572 results on '"Chrzan, D. C."'
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52. Equilibrium Analysis of Lattice-Mismatched Nanowire Heterostructures
53. Interfacial free energies determined from binary embedded alloy nanocluster geometry
54. First principles and experimental study of the electronic structure and phase stability of bulk thallium bromide
55. Dislocation core radii near elastic stability limits
56. Melting Kinetics of Confined Systems at the Nanoscale: Superheating and Supercooling
57. Superheating and supercooling of Ge nanocrystals embedded in SiO2
58. Large Melting-point Hysteresis of Ge Nanocrystals Embedded in SiO 2
59. Phonons and phase stability in Ti-V approximants to gum metal
60. Continuum theory of dislocations and buckling in graphene
61. Monte Carlo simulation of temperature-dependent elastic properties of graphene
62. Atomistic study of Eshelby's inclusion and inhomogeneity problems in a model bcc crystal
63. Reversible phase changes in Ge–Au nanoparticles
64. Spreading of dislocation cores in elastically anisotropic body-centered-cubic materials: The case of gum metal
65. Embedded Binary Eutectic Alloy Nanostructures: A New Class of Phase Change Materials
66. Plasticity in carbon nanotubes: Cooperative conservative dislocation motion
67. Nanoscale Structural Engineering via Phase Segregation: Au−Ge System
68. Photoluminescence enhancement of Er-doped silica containing Ge nanoclusters
69. Size-distribution evolution of ion-beam-synthesized nanoclusters in silica
70. Processing route for size distribution narrowing of ion beam synthesized nanoclusters
71. Topological description of the Stone-Wales defect formation energy in carbon nanotubes and graphene
72. Theory of Nanocluster Size Distributions from Ion Beam Synthesis
73. Nanomechanical Testing of Gum Metal
74. Modeling nucleation and growth of encapsulated nanocrystals: Kinetic Monte Carlo simulations and rate theory
75. Structure map for embedded binary alloy nanocrystals
76. Ultrahigh stress and strain in hierarchically structured hollow nanoparticles
77. Elasticity theory of topological defects in carbon nanotubes and graphene
78. Reconstruction energies of partial dislocations in cubic semiconductors
79. Xuet al.Reply
80. Kinetics of visible light photo-oxidation of Ge nanocrystals: Theory and in situ measurement
81. Superheating and supercooling of Ge nanocrystals embedded in SiO2
82. “Ideal” Engineering Alloys
83. Melting Kinetics of Confined Systems at the Nanoscale: Superheating and Supercooling
84. Publisher’s Note: Large Melting-Point Hysteresis of Ge Nanocrystals Embedded inSiO2[Phys. Rev. Lett.97, 155701 (2006)]
85. Sub-angstrom imaging of dislocation core structures: how well are experiments comparable with theory?
86. Large Melting-Point Hysteresis of Ge Nanocrystals Embedded inSiO2
87. Structure and energy of the partial dislocation cores in GaAs
88. Ab initiostudy of the ideal shear strength and elastic deformation behaviors of B2FeAlandNiAl
89. Distortion and Segregation in a Dislocation Core Region at Atomic Resolution
90. Irreversible island growth in the presence of anisotropic surface diffusion with long jumps
91. Metal-Induced Assembly of a Semiconductor Island Lattice: Ge Truncated Pyramids on Au-Patterned Si
92. Ideal torsional strengths and stiffnesses of carbon nanotubes
93. Computational study of stacking faults in sapphire using total energy methods
94. Mechanism of stress relaxation in Ge nanocrystals embedded in SiO2
95. Frank-Read sources within a continuum simulation.
96. Self-immobilization of superdislocations in L1[sub 2] alloys: a simple statistical analysis.
97. Ideal tensile strength ofB2transition-metal aluminides
98. Self-assembled nanostructures through wavelength-controlled spinodal decomposition
99. Adatom Transport on Strained Cu(001): Surface Crowdions
100. Ab initioprediction of the structure of glide set dislocation cores in GaAs
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