
Overview
Background
Dr. Aditya Ashok is a distinguished early career researcher and expert in flexible inorganic nanoarchitectured devices by precisely engineering the material parameters for energy conversion, optoelectronics, catalysis, and biosensing applications. As a Postdoctoral Fellow at Prof. Yusuke Yamauchi's group, UQ-AIBN, his research focuses on fabricating porous multimodal inorganic heterojunction for opto-catalysis and biosensing applications. His long-term research vision is to bridge the gap between fundamental materials science and real-world biomedical and energy solutions through nanoengineered materials and flexible electronic devices.
Dr. Ashok secured a bachelor's in electrical and electronics engineering in 2016 and a master's in nanotechnology and renewable energy in 2018. In 2024, he graduated with his Ph.D. in Materials Science and Biomedical Engineering under Prof. Yusuke Yamauchi's group from the Australian Institute for Bioengineering and Nanotechnology (AIBN), The University of Queensland, Brisbane. Immediately after his PhD, he was offered to join a postdoctoral research associate at the University of New South Wales (UNSW), Sydney, at the School of Mechanical and Manufacturing Engineering and the Graduate School of Biomedical Engineering. His research at the UNSW focused on developing multimodal flexible electronics and flexible mesoporous 3D buckling electrodes for organoid studies.
Availability
- Dr Aditya Ashok is:
- Available for supervision
Qualifications
- Masters (Research) of Nanotechnology, Amrita School of Nanotechnology and Molecular Medicine, Amrita Vishwa Vidyapeetham
Research impacts
Dr. Aditya Ashok’s research has had a profound impact on materials science, nanotechnology, and biomedical engineering, particularly on the development of flexible nanoarchitectured devices for biosensing, energy conversion, and biomedical applications. His pioneering work on mesoporous semiconductors and flexible electronics has led to advancements in implantable bioelectronics, disease diagnostics, and energy-efficient optoelectronic devices. With extensive experience in synthesis and advanced characterization, which involves physical/chemical deposition techniques, photolithography, in-situ X-ray analysis, and flexible device fabrication. He pioneered the development of meso-space engineering through post-plasma processing and flexible/implantable mesoporous biosensing devices based on bottom-up nanostructured thin films on flexible substrates through electrochemistry and top-down plasma as post-processing techniques towards advanced engineered medical and energy conversion devices.
An early career researcher with an exceptional track record of over >40 peer-reviewed publications in prestigious and high-impact journals in the field of Materials Science, such as JACS, Advanced Functional Materials, Nature Protocol, PNAS, ACS Nano, Nano Letters, Angewandte Chemie, Small, and other leading journals, with >1100 citations and an h-index of 17 (Google Scholar). Dr. Ashok has actively collaborated with leading research groups in Australia, Japan, and the USA, including NIMS (Japan), Waseda University (Japan), and Prof. John A. Rogers’ group at Northwestern University (USA). His research has been supported by competitive grants, travel awards, scholarships, and international recognition, including a Best Presentation Award at an international conference. Beyond publications, his research received attention in the research community and was highlighted in local and international media (UQ News: Flexible gold sensor unlocks a new generation of medical implants; Australian Manufacturing: UQ researchers unlock the potential of next-gen implantable medical gadgets with new sensor; Manufacturer’s Monthly: Pioneering flexible gold sensors for next-gen medical implants).
Works
Search Professor Aditya Ashok’s works on UQ eSpace
2022
Journal Article
Expeditious electrochemical synthesis of mesoporous chalcogenide flakes: mesoporous Cu2Se as a potential high‐rate anode for sodium‐ion battery
Nagaura, Tomota, Li, Jinliang, Fernando, Joseph F. S., Ashok, Aditya, Alowasheeir, Azhar, Nanjundan, Ashok Kumar, Lee, Sukho, Golberg, Dmitri V., Na, Jongbeom and Yamauchi, Yusuke (2022). Expeditious electrochemical synthesis of mesoporous chalcogenide flakes: mesoporous Cu2Se as a potential high‐rate anode for sodium‐ion battery. Small, 18 (34) 2106629, 1-10. doi: 10.1002/smll.202106629
2022
Journal Article
Integrated, transparent silicon carbide electronics and sensors for radio frequency biomedical therapy
Nguyen, Tuan-Khoa, Yadav, Sharda, Truong, Thanh-An, Han, Mengdi, Barton, Matthew, Leitch, Michael, Guzman, Pablo, Dinh, Toan, Ashok, Aditya, Vu, Hieu, Dau, Van, Haasmann, Daniel, Chen, Lin, Park, Yoonseok, Do, Thanh Nho, Yamauchi, Yusuke, Rogers, John A., Nguyen, Nam-Trung and Phan, Hoang-Phuong (2022). Integrated, transparent silicon carbide electronics and sensors for radio frequency biomedical therapy. ACS Nano, 16 (7), 10890-10903. doi: 10.1021/acsnano.2c03188
2022
Journal Article
Plasma‐Induced Nanocrystalline Domain Engineering and Surface Passivation in Mesoporous Chalcogenide Semiconductor Thin Films
Ashok, Aditya, Vasanth, Arya, Nagaura, Tomota, Eguchi, Miharu, Motta, Nunzio, Phan, Hoang‐Phuong, Nguyen, Nam‐Trung, Shapter, Joseph G., Na, Jongbeom and Yamauchi, Yusuke (2022). Plasma‐Induced Nanocrystalline Domain Engineering and Surface Passivation in Mesoporous Chalcogenide Semiconductor Thin Films. Angewandte Chemie, 134 (14). doi: 10.1002/ange.202114729
2022
Journal Article
Plasma‐induced nanocrystalline domain engineering and surface passivation in mesoporous chalcogenide semiconductor thin films
Ashok, Aditya, Vasanth, Arya, Nagaura, Tomota, Eguchi, Miharu, Motta, Nunzio, Phan, Hoang‐Phuong, Nguyen, Nam‐Trung, Shapter, Joseph G., Na, Jongbeom and Yamauchi, Yusuke (2022). Plasma‐induced nanocrystalline domain engineering and surface passivation in mesoporous chalcogenide semiconductor thin films. Angewandte Chemie International Edition, 61 (14) e202114729, e202114729. doi: 10.1002/anie.202114729
2022
Journal Article
Co, Fe and N co-doped 1D assembly of hollow carbon nanoboxes for high-performance supercapacitors
Kim, Minjun, Wang, Chaohai, Earnshaw, Jacob, Park, Teahoon, Amirilian, Nasim, Ashok, Aditya, Na, Jongbeom, Han, Minsu, Rowan, Alan E., Li, Jiansheng, Yi, Jin Woo and Yamauchi, Yusuke (2022). Co, Fe and N co-doped 1D assembly of hollow carbon nanoboxes for high-performance supercapacitors. Journal of Materials Chemistry A, 10 (45), 24056-24063. doi: 10.1039/d2ta06950d
2022
Journal Article
Ultra-stable sodium ion storage of biomass porous carbon derived from sugarcane
Kim, Minjun, Fernando, Joseph F. S., Li, Zhibin, Alowasheeir, Azhar, Ashok, Aditya, Xin, Ruijing, Martin, Darren, Nanjundan, Ashok Kumar, Golberg, Dmitri, Yamauchi, Yusuke, Amiralian, Nasim and Li, Jinliang (2022). Ultra-stable sodium ion storage of biomass porous carbon derived from sugarcane.
