Peng Chen
Researcher Next ID · RN-021909
Researcher · Materials Science
Singapore, Singapore
- Works count
- 642
- Citation count
- 50,251
- H-index
- 114
- i10-index
- 401
Research interests
Publications
Atomically dispersed low-valent Au boosts photocatalytic hydroxyl radical production
Nature Chemistry · 2024 · https://doi.org/10.1038/s41557-024-01553-6
Orbital coupling of hetero-diatomic nickel-iron site for bifunctional electrocatalysis of CO2 reduction and oxygen evolution
Nature Communications · 2021 · 10.1038/s41467-021-24052-5
Iodine Capture Using Zr-Based Metal–Organic Frameworks (Zr-MOFs): Adsorption Performance and Mechanism
ACS Applied Materials & Interfaces · 2020 · 10.1021/acsami.0c02129
Atomically Dispersed Cobalt Trifunctional Electrocatalysts with Tailored Coordination Environment for Flexible Rechargeable Zn–Air Battery and Self‐Driven Water Splitting
Advanced Energy Materials · 2020 · https://doi.org/10.1002/aenm.202002896
Recent Advances on Graphene Quantum Dots: From Chemistry and Physics to Applications
Advanced Materials · 2019 · https://doi.org/10.1002/adma.201808283
Boosting the Photocatalytic Ability of Cu2O Nanowires for CO2 Conversion by MXene Quantum Dots
Advanced Functional Materials · 2018 · 10.1002/adfm.201806500
Systematic Bandgap Engineering of Graphene Quantum Dots and Applications for Photocatalytic Water Splitting and CO2 Reduction
ACS Nano · 2018 · 10.1021/acsnano.8b00498
Ultralong Phosphorescence of Water‐Soluble Organic Nanoparticles for In Vivo Afterglow Imaging
Advanced Materials · 2017 · 10.1002/adma.201606665
A Swellable Microneedle Patch to Rapidly Extract Skin Interstitial Fluid for Timely Metabolic Analysis
Advanced Materials · 2017 · 10.1002/adma.201702243
Surface Modified Ti 3 C 2 MXene Nanosheets for Tumor Targeting Photothermal/Photodynamic/Chemo Synergistic Therapy
ACS Applied Materials & Interfaces · 2017 · 10.1021/acsami.7b13421
Quantum dots derived from two-dimensional materials and their applications for catalysis and energy
Chemical Society Reviews · 2016 · 10.1039/c5cs00811e
Graphene quantum dots functionalized gold nanoparticles for sensitive electrochemical detection of heavy metal ions
Electrochimica Acta · 2015 · https://doi.org/10.1016/j.electacta.2015.01.026
Hybrid Fibers Made of Molybdenum Disulfide, Reduced Graphene Oxide, and Multi‐Walled Carbon Nanotubes for Solid‐State, Flexible, Asymmetric Supercapacitors
Angewandte Chemie · 2015 · https://doi.org/10.1002/ange.201411533
Facile Synthesis of Graphene Quantum Dots from 3D Graphene and their Application for Fe3+ Sensing
Advanced Functional Materials · 2014 · 10.1002/adfm.201303441
Glowing Graphene Quantum Dots and Carbon Dots: Properties, Syntheses, and Biological Applications
Small · 2014 · https://doi.org/10.1002/smll.201402648
Heteroatom-doped graphene materials: syntheses, properties and applications
Chemical Society Reviews · 2014 · https://doi.org/10.1039/c4cs00141a
Revealing the tunable photoluminescence properties of graphene quantum dots
Journal of Materials Chemistry C · 2014 · 10.1039/c4tc01191k
3D Graphene–Cobalt Oxide Electrode for High-Performance Supercapacitor and Enzymeless Glucose Detection
ACS Nano · 2012 · https://doi.org/10.1021/nn300097q
Macroporous and Monolithic Anode Based on Polyaniline Hybridized Three-Dimensional Graphene for High-Performance Microbial Fuel Cells
ACS Nano · 2012 · 10.1021/nn204656d
Superhydrophobic and superoleophilic hybrid foam of graphene and carbon nanotube for selective removal of oils or organic solvents from the surface of water
Chemical Communications · 2012 · https://doi.org/10.1039/c2cc35844a
Transparent, Flexible, All-Reduced Graphene Oxide Thin Film Transistors
ACS Nano · 2011 · https://doi.org/10.1021/nn201118c
Electrical Detection of Metal Ions Using Field-Effect Transistors Based on Micropatterned Reduced Graphene Oxide Films
ACS Nano · 2011 · https://doi.org/10.1021/nn103043v
One-step growth of graphene–carbon nanotube hybrid materials by chemical vapor deposition
Carbon · 2011 · https://doi.org/10.1016/j.carbon.2011.03.009
Real-time DNA detection using Pt nanoparticle-decorated reduced graphene oxide field-effect transistors
Nanoscale · 2011 · https://doi.org/10.1039/c1nr11149c
Real-time DNA detection using Pt nanoparticle-decorated reduced graphene oxide field-effect transistors
Nanoscale · 2011 · https://doi.org/10.1039/c1nr11149c
Biological and chemical sensors based on graphene materials
Chemical Society Reviews · 2011 · https://doi.org/10.1039/c1cs15270j
Nanoelectronic biosensors based on CVD grown graphene
Nanoscale · 2010 · 10.1039/c0nr00142b
Interfacing Live Cells with Nanocarbon Substrates
Langmuir · 2010 · https://doi.org/10.1021/la9048743
Electrical Detection of DNA Hybridization with Single‐Base Specificity Using Transistors Based on CVD‐Grown Graphene Sheets
Advanced Materials · 2010 · 10.1002/adma.200903645
Centimeter-Long and Large-Scale Micropatterns of Reduced Graphene Oxide Films: Fabrication and Sensing Applications
ACS Nano · 2010 · https://doi.org/10.1021/nn100780v
In Situ Synthesis of Metal Nanoparticles on Single-Layer Graphene Oxide and Reduced Graphene Oxide Surfaces
The Journal of Physical Chemistry C · 2009 · 10.1021/jp903821n
Doping Single‐Layer Graphene with Aromatic Molecules
Small · 2009 · 10.1002/smll.200801711
One-Pot Synthesis of Carbon-Coated SnO2 Nanocolloids with Improved Reversible Lithium Storage Properties
Chemistry of Materials · 2009 · 10.1021/cm900613d
Single-molecule nanocatalysis reveals heterogeneous reaction pathways and catalytic dynamics
Nature Materials · 2008 · 10.1038/nmat2319
Atomic Layer Deposition to Fine-Tune the Surface Properties and Diameters of Fabricated Nanopores
Nano Letters · 2004 · 10.1021/nl0494001
Current projects
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