Index
A
Active plasmonics, 120
Algebraic Reconstruction Techniques
(ART), 258, 260–262
Alignment, 409, 425, 428–430
All-optical-magnetic recording, 127
Anisotropy, 182, 201–205
Anisotropy axes, 40, 44, 47
Apoferritin, 295
Arc-discharge furnace, 307
Arrhenius law, 68, 69
Artifact, 286, 288, 289, 291–294, 298
Assembly’s morphology, 49
Atomic Force Microscopy (AFM), 220, 221,
225–227, 234, 236, 285–288, 290,
292, 294, 297
Atomic scale modeling, 41
B
Bayesian Linear Unmixing (BLU), 269, 270,
276, 277
Bcc, 220, 221, 227, 235, 236
Bi-magnetic nanoparticles, 40, 41, 88–90,
99, 102
Biocompatibility, 118
Biomedical applications, 139, 147, 153
Biomedicine, 137, 138, 152, 153, 156
Biomineralization, 161, 163–165, 174, 175
Biorobots, 173
Blocking temperature, 4, 8, 40, 45, 47–49,
55, 56
C
Cancer therapy, 118
Cantilever, 287–289
Carbon-coated, 305, 313, 315
Catalysis, 107, 108, 117, 118, 138, 154, 156
Cell labeling, 296, 298
Chaotic state, 69
Charge transfer, 114, 117, 128
Chemical synthesis, 408, 410, 416, 419, 420,
425–427, 429, 430
Circularly polarised photons, 242, 243
Clustering, 276–279, 281
Cobalt, 182, 184–186, 188, 190, 191, 193,
194, 197, 198, 200, 201, 209, 220,
221, 223, 234–236
Coercive field, 40, 47, 49, 81, 169, 170
Coercivity, 248, 250, 251, 404–406, 408,
409, 411, 412, 415, 418–421, 423,
425–427, 429, 430
Coexistence, 227, 234
Collective interactions, 182
Colloids, 383, 384, 387, 388, 390, 392
Compaction, 416, 421, 424–427, 429, 430
Compressed-sensing, 264, 266, 272
Confocal microscopy, 316, 319
Controlled magnetization MFM, 288
CoO, 88–91, 93–96, 99–101
Coprecipitation, 316
Core-shell, 147, 303, 305, 316, 410
Core-shell nanoparticles, 90, 94, 102, 291,
293, 296
Core-shell nanoparticle synthesis, 89
Core-void-shell, 147
Core/shell morphology, 41, 60
© Springer Nature Switzerland AG 2021
D. Peddis et al. (eds.), New Trends in Nanoparticle Magnetism,
Springer Series in Materials Science 308,
https://doi.org/10.1007/978-3-030-60473-8
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