2021
Journal Article
κ-carrageenan gel modified mesoporous gold chronocoulometric sensor for ultrasensitive detection of microRNA
Salahuddin, Bidita, Masud, Mostafa Kamal, Aziz, Shazed, Liu, Chia-Hung, Amiralian, Nasim, Ashok, Aditya, Hossain, S. M. Azad, Park, Hyeongyu, Wahab, Md Abdul, Amin, Mohammed A., Chari, M. Adharvana, Rowan, Alan E., Yamauchi, Yusuke, Hossain, Md. Shahriar A. and Kaneti, Yusuf Valentino (2021). κ-carrageenan gel modified mesoporous gold chronocoulometric sensor for ultrasensitive detection of microRNA. Bulletin of the Chemical Society of Japan, 95 (1), 198-207. doi: 10.1246/bcsj.20210286
2021
Journal Article
Heterostructuring mesoporous 2D iridium nanosheets with amorphous nickel boron oxide layers to improve electrolytic water splitting
Kang, Yunqing, Jiang, Bo, Malgras, Victor, Guo, Yanna, Cretu, Ovidiu, Kimoto, Koji, Ashok, Aditya, Wan, Zhe, Li, Hexing, Sugahara, Yoshiyuki, Yamauchi, Yusuke and Asahi, Toru (2021). Heterostructuring mesoporous 2D iridium nanosheets with amorphous nickel boron oxide layers to improve electrolytic water splitting. Small Methods, 5 (10) 2100679, 1-10. doi: 10.1002/smtd.202100679
2021
Journal Article
KOH-activated hollow ZIF-8 derived porous carbon: nanoarchitectured control for upgraded capacitive deionization and supercapacitor
Kim, Minjun, Xu, Xingtao, Xin, Ruijing, Earnshaw, Jacob, Ashok, Aditya, Kim, Jeonghun, Park, Teahoon, Nanjundan, Ashok Kumar, El-Said, Waleed A., Yi, Jin Woo, Na, Jongbeom and Yamauchi, Yusuke (2021). KOH-activated hollow ZIF-8 derived porous carbon: nanoarchitectured control for upgraded capacitive deionization and supercapacitor. ACS Applied Materials and Interfaces, 13 (44) acsami.1c09107, 52034-52043. doi: 10.1021/acsami.1c09107
2021
Journal Article
Universal electrochemical synthesis of mesoporous chalcogenide semiconductors: mesoporous CdSe and CdTe thin films for optoelectronic applications
Nagaura, Tomota, Phan, Hoang‐Phuong, Malgras, Victor, Pham, Tuan‐Anh, Lim, Hyunsoo, Ashok, Aditya, Kim, Jeonghun, You, Jungmok, Nguyen, Nam‐Trung, Na, Jongbeom and Yamauchi, Yusuke (2021). Universal electrochemical synthesis of mesoporous chalcogenide semiconductors: mesoporous CdSe and CdTe thin films for optoelectronic applications. Angewandte Chemie, 133 (17), 9746-9751. doi: 10.1002/ange.202013541
2021
Journal Article
Mesoporous alumina-titania composites with enhanced molybdenum adsorption towards medical radioisotope production
Benu, Didi Prasetyo, Earnshaw, Jacob, Ashok, Aditya, Tsuchiya, Kunihiko, Saptiama, Indra, Yuliarto, Brian, Suendo, Veinardi, Mukti, Rino Rakhmata, Fukumitsu, Nobuyoshi, Ariga, Katsuhiko, Kaneti, Yusuf Valentino and Yamauchi, Yusuke (2021). Mesoporous alumina-titania composites with enhanced molybdenum adsorption towards medical radioisotope production. Bulletin of the Chemical Society of Japan, 94 (2), 502-507. doi: 10.1246/bcsj.20200282
Supervision
Availability
- Dr Aditya Ashok is:
- Available for supervision
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Available projects
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Porous Two-Dimensional Inorganic Semiconductors for Photocatalytic Reactions
Develop advanced photocatalytic applications by innovating highly porous 2D inorganic semiconductors.
Media
Enquiries
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