Poisson's ratio and modern materials

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Poisson's ratio and modern materials is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1038/NMAT3134
P698PubMed publication ID22020006

P2093author name stringA. L. Greer
R. S. Lakes
G. N. Greaves
T. Rouxel
P2860cites workCorrelation of fragility of supercooled liquids with elastic properties of glassesQ21563745
Calculation of bulk moduli of diamond and zinc-blende solidsQ27440192
Detection of first-order liquid/liquid phase transitions in yttrium oxide-aluminum oxide meltsQ28298425
Large negative linear compressibility of Ag3[Co(CN)6].Q30484894
Grain boundaries exhibit the dynamics of glass-forming liquids.Q30487669
Melting of iron at the physical conditions of the Earth's coreQ31037113
A structural model for metallic glassesQ33206964
Elasticity of agr-Cristobalite: A Silicon Dioxide with a Negative Poisson's RatioQ33295712
X-ray diffraction measurements of Mo melting to 119 GPa and the high pressure phase diagram.Q33424736
Supercooled liquids and the glass transitionQ33938896
Universal link between the boson peak and transverse phonons in glassQ82270327
Colloquium: The glass transition and elastic models of glass-forming liquidsQ107225700
Metallic glassesQ34674866
Foam Structures with a Negative Poisson's RatioQ34676093
Polyamorphism and liquid-liquid phase transitions: challenges for experiment and theoryQ40163872
Pressure-induced volume expansion of zeolites in the natrolite familyQ43983752
Topologically ordered amorphous silica obtained from the collapsed siliceous zeolite, silicalite-1-F: a step toward "perfect" glassesQ44726711
Atomic packing and short-to-medium-range order in metallic glassesQ46911759
Glass behaviour: Poisson's ratio and liquid's fragility.Q51151533
Lattice dynamics and thermodynamics of molybdenum from first-principles calculations.Q51766261
Zeolite collapse and polyamorphism.Q51903678
Identifying vibrations that destabilize crystals and characterize the glassy state.Q51972769
The rheology of collapsing zeolites amorphized by temperature and pressure.Q52010125
Ductile and brittle crystalsQ56168804
Negative Thermal Expansion from 0.3 to 1050 Kelvin in ZrW2O8Q56484919
Cork: properties, capabilities and applicationsQ57171790
Sign Change of Poisson's Ratio for Carbon Nanotube SheetsQ57536254
Negative Poisson's Ratios for Extreme States of MatterQ57536479
Negative Poisson's ratios as a common feature of cubic metalsQ57536493
Polymorphic Phase Transitions in Liquids and GlassesQ57567948
Auxetic behaviour from rotating rigid unitsQ57813858
Structural Description of Pressure-Induced Amorphization inZrW2O8Q57878474
Do Zeolites Have Negative Poisson’s Ratios?Q57914822
Interpretation of experimental data for Poisson's ratio of highly nonlinear materialsQ57920010
The fabrication of microporous polyethylene having a negative Poisson's ratioQ57926310
Elastic anisotropy and extreme Poisson’s ratios in single crystalsQ57929917
A novel mechanism for generating auxetic behaviour in reticulated foams: missing rib foam modelQ57945341
Off-Axis Elastic Properties and the Effect of Extraframework Species on Structural Flexibility of the NAT-Type Zeolites: Simulations of Structure and Elastic PropertiesQ57948372
Inorganic glasses, glass-forming liquids and amorphizing solidsQ58141646
Molecular network designQ59048566
Microstructure of isotropic materials with negative Poisson's ratioQ59051973
‘Melting ice’ I at 77 K and 10 kbar: a new method of making amorphous solidsQ59061662
Glass behaviour: Poisson's ratio and liquid's fragilityQ59066206
Structure and Properties of an Amorphous Metal-Organic FrameworkQ59456564
Composition and polyamorphism in supercooled yttria–alumina meltsQ59798665
Network Rigidity inGeSe2Glass at High PressureQ59990104
Universal relation between viscous flow and fast dynamics in glass-forming materialsQ61926071
Mechanism for negative poisson ratios over the alpha- beta transition of cristobalite, SiO2: A molecular-dynamics studyQ74322088
Acoustic velocities and phase transitions in molybdenum under strong shock compressionQ74496219
Poisson's ratio in polymer gels near the phase-transition pointQ78057135
Acoustic velocities and refractive index of SiO2 glass to 57.5 GPa by Brillouin scatteringQ78115495
First-principles pseudopotential calculations of the elastic properties of diamond, Si, and GeQ78197914
Is the fragility of a liquid embedded in the properties of its glass?Q79237638
Amorphization induced by pressure: results for zeolites and general implicationsQ79419801
Colossal positive and negative thermal expansion in the framework material Ag3[Co(CN)6]Q80657023
Poisson's ratio and the fragility of glass-forming liquidsQ80890049
Heirs of liquid treasuresQ80963144
Response: Negative Poisson's Ratio MaterialsQ81112288
Negative Poisson's ratios in siliceous zeolite MFI-silicaliteQ81406202
Poisson's ratio and the densification of glass under high pressureQ81675494
Fracture of brittle metallic glasses: brittleness or plasticityQ81763689
P2507corrigendum / erratumAuthor Correction: Poisson's ratio and modern materialsQ91816156
P433issue11
P407language of work or nameEnglishQ1860
P304page(s)823-837
P577publication date2011-11-01
P1433published inNature MaterialsQ1998645
P1476titlePoisson's ratio and modern materials
P478volume10

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