Experimental Micro/Nanoscale Thermal Transport

Experimental Micro/Nanoscale Thermal Transport book cover

Experimental Micro/Nanoscale Thermal Transport

Author(s): Xinwei Wang (Author)

  • Publisher: Wiley
  • Publication Date: 15 Jun. 2012
  • Edition: 1st
  • Language: English
  • Print length: 280 pages
  • ISBN-10: 1118007441
  • ISBN-13: 9781118007440

Book Description

This book covers the new technologies on micro/nanoscale thermal characterization developed in the Micro/Nanoscale Thermal Science Laboratory led by Dr. Xinwei Wang. Five new non-contact and non-destructive technologies are introduced: optical heating and electrical sensing technique, transient electro-thermal technique, transient photo-electro-thermal technique, pulsed laser-assisted thermal relaxation technique, and steady-state electro-Raman-thermal technique. These techniques feature significantly improved ease of implementation, super signal-to-noise ratio, and have the capacity of measuring the thermal conductivity/diffusivity of various one-dimensional structures from dielectric, semiconductive, to metallic materials.

Editorial Reviews

Review

“Experimentalists measuring thermal transport properties of micro-or nanoscale materials will definitely find this book well worth their time.” (IEEE Electrical Insulation Magazine, 1 September 2013

From the Inside Flap

A unique focus on experimental techniques for the characterization of thermal transport in micro/nanoscale materials

In the rapidly evolving field of nanotechnology, it ultimately comes down to experiments and measurement techniques to obtain and validate data on the thermophysical properties of nanoscale and nanostructured materials for various engineering applications. Experimental Micro/Nanoscale Thermal Transport details techniques developed in the author’s own laboratory that boast significantly reduced experimental time, superior signal-to-noise ratio, and high-accuracy measurement results.

The book walks readers through the entire process of setting up and implementing advanced new technologies, including physical principles and data analysis for measuring the thermal conductivity/diffusivity of micro/nanoscale films and wires, while giving clear instructions on how to conduct experiments, assess uncertainties, and interpret physical results.

Highlights of Experimental Micro/Nanoscale Thermal Transport include:

  • The introduction of the superior optical heating and electrical thermal sensing (OHETS) technique, along with other techniques in the frequency domain
  • Highly efficient methods for accurate transient measurement in the time domain, such as transient electro-thermal (TET), transient photo-electro-thermal (TPET), and pulsed laser-assisted-thermal relaxation (PLTR) techniques
  • Measurement of full-spectrum thermophysical properties using the generalized electro-thermal (GET) technique, one of the most advanced technologies available
  • Novel temperature differential measurement using Raman spectroscopy to achieve direct evaluation of the local thermal resistance at material interface

The first of its kind to focus on thermal characterization of the thermophysical properties of micro/nanoscale materials, this book will help researchers in material design and characterization tackle challenging thermal transport problems, quickly establish their own measurement techniques, and gain invaluable insight into experimental design.

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