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Item Details
Title: APPLIED SCANNING PROBE METHODS XII
CHARACTERIZATION
By: Bharat Bhushan (Editor), Harald Fuchs (Editor)
Format: Hardback

List price: £149.99


We currently do not stock this item, please contact the publisher directly for further information.

ISBN 10: 3540850384
ISBN 13: 9783540850380
Publisher: SPRINGER-VERLAG BERLIN AND HEIDELBERG GMBH & CO. KG
Pub. date: 4 November, 2008
Series: NanoScience and Technology
Pages: 224
Description: This volume examines the physical and technical foundation for progress in applied scanning probe techniques. It first introduces scanning probe microscopy, including sensor technology and tip characterization, and then details various industrial applications.
Synopsis: Crack initiation and growth are key issues when it comes to the mechanical reliab- ity of microelectronic devices and microelectromechanical systems (MEMS). Es- cially in organic electronics where exible substrates will play a major role these issues will become of utmost importance. It is therefore necessary to develop me- ods which in situ allow the experimental investigation of surface deformation and fracture processes in thin layers at a micro and nanometer scale. While scanning electron microscopy (SEM) might be used it is also associated with some major experimental drawbacks. First of all if polymers are investigated they usually have to be coated with a metal layer due to their commonly non-conductive nature. Additi- ally they might be damaged by the electron beam of the microscope or the vacuum might cause outgasing of solvents or evaporation of water and thus change material properties. Furthermore, for all kinds of materials a considerable amount of expe- mental effort is necessary to build a tensile testing machine that ts into the chamber. Therefore, a very promising alternative to SEM is based on the use of an atomic force microscope (AFM) to observe in situ surface deformation processes during straining of a specimen. First steps towards this goal were shown in the 1990s in [1-4] but none of these approaches truly was a microtensile test with sample thicknesses in the range of micrometers. To the authors' knowledge, this was shown for the rst time by Hild et al. in [5]. 16.
Illustrations: 14 Tables, black and white; LV, 224 p.
Publication: Germany
Imprint: Springer-Verlag Berlin and Heidelberg GmbH & Co. K
Returns: Returnable
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