Ruirui Qiao is:
Available for supervision

Looking for a supervisor? Read our advice on how to choose a supervisor.

Available projects

Supervision history

Current supervision

  • Doctor Philosophy

    Novel fluorosurfactants for droplet microfludics applications

    Principal Advisor

  • Doctor Philosophy

    Novel 3D Printed Composites for Biomedical Applications

    Principal Advisor

  • Doctor Philosophy

    Development of a Targeted Liquid Metal Nanoparticle Theranostic Platform Enabled by Chelator-Free Galvanic Replacement Radiochemistry for Colorectal Cancer

    Principal Advisor

  • Doctor Philosophy

    Functionalised Iron Oxide Nanoparticle-based Delivery Systems for microRNA Therapeutics in Triple-Negative Breast Cancer (Provisional)

    Principal Advisor

  • Doctor Philosophy

    Bio-inspired Nanoparticles for Mechano-Regulation of Stem Cell Fate

    Principal Advisor

    Other advisors: Associate Professor Shyuan Ngo, Associate Professor Peter Noakes

  • Doctor Philosophy

    3D Printing of Hydrogels with Tunable Macroporous Structures for Tissue Engineering

    Principal Advisor

  • Doctor Philosophy

    Polymer/nanoparticle Hybrids for Antimicrobial Therapies

    Principal Advisor

  • Doctor Philosophy

    Multifunctional Magnetic Nanoparticles for Effective Gene Silencing in Medulloblastoma

    Principal Advisor

  • Doctor Philosophy

    Bio-inspired Nanoparticles for Mechano-Regulationof Stem Cell Fate

    Principal Advisor

    Other advisors: Dr Richard Lobb, Dr Mark Allenby

  • Doctor Philosophy

    Novel 3D Printed Composites for Biomedical Applications

    Principal Advisor

  • Master Philosophy

    Intelligent Nanomedicine for Early Diagnosis and Treatment of Alzheimer¿s Disease

    Principal Advisor

  • Doctor Philosophy

    New Nanomaterials for obviating amyloid formation

    Associate Advisor

  • Doctor Philosophy

    Activatable nanomaterials for cancer treatment

    Associate Advisor

    Other advisors: Dr Run Zhang

  • Doctor Philosophy

    Engineering smart nano-delivery system for mRNA therapeutics

    Associate Advisor

    Other advisors: Dr Hao Song

Completed supervision

Media

Enquiries

Contact Associate Professor Ruirui Qiao directly for media enquiries about:

  • 3D printing
  • Intelligent Materials
  • Soft robots

Need help?

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communications@uq.edu.au