Sold out

Electrical Characterization of Thin Films of some Polymers - Electrical Characterization of Thin Films of Polymeric Materials

English · Paperback / Softback

Description

Read more

This book covered the electrical characterization of polymeric thin films. The materials in this book are very useful for M.Sc. Physics students as well as who are starting their career in research especially in area of material science. Chapter-1 describes the different techniques of polymer film formation. Chapter-2 covers theoretical aspects of different conduction mechanisms.The chapter also gives the information about dielectric relaxations and some models which explain the relaxation processes in polymeric dielectric materials.Chapter-3 deals the information about atomic force microscopy (AFM), differential scanning calorimetry (DSC). Chapter-4 displays the dielectric properties like dielectric constant, loss tangent, ac-conductivity of pure and doped PVK in frequency range 80 Hz to 5 MHz. Chapter-5 comprises of the dc-conductivity of ferrocene doped PVK samples.Chapter-6 describes the thermally stimulated discharge current (TSDC) studies for pure and ferrocene doped PVK.The slopes of initial rise plots give the activation energy of traps corresponding to peak for fixed poling temperature and poling field. Chapter-7 displays the study of spontaneous current emission (SCE).

Product details

Authors H Nayak, H. C. Nayak, R K Pandey, R. K. Pandey
Publisher LAP Lambert Academic Publishing
 
Languages English
Product format Paperback / Softback
Released 16.10.2012
 
EAN 9783659264375
ISBN 978-3-659-26437-5
No. of pages 204
Subject Natural sciences, medicine, IT, technology > Physics, astronomy

Customer reviews

No reviews have been written for this item yet. Write the first review and be helpful to other users when they decide on a purchase.

Write a review

Thumbs up or thumbs down? Write your own review.

For messages to CeDe.ch please use the contact form.

The input fields marked * are obligatory

By submitting this form you agree to our data privacy statement.