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Your search keyword '"Peterson, Vanessa K."' showing total 263 results

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263 results on '"Peterson, Vanessa K."'

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52. Data-processing technique for the Taipan "Be-filter" neutron spectrometer at the Australian Nuclear Science and Technology Organisation.

55. A Robust Coin‐Cell Design for In Situ Synchrotron‐based X‐Ray Powder Diffraction Analysis of Battery Materials.

56. Dual-supramolecular contacts induce extreme Hofmann framework distortion and multi-stepped spin-crossover.

57. Novel K rattling: A new route to thermoelectric materials?

58. Elucidation of the high-voltage phase in the layered sodium ion battery cathode material P3–Na0.5Ni0.25Mn0.75O2.

59. Developing high-voltage spinel LiNi0.5Mn1.5O4 cathodes for high-energy-density lithium-ion batteries: current achievements and future prospects.

60. A Long Cycle‐Life High‐Voltage Spinel Lithium‐Ion Battery Electrode Achieved by Site‐Selective Doping.

61. Bulk and Surface Properties Regulation of Single/Double Perovskites to Realize Enhanced Oxygen Evolution Reactivity.

63. Monitoring the phase evolution in LiCoO2 electrodes during battery cycles using in‐situ neutron diffraction technique.

64. Designing a hybrid electrode toward high energy density with a staged Li+ and PF6 - deintercalation/intercalation mechanism.

66. Neutron powder diffraction study of [D.sub.2] sorption in [Cu.sub.3][(1,3,5,-benzenetricarboxylate).sub.2]

67. Hydration of tricalcium and dicalcium silicate mixtures studied using quasielastic neutron scattering

69. Square Grid Metal–Chloranilate Networks as Robust Host Systems for Guest Sorption.

73. Anisotropic Thermal and Guest‐Induced Responses of an Ultramicroporous Framework with Rigid Linkers.

76. Flexible Yttrium Coordination Geometry Inhibits "Bare-Metal" Guest Interactions in the Metal-Organic Framework Y(btc).

77. Batteries & Supercaps: In Situ and Operando Methods for Energy Storage and Conversion.

78. Cover Picture: An Easy‐to‐Use Custom‐Built Cell for Neutron Powder Diffraction Studies of Rechargeable Batteries (Chem. Methods 10/2022).

80. Crystallographic origin of cycle decay of the high-voltage LiNi0.5Mn1.5O4 spinel lithium-ion battery electrode.

81. Powder sample-positioning system for neutron scattering allowing gas delivery in top-loading cryofurnaces.

82. A comparative study of SrCo0.8Nb0.2O3−δ and SrCo0.8Ta0.2O3−δ as low-temperature solid oxide fuel cell cathodes: effect of non-geometry factors on the oxygen reduction reaction

83. Using neutron powder diffraction and first-principles calculations to understand the working mechanisms of porous coordination polymer sorbents.

84. In Situ Powder Diffraction Studies of Electrode Materials in Rechargeable Batteries.

88. A custom battery for operando neutron powder diffraction studies of electrode structure.

89. Electrochemistry and structure of the cobalt-free Li1+xMO2 (M = Li, Ni, Mn, Fe) composite cathode.

91. Guest Adsorption in the Nanoporous Metal–OrganicFramework Cu3(1,3,5-Benzenetricarboxylate)2:Combined In SituX-ray Diffraction and VaporSorption.

93. Tuning pore size in a zirconium--tricarboxylate metal--organic framework.

94. Interpenetration as a Mechanism for Negative Thermal Expansion in the Metal-Organic Framework Cu3(btb)2 (MOF-14).

95. Lithium Migration in Li4Ti5O12Studied Using in Situ Neutron Powder Diffraction.

96. Overcharging a lithium-ion battery: Effect on the Li x C6 negative electrode determined by in situ neutron diffraction.

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