scholarly article | Q13442814 |
P356 | DOI | 10.1038/NMAT3134 |
P698 | PubMed publication ID | 22020006 |
P2093 | author name string | A. L. Greer | |
R. S. Lakes | |||
G. N. Greaves | |||
T. Rouxel | |||
P2860 | cites work | Correlation of fragility of supercooled liquids with elastic properties of glasses | Q21563745 |
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Melting of iron at the physical conditions of the Earth's core | Q31037113 | ||
A structural model for metallic glasses | Q33206964 | ||
Elasticity of agr-Cristobalite: A Silicon Dioxide with a Negative Poisson's Ratio | Q33295712 | ||
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Supercooled liquids and the glass transition | Q33938896 | ||
Universal link between the boson peak and transverse phonons in glass | Q82270327 | ||
Colloquium: The glass transition and elastic models of glass-forming liquids | Q107225700 | ||
Metallic glasses | Q34674866 | ||
Foam Structures with a Negative Poisson's Ratio | Q34676093 | ||
Polyamorphism and liquid-liquid phase transitions: challenges for experiment and theory | Q40163872 | ||
Pressure-induced volume expansion of zeolites in the natrolite family | Q43983752 | ||
Topologically ordered amorphous silica obtained from the collapsed siliceous zeolite, silicalite-1-F: a step toward "perfect" glasses | Q44726711 | ||
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Zeolite collapse and polyamorphism. | Q51903678 | ||
Identifying vibrations that destabilize crystals and characterize the glassy state. | Q51972769 | ||
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Cork: properties, capabilities and applications | Q57171790 | ||
Sign Change of Poisson's Ratio for Carbon Nanotube Sheets | Q57536254 | ||
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Negative Poisson's ratios as a common feature of cubic metals | Q57536493 | ||
Polymorphic Phase Transitions in Liquids and Glasses | Q57567948 | ||
Auxetic behaviour from rotating rigid units | Q57813858 | ||
Structural Description of Pressure-Induced Amorphization inZrW2O8 | Q57878474 | ||
Do Zeolites Have Negative Poisson’s Ratios? | Q57914822 | ||
Interpretation of experimental data for Poisson's ratio of highly nonlinear materials | Q57920010 | ||
The fabrication of microporous polyethylene having a negative Poisson's ratio | Q57926310 | ||
Elastic anisotropy and extreme Poisson’s ratios in single crystals | Q57929917 | ||
A novel mechanism for generating auxetic behaviour in reticulated foams: missing rib foam model | Q57945341 | ||
Off-Axis Elastic Properties and the Effect of Extraframework Species on Structural Flexibility of the NAT-Type Zeolites: Simulations of Structure and Elastic Properties | Q57948372 | ||
Inorganic glasses, glass-forming liquids and amorphizing solids | Q58141646 | ||
Molecular network design | Q59048566 | ||
Microstructure of isotropic materials with negative Poisson's ratio | Q59051973 | ||
‘Melting ice’ I at 77 K and 10 kbar: a new method of making amorphous solids | Q59061662 | ||
Glass behaviour: Poisson's ratio and liquid's fragility | Q59066206 | ||
Structure and Properties of an Amorphous Metal-Organic Framework | Q59456564 | ||
Composition and polyamorphism in supercooled yttria–alumina melts | Q59798665 | ||
Network Rigidity inGeSe2Glass at High Pressure | Q59990104 | ||
Universal relation between viscous flow and fast dynamics in glass-forming materials | Q61926071 | ||
Mechanism for negative poisson ratios over the alpha- beta transition of cristobalite, SiO2: A molecular-dynamics study | Q74322088 | ||
Acoustic velocities and phase transitions in molybdenum under strong shock compression | Q74496219 | ||
Poisson's ratio in polymer gels near the phase-transition point | Q78057135 | ||
Acoustic velocities and refractive index of SiO2 glass to 57.5 GPa by Brillouin scattering | Q78115495 | ||
First-principles pseudopotential calculations of the elastic properties of diamond, Si, and Ge | Q78197914 | ||
Is the fragility of a liquid embedded in the properties of its glass? | Q79237638 | ||
Amorphization induced by pressure: results for zeolites and general implications | Q79419801 | ||
Colossal positive and negative thermal expansion in the framework material Ag3[Co(CN)6] | Q80657023 | ||
Poisson's ratio and the fragility of glass-forming liquids | Q80890049 | ||
Heirs of liquid treasures | Q80963144 | ||
Response: Negative Poisson's Ratio Materials | Q81112288 | ||
Negative Poisson's ratios in siliceous zeolite MFI-silicalite | Q81406202 | ||
Poisson's ratio and the densification of glass under high pressure | Q81675494 | ||
Fracture of brittle metallic glasses: brittleness or plasticity | Q81763689 | ||
P2507 | corrigendum / erratum | Author Correction: Poisson's ratio and modern materials | Q91816156 |
P433 | issue | 11 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 823-837 | |
P577 | publication date | 2011-11-01 | |
P1433 | published in | Nature Materials | Q1998645 |
P1476 | title | Poisson's ratio and modern materials | |
P478 | volume | 10 |
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