
Siavash Iravani
Articles
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Nov 12, 2024 |
pubs.rsc.org | Atefeh Zarepour |Arezoo Khosravi |Siavash Iravani |Sepehr Larijani
Advancing Paper-Based Sensors with MXenes and MOFs: Exploring the Cutting-Edge Innovations MXenes and metal-organic frameworks (MOFs) are emerging as promising materials for integration into paper-based sensors (PSs), offering unique properties that can enhance sensor performance in various applications.
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Oct 29, 2024 |
pubs.rsc.org | Atefeh Zarepour |Bahar Gök |Arezoo Khosravi |Siavash Iravani
Bacterial nanocelluloses as sustainable biomaterials for advanced wound healing and dressings Wound healing remains a significant clinical challenge, calling for innovative approaches to expedite the recovery process and improve patient outcomes.
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May 7, 2024 |
pubs.rsc.org | R. Meenakshi |Arezoo Khosravi |Atefeh Zarepour |Siavash Iravani
Self-Healing Materials in Biomedicine and the Circular Economy Self-healing (bio)materials represent a cornerstone in the transition towards a circular economy in healthcare. These materials possess the remarkable ability to autonomously repair damage, thereby extending the lifespan of medical devices, implants, sensors, wound dressings, and drug delivery systems.
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Mar 30, 2024 |
pubs.rsc.org | Siavash Iravani |Atefeh Zarepour |Arezoo Khosravi |Rajender S. Varma
Next-generation nitrogen fixation strategy: empowering electrocatalysis with MXenes In recent years, the development of sustainable and cost-effective electrocatalysts for nitrogen (N2) fixation has garnered significant attention, leading to the introduction of next-generation materials with electrocatalytic properties.
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Mar 28, 2024 |
pubs.rsc.org | Atefeh Zarepour |Arezoo Khosravi |Siavash Iravani |Ali J. Zarrabi
Innovative Approaches to Cancer Treatment: Graphene Quantum Dots for Photodynamic and Photothermal Therapy Graphene quantum dots (GQDs) hold great promise for photodynamic and photothermal cancer therapies. Their unique properties, such as exceptional photoluminescence, photothermal conversion efficiency, and surface functionalization capabilities, make them attractive candidates for targeted cancer treatment.
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