Measurement of the Elastic Properties and Intrinsic Strength of Monolayer Graphene
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Summary
Graphene is established as the strongest material ever measured, and atomically perfect nanoscale materials can be mechanically tested to deformations well beyond the linear regime.
- Type
- article
- Published
- 2008-07-18
- Cited by
- 19,765
- References
- 30
- OpenAlex
- https://openalex.org/W2010971702
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206512830
Keywords
Nanoindentation, Elastic modulus, Graphene, Materials science, Stiffness
References
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- Tensile loading of ropes of single wall carbon nanotubes and their mechanical properties
- The Phenomena of Rupture and Flow in Solids
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- Finite indentation of an elastic membrane by a spherical indenter
- Mechanical and physical properties on carbon nanotube
- Lattice-dynamical model for graphite
- Reversible electromechanical characteristics of carbon nanotubes underlocal-probe manipulation
- Thickness of graphene and single-wall carbon nanotubes
- Third-Order Elastic Constants and the Velocity of Small Amplitude Elastic Waves in Homogeneously Stressed Media
- The Mechanical Response of Freestanding Circular Elastic Films Under Point and Pressure Loads
- Elastic Constants of Compression-Annealed Pyrolytic Graphite
- High-resolution scanning tunneling microscopy imaging of mesoscopic graphene sheets on an insulating surface
- Young's modulus of single-walled nanotubes
- Ultimate strength of carbon nanotubes: A theoretical study
- Strength and breaking mechanism of multiwalled carbon nanotubes under tensile load
- Nanomechanics of carbon tubes: Instabilities beyond linear response.
- Elastic and shear moduli of single-walled carbon nanotube ropes
- Nanomechanical properties of few-layer graphene membranes
- Two-dimensional atomic crystals.
Cited by
- Preparation, characterization and applications of functionalized carbon nano-onions
- Quantum charge transport in 10-nanometer scale suspended graphene transistors
- Chemically converted graphene induced molecular flattening of 5,10,15,20-tetrakis(1-methyl-4-pyridinio)porphyrin and its application for optical detection of cadmium(II) ions.
- Charm-bracelet-type poly(N-vinylcarbazole) functionalized with reduced graphene oxide for broadband optical limiting.
- Surface assembly of graphene oxide nanosheets on SiO2 particles for the selective isolation of hemoglobin.
- Facile fabrication of TiO2-graphene composite with enhanced photovoltaic and photocatalytic properties by electrospinning.
- Optimal length scales emerging from shear load transfer in natural materials: application to carbon-based nanocomposite design.
- Mechanical properties of freely suspended semiconducting graphene-like layers based on MoS2
- Photothermal self-oscillation and laser cooling of graphene optomechanical systems.
- Hydrogen bonding-driven rheological modulation of chemically reduced graphene oxide/poly(vinyl alcohol) suspensions and its application in electrospinning.
- Graphene and its derivatives for cell biotechnology.
- A novel flexible capacitive touch pad based on graphene oxide film.
- Non-hexagonal-ring defects and structures induced by healing and strain in graphene and functionalized graphene
- Large-scale quantification of CVD graphene surface coverage.
- Solution-processable graphene quantum dots.
- Improving the binding characteristics of tripodal compounds on single layer graphene.
- Enhanced Mechanical Properties of Graphene/Copper Nanocomposites Using a Molecular‐Level Mixing Process
- Electrical and optical characterization of atomically thin WS₂.
- Influence of lithium doping on the thermodynamic properties of graphene based superconductors
- Surface energy engineering for tunable wettability through controlled synthesis of MoS2.
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