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Transformations to the aluminum coordination environment and network polymerization in amorphous aluminosilicates under pressure
J. Chem. Phys. 161 (2024), 074503
Pressure dependent structure of amorphous magnesium aluminosilicates: The effect of replacing magnesia by alumina at the enstatite composition,
J. Chem. Phys. 160 (2024), 064501
Mapping the structural trends in zinc aluminosilicate glasses
J. Chem. Phys. 159 (2023), 064501
Structure of amorphous materials in the NASICON system Na1+xTi2SixP3-xO12,
J. Phys.: Condens. Matter 35 (2023), 274002
Ring compaction as a mechanism of densification in amorphous silica,
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Structure and related properties of amorphous magnesium aluminosilicates,
Phys. Rev. Materials 6 (2022), 125603
Structure of diopside, enstatite, and magnesium aluminosilicate glasses: A joint approach using
neutron and x-ray diffraction and solid-state NMR,
J. Chem. Phys. 157 (2022), 214503
Structure of molten NaCl and the decay of the pair-correlations,
J. Chem. Phys. 157 (2022), 094504
Relationship between atomic structure and excellent glass forming ability in Pd42.5Ni7.5Cu30P20 metallic glass,
J. Non-Cryst. Solids 596 (2022), 121868
Structure Determination in a New Class of Amorphous Cluster Compounds with Extreme Nonlinear Optical Properties,
J. Phys. Soc. Jpn. 91 (2022), 091004
Structural model for amorphous aluminosilicates,
J. Chem. Phys. 156 (2022), 064503
Structure and dynamics of aqueous NaCl solutions at high temperatures and pressures,
J. Chem. Phys 155 (2021), 194506
The article featured as an AIP Scilight
Structure of crystalline and amorphous materials in the NASICON system Na1+xAlxGe2-x(PO4)3,
J. Chem. Phys 155 (2021), 074501
The article featured on the cover page of JCP
Read the APS Highlight article on this work
Detailed structural analysis of amorphous Pd40Cu40P20: Comparison with the metallic glass Pd40Ni40P20 from the viewpoint of glass forming ability,
J. Non-Cryst. Solids 555 (2021), 120536
Structure and properties of densified silica glass: characterizing the order within disorder,
NPG Asia Materials 12 (2020), 1
Structure of As-Se glasses by neutron diffraction with isotope substitution,
J. Chem. Phys. 153 (2020), 154507
Many-body effects at the origin of structural transitions in B2O3,
J. Chem. Phys. 151 (2019), 224508
Ordering on different length scales in liquid and amorphous materials,
J. Stat. Mech. 2019 (2019), 114006
Pressure induced structural transformations in amorphous MgSiO3 and CaSiO3,
J. Non-Cryst. Solids X 3 (2019), 100024
Partial structure investigation of the traditional bulk metallic glass Pd40Ni40P20,
Phys. Rev. B 100 (2019), 054204
Structure of the intermediate phase glasses GeSe3 and GeSe4: The deployment of neutron diffraction with isotope substitution,
Front. Mater. 6 (2019), 133
Structure of semiconducting versus fast-ion conducting glasses in the Ag-Ge-Se system,
R. Soc. Open Sci. 5 (2018), 171401
Topological Ordering and Viscosity in the Glass-Forming Ge-Se System: The Search for a Structural or Dynamical Signature of the Intermediate Phase,
Front. Mater. 4 (2017), 32
High-pressure neutron diffraction apparatus for investigating the structure of liquids under hydrothermal conditions,
High Press. Res. 37 (2017), 529
Materials under pressure,
MRS Bulletin 42 (2017), 720
Structure of rare-earth chalcogenide glasses by neutron and x-ray diffraction,
J. Phys.: Condens. Matter 29 (2017), 225703
Optimizing the counting times for sample-in-container scattering experiments,
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Specific heat capacity measurement of Phyllostachys edulis (Moso bamboo) by differentials scanning calorimetry,
Const. Build. Mater. 125 (2016), 821
Structure of amorphous GeSe9 by neutron diffraction and first-principles molecular dynamics: Impact of trajectory sampling and size effects,
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Pressure-Driven Transformation of the Ordering in Disordered Network-Forming Materials,
Phys. Rev. B 93 (2016), 214204
Structure of Glassy Ag-Ge-Se by Neutron Diffraction with Isotope Substitution,
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Pressure-induced structural changes in the network-forming isostatic glass GeSe4: An investigation by neutron diffraction and first-principles molecular dynamics,
Phys. Rev. B 93 (2016), 014202
Topological Analysis of Void Spaces in Tungstate Frameworks: Assessing Storage Properties for the Environmentally Important Guest Molecules and Ions: CO2, UO2, PuO2, U, Pu, Sr2+, Cs+, CH4, and H2,
