Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Graphene research and applications, Carbon Nanotubes in Composites, 2D Materials and Applications, and Molecular Junctions and Nanostructures.
K.-S. Chen, I. Balla, N. S. Luu, and M. C. Hersam, "Emerging opportunities for two-dimensional materials in lithium-ion batteries," ACS Energy Letters , 2 , 2026 (2017).
— 2026cited by 0position: selected
Roadmap for Photonics with 2D Materials
Guidelines for accurate evaluation of photodetectors based on emerging semiconductor technologies
Roadmap for unconventional computing with nanotechnology
Roadmap on printable electronic materials for next-generation sensors
Sustainable Production of Biomass‐Derived Graphite and Graphene Conductive Inks from Biochar
Environmentally sustainable lithium-ion battery cathode binders based on cellulose nanocrystals
Bimolecularly passivated interface enables efficient and stable inverted perovskite solar cells
Recent Advances and Future Prospects for Memristive Materials, Devices, and Systems
Moiré synaptic transistor with room-temperature neuromorphic functionality
Synthesis, Hole Doping, and Electrical Properties of a Semiconducting Azatriangulene-Based Covalent Organic Framework
Atomic‐Scale Insights into the Interlayer Characteristics and Oxygen Reactivity of Bilayer Borophene
Fully Inkjet‐Printed, 2D Materials‐Based Field‐Effect Transistor for Water Sensing
Thermally conductive ultra-low-k dielectric layers based on two-dimensional covalent organic frameworks
Additive manufacturing and applications of nanomaterial-based sensors
Reconfigurable MoS<sub>2</sub> Memtransistors for Continuous Learning in Spiking Neural Networks
Angstrom-Scale Spectroscopic Visualization of Interfacial Interactions in an Organic/Borophene Vertical Heterostructure
Molecular Engineering of 2D Nanomaterial Field‐Effect Transistor Sensors: Fundamentals and Translation across the Innovation Spectrum
Neuromorphic nanoelectronic materials
Spiking neurons from tunable Gaussian heterojunction transistors
Lateral size of graphene oxide determines differential cellular uptake and cell death pathways in Kupffer cells, LSECs, and hepatocytes
2D materials for quantum information science
The Future of Layer-by-Layer Assembly: A Tribute to <i>ACS Nano</i> Associate Editor Helmuth Möhwald
Multi-terminal memtransistors from polycrystalline monolayer molybdenum disulfide
Borophene as a prototype for synthetic 2D materials development
Functional inks and printing of two-dimensional materials
Surface Oxidation of Graphene Oxide Determines Membrane Damage, Lipid Peroxidation, and Cytotoxicity in Macrophages in a Pulmonary Toxicity Model
Novel ALD Chemistry Enabled Low-Temperature Synthesis of Lithium Fluoride Coatings for Durable Lithium Anodes
Assessing and Mitigating the Hazard Potential of Two-Dimensional Materials
V. K. Sangwan, H.-S. Lee, H. Bergeron, I. Balla, M. E. Beck, K.-S. Chen, and M. C. Hersam, "Multi-terminal memtransistors from polycrystalline monolayer MoS 2 ," Nature , 554 , 500 (2018).
— 2018cited by 0position: selected
Northwestern University Materials Research Science and Engineering Center
EFRI BRAID: Emulating Cerebellar Temporally Coherent Signaling for Ultraefficient Emergent Prediction
Collaborative Research: FET: Medium: Neuroplane: Scalable Deep Learning through Gate-tunable MoS2 Crossbars
Probing Fundamental Magneto-Electronic Properties of Two-Dimensional Metal Halides
RAPID: Hydrated Graphene Oxide Elastomeric Composites for Sterilizable and Reusable N95 Masks
MRSEC: Center for Multifunctional Materials
Solution-Processed Monodisperse Nanoelectronic Heterostructures
CEMRI: Multifunctional Nanoscale Material Structures
REU Site in Nanoscale Science and Engineering
Preparation, Characterization, and Application of Monodisperse Carbon-Based Nanomaterials
REU Site in Nanoscale Science and Engineering
Structure, Properties, and Processing of Chirality-Resolved Single-Walled Carbon Nanotubes
NUE: Development of a Nanotechnology Undergraduate Education Global Network
CAREER: Nanoelectronic and Nanophotonic Characterization of Hybrid Hard and Soft Materials