Area of research
Biomedical Engineering · Condensed Matter Physics
Research interest
Research interests include Micro and Nano Robotics, Molecular Communication and Nanonetworks, Chemical and Physical Properties in Aqueous Solutions, and Advanced Sensor and Energy Harvesting Materials.
Inhalable biohybrid microrobots: a non-invasive approach for lung treatment
Integration of chemical and physical inputs for monitoring metabolites and cardiac signals in diabetes
Network pharmacology, bioinformatics analysis, and experimental validation to reveal the target and pharmacological mechanism of DHDK in treating breast cancer
Biohybrid microrobots locally and actively deliver drug-loaded nanoparticles to inhibit the progression of lung metastasis
Biohybrid microrobots regulate colonic cytokines and the epithelium barrier in inflammatory bowel disease
Effect of Phosphorus Modulation in Iron Single‐Atom Catalysts for Peroxidase Mimicking
Biohybrid Microalgae Robots: Design, Fabrication, Materials, and Applications
An integrated wearable microneedle array for the continuous monitoring of multiple biomarkers in interstitial fluid
A stretchable epidermal sweat sensing platform with an integrated printed battery and electrochromic display
Nanoparticle-modified microrobots for in vivo antibiotic delivery to treat acute bacterial pneumonia
Gastrointestinal tract drug delivery using algae motors embedded in a degradable capsule
Intelligent Micro‐/Nanorobots for Cancer Theragnostic
Extremophile-based biohybrid micromotors for biomedical operations in harsh acidic environments
Using Cell Membranes as Recognition Layers to Construct Ultrasensitive and Selective Bioelectronic Affinity Sensors
An epidermal patch for the simultaneous monitoring of haemodynamic and metabolic biomarkers
Smart Materials for Microrobots
A passive perspiration biofuel cell: High energy return on investment
ACE2 Receptor-Modified Algae-Based Microrobot for Removal of SARS-CoV-2 in Wastewater
Biomembrane‐Functionalized Micromotors: Biocompatible Active Devices for Diverse Biomedical Applications
Enzyme-powered Janus platelet cell robots for active and targeted drug delivery
A Macrophage–Magnesium Hybrid Biomotor: Fabrication and Characterization
A Nanomotor-Based Active Delivery System for Intracellular Oxygen Transport
Structure‐Dependent Optical Modulation of Propulsion and Collective Behavior of Acoustic/Light‐Driven Hybrid Microbowls
Micromotors for Active Delivery of Minerals toward the Treatment of Iron Deficiency Anemia
Micromotor Pills as a Dynamic Oral Delivery Platform
Chemical/Light‐Powered Hybrid Micromotors with “On‐the‐Fly” Optical Brakes
Mfsd2b is essential for the sphingosine-1-phosphate export in erythrocytes and platelets