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Plasma modification of polyolefins =...
~
Baneesh, N. S.
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Plasma modification of polyolefins = synthesis, characterization and applications /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Plasma modification of polyolefins/ edited by N. S. Baneesh ... [et al.].
其他題名:
synthesis, characterization and applications /
其他作者:
Baneesh, N. S.
出版者:
Cham :Springer International Publishing : : 2022.,
面頁冊數:
vi, 258 p. :ill. (some col.), digital ;24 cm.
內容註:
Chapter 1: Different techniques used for plasma modification of polyolefin surfaces -- Chapter 2: Air and Oxygen-containing plasma modification of polyolefin -- Chapter 3: Surface modification of polyolefin by nitrogen and ammonia low pressure plasma -- Chapter 4: Inert gas plasmas modification of polyolefin -- Chapter 5: Halo-form plasma modification of polyolefin surfaces -- Chapter 6: Plasma modification of EPDM rubber -- Chapter 7: Plasma assisted modification and etching process for polyolefin nanocomposites.
Contained By:
Springer Nature eBook
標題:
Polyolefins. -
電子資源:
https://doi.org/10.1007/978-3-030-52264-3
ISBN:
9783030522643
Plasma modification of polyolefins = synthesis, characterization and applications /
Plasma modification of polyolefins
synthesis, characterization and applications /[electronic resource] :edited by N. S. Baneesh ... [et al.]. - Cham :Springer International Publishing :2022. - vi, 258 p. :ill. (some col.), digital ;24 cm. - Engineering materials,1868-1212. - Engineering materials..
Chapter 1: Different techniques used for plasma modification of polyolefin surfaces -- Chapter 2: Air and Oxygen-containing plasma modification of polyolefin -- Chapter 3: Surface modification of polyolefin by nitrogen and ammonia low pressure plasma -- Chapter 4: Inert gas plasmas modification of polyolefin -- Chapter 5: Halo-form plasma modification of polyolefin surfaces -- Chapter 6: Plasma modification of EPDM rubber -- Chapter 7: Plasma assisted modification and etching process for polyolefin nanocomposites.
This book addresses plasma modification of polyolefin surfaces. It comprises 21 chapters divided into three major sections. The first section covers the different techniques used for plasma modification of polyolefin surfaces and the effects of various gases as a surrounding medium, while the second provides a detailed analysis of the physics and chemistry of plasma modification and discusses various innovative characterization techniques, as well as ageing of the modified surface. It focuses on the analysis of changes in polymers' surface chemistry using various spectroscopic techniques, and of changes in their surface morphology after plasma treatment using optical microscopy, electron microscopy and atomic force microscopy. In addition, it provides detailed information on the characterization of modified polymer surfaces. The book's third and last section covers a range of applications of plasma-modified polyolefin surfaces varying from the packaging industry to the biomedical field, and shares valuable insights on the lifecycle analysis of plasma modification and modified surfaces.
ISBN: 9783030522643
Standard No.: 10.1007/978-3-030-52264-3doiSubjects--Topical Terms:
1004443
Polyolefins.
LC Class. No.: TP1180.P67 / P57 2022
Dewey Class. No.: 668.4234
Plasma modification of polyolefins = synthesis, characterization and applications /
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Chapter 1: Different techniques used for plasma modification of polyolefin surfaces -- Chapter 2: Air and Oxygen-containing plasma modification of polyolefin -- Chapter 3: Surface modification of polyolefin by nitrogen and ammonia low pressure plasma -- Chapter 4: Inert gas plasmas modification of polyolefin -- Chapter 5: Halo-form plasma modification of polyolefin surfaces -- Chapter 6: Plasma modification of EPDM rubber -- Chapter 7: Plasma assisted modification and etching process for polyolefin nanocomposites.
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This book addresses plasma modification of polyolefin surfaces. It comprises 21 chapters divided into three major sections. The first section covers the different techniques used for plasma modification of polyolefin surfaces and the effects of various gases as a surrounding medium, while the second provides a detailed analysis of the physics and chemistry of plasma modification and discusses various innovative characterization techniques, as well as ageing of the modified surface. It focuses on the analysis of changes in polymers' surface chemistry using various spectroscopic techniques, and of changes in their surface morphology after plasma treatment using optical microscopy, electron microscopy and atomic force microscopy. In addition, it provides detailed information on the characterization of modified polymer surfaces. The book's third and last section covers a range of applications of plasma-modified polyolefin surfaces varying from the packaging industry to the biomedical field, and shares valuable insights on the lifecycle analysis of plasma modification and modified surfaces.
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