Area of research
Materials Chemistry · Electronic, Optical and Magnetic Materials
Research interest
Centers & Institutes Patents & Commercialization Funding Opportunities Student Research Industry Partnerships Overview Industry Academic Partnerships Recruiting Consulting Research Innovation Alumni Industry Board
Scalable Synthesis of MXene Scrolls
Critical Assessment of Intrinsic Antibacterial Properties and Photothermal Therapy Potential of MXene Nanosheets
Machine Learning Toolkits and Frameworks for Materials Design
Exciplex-enabled high-efficiency, fully stretchable OLEDs
Composition–structure–property relationships in MXenes
Abrasion-resistant bioelectronics based on a three-dimensional topological architecture and covalent chemical anchoring
Photothermal effects control ultrafast charge transport in titanium carbide MXenes
Influence of Disorder on the Electronic Properties and Magnetotransport of Ti
<sub>3</sub>
C
<sub>2</sub>
T
<sub>
<i>x</i>
</sub>
Single-Flake Devices
Triphasic synthesis of halogen-terminated MXenes
Sodium-Ion-Assisted Minimally Intensive Layer Delamination of Ti-Based MXenes: Implications for Biomedical Applications
MXene-Modified Fiber-Based Electronic Tongue for Sensitive Detection of Antibiotic Residues in Milk
Mechanical suppression of proton-coupled electron transfer in MXene nanoconfinement
Numerical simulation of effective dielectric constant of MXene films
Large-Scale Integration of Experimental and Computational Data for 2D Materials
MXene‐Coated 3D Printed Horn Antennas for Ku Frequency Band
Artifact-free, colocalized opto-electrophysiology enabled by a flexible, multimodal interface integrating transparent MXene microelectrodes and microLEDs
<i>In Situ</i> Raman and Fourier Transform Infrared Spectroscopy Studies of MXene−Electrolyte Interfaces
Tough MXene-Cellulose Nanofibril Ionotronic Dual-Network Hydrogel Films for Stable Zinc Anodes
<i>In Situ</i> Raman and Fourier Transform Infrared Spectroscopy Studies of MXene−Electrolyte Interfaces
Order-to-disorder transition due to entropy in layered and 2D carbides
Record Efficiency of β‐Phase PVDF‐MXene Composites in Thin‐Film Dielectric Capacitors
The Future of MXene Fibers
Effects of Etching and Delamination on Biocompatibility of Ti-Based MXenes
Layer-by-layer mechanism of the MAX phase to MXene transformation
MXene polymer composites: A review
<i>Operando</i> Tracking of Resistance, Thickness, and Mass of Ti<sub>3</sub>C<sub>2</sub>T<i><sub>x</sub></i> MXene in Water‐in‐Salt Electrolyte
Emerging Ta<sub>4</sub>C<sub>3</sub> and Mo<sub>2</sub>Ti<sub>2</sub>C<sub>3</sub> MXene Nanosheets for Ultrafast Photonics
Emerging Ta<sub>4</sub>C<sub>3</sub> and Mo<sub>2</sub>Ti<sub>2</sub>C<sub>3</sub> MXene Nanosheets for Ultrafast Photonics
Conductivity hysteresis in MXene driven by structural dynamics of nanoconfined water
Collaborative Research: Unlocking New Properties of MXenes: From Optical Response to Novel Electronic Phenomena
Synthesis and Optoelectronic Properties of Solid Solution MXenes
I-Corps: Highly Conductive and Additive-free Aqueous MXene Inks for Smart Textile Applications
EAGER: MXene Sorbents for Continuous Renal Replacement Therapy
International Collaboration in Chemistry: Ionic Liquid in Confined Environments
EAGER: Carbide Derived Carbons with Pore Structure and Surface Chemistry Designed for Selective Adsorption of Proteins
IGERT Fellowships in Nanoscale Science and Engineering: The Two-University/One Campus Approach
RET Site: Research Experiences for Teachers in Nanotechnology (RET-Nano) at Drexel University and the University of Pennsylvania
NIRT: Nanotube-Based Nanofluidic Devices and Fundamental Fluid Studies at the Nanoscale
Manufacturing of Drug Nano-Dispersions and Nano-Particles by Mechanochemical Synthesis
The RET Program at Drexel and UPenn: Bringing two universities together to empower Philadelphia teachers in the area of nanotechnology
IGERT: Nanoscale Engineering and Science: One Campus, Two- University Approach
NIRT: Carbon Nanopipes for Nanofluidic Devices and In-situ Fluid Studies
MRI: Acquisition of Near-Field and UV Raman Instruments
CAREER: Phase Transformations in Ceramics and Semiconductors Under Contact Loading
Ductile Regime Single Point Diamond Machining of Semiconductors: Mechanisms Exploration and Process Development
SGER: In-situ Investigation of Fluid Processes in a Carbon Nanotube
SGER: In-situ Investigation of Fluid Processes in a Carbon Nanotube
CAREER: Phase Transformations in Ceramics and Semiconductors Under Contact Loading
Ductile Regime Single Point Diamond Machining of Semiconductors: Mechanisms Exploration and Process Development