Mohsen Saeidi Data-verified
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Postdoctoral Fellow
postdoc
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Biography and Research Information
OverviewAI-generated summary
Mohsen Saeidi's research focuses on the development and application of wearable electrochemical biosensors, particularly those utilizing hydrogel-based materials. His work investigates the mechanical properties and electrochemical behavior of these hydrogels, aiming to create devices capable of real-time monitoring of biofluids. Saeidi has explored functionalizing materials such as metal-organic frameworks with metallic nanoclusters for enhanced sensitivity in detecting analytes in biological fluids. He has also contributed to research on multilayered mesoporous composite nanostructures for label-free quantification and developed stretchable, adhesive hydrogel patches for online sweat monitoring, integrated with smartphone technology and artificial intelligence. His publications also extend to the electrochemical conversion of CO2 and the performance of carbon-based supercapacitors.
Metrics
- h-index: 10
- Publications: 37
- Citations: 453
Selected Publications
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Sustainable Polyaddition Path to Polyesters via Catalytic Homocoupling of Renewable Dicrotonate Monomers (2025)
Collaboration Network
Top Collaborators
- Challenges and Advances of Hydrogel-Based Wearable Electrochemical Biosensors for Real-Time Monitoring of Biofluids: From Lab to Market. A Review
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I
- A stretchable, adhesive, and wearable hydrogel-based patches based on a bilayer PVA composite for online monitoring of sweat by artificial intelligence-assisted smartphones
- Functionalization of metal-organic frameworks with metallic nanoclusters for ultra-sensitive monitoring of morphine in biological fluids
Showing 5 of 17 shared publications
- Challenges and Advances of Hydrogel-Based Wearable Electrochemical Biosensors for Real-Time Monitoring of Biofluids: From Lab to Market. A Review
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- A stretchable, adhesive, and wearable hydrogel-based patches based on a bilayer PVA composite for online monitoring of sweat by artificial intelligence-assisted smartphones
- Functionalization of metal-organic frameworks with metallic nanoclusters for ultra-sensitive monitoring of morphine in biological fluids
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
Showing 5 of 8 shared publications
- Challenges and Advances of Hydrogel-Based Wearable Electrochemical Biosensors for Real-Time Monitoring of Biofluids: From Lab to Market. A Review
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- A stretchable, adhesive, and wearable hydrogel-based patches based on a bilayer PVA composite for online monitoring of sweat by artificial intelligence-assisted smartphones
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- Experimental and mathematical modeling of mass transfer dynamics of hydrogen bubbles on textured electrodes during electrochemical water splitting
Showing 5 of 8 shared publications
- Challenges and Advances of Hydrogel-Based Wearable Electrochemical Biosensors for Real-Time Monitoring of Biofluids: From Lab to Market. A Review
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- A stretchable, adhesive, and wearable hydrogel-based patches based on a bilayer PVA composite for online monitoring of sweat by artificial intelligence-assisted smartphones
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- Experimental and mathematical modeling of mass transfer dynamics of hydrogen bubbles on textured electrodes during electrochemical water splitting
Showing 5 of 8 shared publications
- Efficient electrochemical CO<sub>2</sub> conversion by cobalt-based metal organic frameworks modified by bimetallic gold–silver nanostructures
- Synergistic coupling of tri-metallic Fe,Ni,Co(oxy)hydroxide with WO3/W Schottky junctions for enhancing photoelectrochemical seawater oxidation
- Experimental and mathematical modeling of mass transfer dynamics of hydrogen bubbles on textured electrodes during electrochemical water splitting
- Experimental and Mathematical Modeling of Dynamics of Hydrogen Bubbles During Electrochemical Water Splitting on Pilar-Shaped Electrode Arrays
