Soft matter gradient surfaces : (Record no. 45722)

MARC details
000 -LEADER
fixed length control field 04182nam a2200253 a 4500
001 - CONTROL NUMBER
control field vtls000060923
003 - CONTROL NUMBER IDENTIFIER
control field KUKTEM
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20251117145419.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 120601t2012 njua f b 001 0 eng d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9780470522653 (hardback)
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 0470522658 (hardback)
039 #9 - LEVEL OF BIBLIOGRAPHIC CONTROL AND CODING DETAIL [OBSOLETE]
Level of rules in bibliographic description 201209201306
Level of effort used to assign nonsubject heading access points fauzi
-- 201206011618
-- irma
090 ## - LOCALLY ASSIGNED LC-TYPE CALL NUMBER (OCLC); LOCAL CALL NUMBER (RLIN)
Classification number (OCLC) (R) ; Classification number, CALL (RLIN) (NR) TA418.9.F85 S64 2012
245 00 - TITLE STATEMENT
Title Soft matter gradient surfaces :
Remainder of title methods and applications/
Statement of responsibility, etc. edited by Jan Genzer
260 ## - PUBLICATION, DISTRIBUTION, ETC.
Place of publication, distribution, etc. Hoboken, N.J. :
Name of publisher, distributor, etc. Wiley,
Date of publication, distribution, etc. c2012
300 ## - PHYSICAL DESCRIPTION
Extent xiii, 443 p. :
Other physical details ill. ;
Dimensions 25 cm.
504 ## - BIBLIOGRAPHY, ETC. NOTE
Bibliography, etc. note Includes bibliographical references and index
505 8# - FORMATTED CONTENTS NOTE
Formatted contents note Machine generated contents note: Preface Jan Genzer Chapter 1. Gradient libraries: Harnessing a ubiquitous phenomenon to accelerate experimentation Michael J. Fasolka Chapter 2. Classification of key attributes of soft material gradients Jan Genzer and Rajendra R. Bhat Chapter 3. Discovery and optimization of sensing materials using discrete and gradient arrays Radislav A. Potyrailo Chapter 4. Colliding self-Assembly waves in organosilane monolayers Kirill Efimenko, Ali E. Ozcam, Jan Genzer, Daniel A. Fischer, Fredrick R. Phelan, and Jack F. Douglas Chapter 5. Orientational anchoring of liquid crystals on surfaces presenting continuous gradients in composition Jugal K. Gupta, Kirill Efimenko, Daniel A. Fischer, Jan Genzer, and Nicholas L. Abbott Chapter 6. Continuous infusion microchannel approach to generate composition gradients from viscous polymer solutions Pratyay Basak, Pedro Zapata, Keith Reed, Ismael Gomez, J. Carson Meredith Chapter 7. Gradient assembly of complex surfaces for sensing, fabrication and high throughput analysis Andrew C. Hillier Chapter 8. Making gradient patterns by electron beam chemical lithography with monomolecular resists Nirmalya Ballav, Andreas Terfort, and Michael Zharnikov Chapter 9. Electrochemical mapping for polymer chemical and physical gradients Roger H. Terrill, Xuejun Wang, Paul W. Bohn Chapter 10. Directed assembly of block copolymer films: Effects of rough substrates and thermal fields Manish M. Kulkarni, Alamgir Karim, and Kevin G. Yager Chapter 11. Hydrogel gradients by self-initiated photografting and photopolymerization: Preparation, characterization and protein interactions Tobias Ekblad, Andre;as Larsson and Bo Liedberg Chapter 12. Polymer gradients: Responsive grafted layers Igor Luzinov and Sergiy Minko Chapter 13. Bioactive self assembled monolayer gradients Nicole M. Moore and Matthew L. Becker Chapter 14. Morphology gradients on different size scales, and their application in biological studies Christian Zink and Nicholas D. Spencer Chapter 15. Molecularly defined peptide spacing gradient for cell guidance Vera C. Hirschfeld-Warneken and Joachim P. Spatz Chapter 16. Motion of drops on gradient surfaces R. Shankar Subramanian
520 ## - SUMMARY, ETC.
Summary, etc. "This book helps to bridge many soft material fields (materials science, chemistry, biomaterials) and introduces scientists not familiar with gradient substrates to new exciting opportunities for their work. Soft matter gradient surfaces have played a pivotal role in numerous aspects of materials research. They have facilitated fast screening of physico-chemical phenomena, enabled fabrication of material structures that would have been difficult to manufacture otherwise, acted as "recording media" for monitoring a given physico-chemico-biological process, and played a key role in designing and fabricating surface-bound "engines" capable of acting as molecular and macromolecular motors and thus drove and/or directed a given transport phenomenon. Chapters will include fabrication, gradients in self-assembled monolayers, polymer gradients, dynamic gradient structures, applications in materials science, structure and assembly, mechanical properties, sensors, biomaterial applications, protein adsorption on gradient surfaces, and cells and microtubules on gradient surfaces"--Provided by publisher
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Functionally gradient materials
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Surfaces (Technology)
700 1# - ADDED ENTRY--PERSONAL NAME
Personal name Genzer, Jan
Holdings
Withdrawn status Lost status Damaged status Not for loan Home library Current library Date acquired Cost, normal purchase price Total checkouts Full call number Barcode Date last seen Copy number Cost, replacement price Price effective from Koha item type
  Not lost     UMPLIB GAMBANG UMPLIB GAMBANG 04/09/2019 413.84   TA418.9.F85 S64 2012 0000066647 04/09/2019 1 413.84 04/09/2019 Open Shelf

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