Nanoparticulate Materials: Synthesis, Characterization, and - download pdf or read online

By Kathy Lu

ISBN-10: 1118291425

ISBN-13: 9781118291429

ISBN-10: 1118408993

ISBN-13: 9781118408995

Serving because the in simple terms systematic and entire therapy relating to nanoparticle-based fabrics, this publication covers synthesis, characterization, meeting, shaping and sintering of all kinds of nanoparticles together with metals, ceramics, and semiconductors. A single-authored paintings, it truly is compatible as a graduate-level textual content in nanomaterials courses.Content:
Chapter 1 advent (pages 1–23):
Chapter 2 Nanoparticle Synthesis (pages 24–127):
Chapter three Nanoparticle Characterization (pages 128–194):
Chapter four Nanoparticle?Based Superstructures (pages 195–262):
Chapter five Nanoparticle?Based fabric Shaping (pages 263–328):
Chapter 6 Sintering (pages 329–393):
Chapter 7 production matters and rising components (pages 394–414):

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Additional resources for Nanoparticulate Materials: Synthesis, Characterization, and Processing

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This oxygen species is attributed to the subsurface oxygen, which has been suggested to play an important role in heterogeneous catalysis. With decreasing gold particle size, an increase in the number of under-coordinated atoms is also evidenced by a reduced splitting between 5d3/2 and 5d5/2 states and a band narrowing [11]. SnO2 nanoparticles exhibit better sensitivity compared with bulk SnO2 material, an n-type material used in humidity sensing [12]. A model for size-dependent melting temperature, Debye temperature, diffusion activation energy, and vacancy formation energy, has been proposed.

25 Schematic representation of the stereolithography process. 27 (a) Conductive patterns ink-jet printed on polyimide substrates using copper nanoparticles and (b) confocal images of a single ink droplet after drying and a single printed line [173]. (Reprinted with permission from Jeong S, Woo K, Kim D, Lim S, Kim JS, Shin H, Xia Y, Moon J. Controlling the thickness of the surface oxide layer on Cu nanoparticles for the fabrication of conductive structures by ink-jet printing. 4 (left) Nanorods in the bilayer cluster with a hexagonal symmetry formed on the substrate.

Gold nanoparticle membranes as large-area surface monolayers. 18 Auger electron generation process. X-ray photoelectron generation process. Ion bombardment process during secondary ion mass spectroscopy. 19 X-ray fluorescence spectroscopy working mechanism. 20 Energy dispersive spectroscopy working mechanism. 21 EDS spectra of annealed Y2 O3 :Eu3 + nanoparticles prepared with (a) butanol, (b) hexanol, (c) oleic acid, and (d) oleic acid as surfactants [77]. (Reprinted with permission from Jadhav AP, Kim CW, Cha HG, Pawar AU, Jadhav NA, Pal U, Kang YS.

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Nanoparticulate Materials: Synthesis, Characterization, and Processing by Kathy Lu

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