- Synergistic Coupling of Tri-Metallic Fe,Ni,Co(Oxy)Hydroxide with Wo3/W Schottky Junctions for Enhancing Photoelectrochemical Seawater Oxidation
Showing 5 of 7 shared publications
- Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I
- Functionalization of metal-organic frameworks with metallic nanoclusters for ultra-sensitive monitoring of morphine in biological fluids
- Efficient electrochemical CO<sub>2</sub> conversion by cobalt-based metal organic frameworks modified by bimetallic gold–silver nanostructures
- Functionalization of Metal-Organic Frameworks with Bimetallic Nanoclusters for Ultra-Sensitive Monitoring of Morphine in Biological Fluids
- Challenges and Advances of Hydrogel-Based Wearable Electrochemical Biosensors for Real-Time Monitoring of Biofluids: From Lab to Market. A Review
- A stretchable, adhesive, and wearable hydrogel-based patches based on a bilayer PVA composite for online monitoring of sweat by artificial intelligence-assisted smartphones
- A Stretchable, Adhesive, and Wearable Hydrogel-Based Patches Based on a Bilayer Pva Composite for Online Monitoring of Sweat by Artificial Intelligence-Assisted Smartphones
- Tuning overall water dissociation performance in Fe–Ni–Co layered hydroxides via S, P, and B doping: Experimental and theoretical study
- Experimental and mathematical modeling of mass transfer dynamics of hydrogen bubbles on textured electrodes during electrochemical water splitting
- Experimental and Mathematical Modeling of Dynamics of Hydrogen Bubbles During Electrochemical Water Splitting on Pilar-Shaped Electrode Arrays
- Experimental and Mathematical Modeling of Mass Transfer Dynamics of Hydrogen Bubbles on Textured Electrodes During Electrochemical Water Splitting
- Tuning overall water dissociation performance in Fe–Ni–Co layered hydroxides via S, P, and B doping: Experimental and theoretical study
- Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I
- Functionalization of metal-organic frameworks with metallic nanoclusters for ultra-sensitive monitoring of morphine in biological fluids
- Functionalization of Metal-Organic Frameworks with Bimetallic Nanoclusters for Ultra-Sensitive Monitoring of Morphine in Biological Fluids
- Challenges and Advances of Hydrogel-Based Wearable Electrochemical Biosensors for Real-Time Monitoring of Biofluids: From Lab to Market. A Review
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- Challenges and Advances of Hydrogel-Based Wearable Electrochemical Biosensors for Real-Time Monitoring of Biofluids: From Lab to Market. A Review
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- Electrochemical Wearable Biosensors and Bioelectronic Devices Based on Hydrogels: Mechanical Properties and Electrochemical Behavior
- Experimental and mathematical modeling of mass transfer dynamics of hydrogen bubbles on textured electrodes during electrochemical water splitting
- Experimental and Mathematical Modeling of Dynamics of Hydrogen Bubbles During Electrochemical Water Splitting on Pilar-Shaped Electrode Arrays
- Experimental and Mathematical Modeling of Mass Transfer Dynamics of Hydrogen Bubbles on Textured Electrodes During Electrochemical Water Splitting
- Experimental and mathematical modeling of mass transfer dynamics of hydrogen bubbles on textured electrodes during electrochemical water splitting
- Experimental and Mathematical Modeling of Dynamics of Hydrogen Bubbles During Electrochemical Water Splitting on Pilar-Shaped Electrode Arrays
- Experimental and Mathematical Modeling of Mass Transfer Dynamics of Hydrogen Bubbles on Textured Electrodes During Electrochemical Water Splitting
- Functionalization of metal-organic frameworks with metallic nanoclusters for ultra-sensitive monitoring of morphine in biological fluids
- Functionalization of Metal-Organic Frameworks with Bimetallic Nanoclusters for Ultra-Sensitive Monitoring of Morphine in Biological Fluids
- Functionalization of metal-organic frameworks with metallic nanoclusters for ultra-sensitive monitoring of morphine in biological fluids
- Functionalization of Metal-Organic Frameworks with Bimetallic Nanoclusters for Ultra-Sensitive Monitoring of Morphine in Biological Fluids
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