Sust. Chem. Eng. 3 (2015), 2112
Pressure-dependent structure of the null-scattering alloy Ti0.676Zr0.324,
High Press. Res.35 (2015), 239
Networks under pressure: the development of in situ high-pressure neutron diffraction for glassy and liquid materials,
J. Phys. Condens. Matter 27 (2015), 133201
Structure of the network glass-former ZnCl2: From the boiling point to the glass,
J. Non-Cryst. Solids. 407 (2015), 235
High-pressure transformation of SiO2 glass from a tetrahedral to an octahedral network: A joint approach using neutron diffraction and molecular dynamics,
Phys. Rev. Lett. 113 (2014), 135501
The density-driven defect-mediated network collapse of GeSe2 glass,
Phys. Rev. B 90 (2014), 054206
Density-driven structural transformations in B2O3 glass,
Phys. Rev. B 90 (2014), 024206
Packing and the structural transformations in liquid and amorphous oxides from ambient to extreme conditions,
Proc. Natl. Acad. Sci. 111 (2014), 10045
A combination of anomalous x-ray scattering and neutron diffraction for structural characterizations of Zr63Ni25Al12 metallic glass,
J. Phys.: Conf. Series 502 (2014), 012023
Identifying and characterising the different structural length scales in liquids and glasses: an experimental approach,
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Material Profiling for Photocrystallography: Relating Single-Crystal Photophysical and Structural Properties of Luminescent Bis-Cyclometalated Iridium-Based Complexe,
Cryst. Growth Des. 13 (2013), 1826
Structural Transformations on Vitrification in the Fragile Glass-Forming System CaAl2O4,
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The bound coherent neutron scattering lengths of the oxygen isotopes,
J. Phys.: Condens. Matter 24 (2012), 505105
Mechanisms of network collapse in GeO2 glass: high-pressure neutron diffraction with isotope substitution as arbitrator of competing models,
J. Phys.: Condens. Matter 24 (2012), 502101
Erratum: Density-driven structural transformations in network forming glasses: A high-pressure neutron diffraction study of GeO2 glass up to 17.5 GPa,
J. Phys.: Condens. Matter 24 (2012), 439601
A partial structure factor investigation of the bulk metallic glass Zr63Ni25Al12 as studied by using a combination of anomalous x-ray scattering and reverse Monte Carlo modeling,
Int. J. Mat. Res. 103 (2012), 1108
Density-driven structural transformations in network forming glasses: A high-pressure neutron diffraction study of GeO2 glass up to 17.5 GPa,
J. Phys.: Condens. Matter 24 (2012), 415102
Isotope effects in water as investigated by neutron diffraction and path integral molecular dynamics,
J. Phys.: Condens. Matter 24 (2012), 284126
Reply to Comment on "Oxygen as a Site Specific Probe of the Structure of Water and Oxide Materials",
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X-ray and neutron attenuation correction factors for spherical samples,
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Molecular Origins of Optoelectronic Properties in Coumarin Dyes: Toward Designer Solar Cell and Laser Applications,
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Structural properties of liquid Ge2Se3: A first-principles study,
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Structure of praseodymium and neodymium gallate glasses,
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Structure of eutectic liquids in the Au-Si, Au-Ge, and Ag-Ge binary systems by neutron diffraction,
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Structure of liquid and glassy ZnCl2,
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Establishing the structure of GeS2 at high pressures and temperatures:
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Neutron diffraction as a probe of liquid and glass structures under extreme conditions,,
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Networks under pressure,
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Packing and the structural transformations in liquid and amorphous oxides from ambient to extreme conditions,
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The Atomic-Scale Structure of Network Glass-Forming Materials,
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Fragile glass-formers reveal their structural secrets,
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Structure of liquid and glassy ZnCl2,
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Magnetic differences on GEM direct observation of closest R...R approach
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