Internal reflection and ATR spectroscopy / Milan Milosevic.

Attenuated Total Reflection (ATR) Spectroscopy is now the most frequently used sampling technique for infrared spectroscopy. This book fully explains the theory and practice of this method. Offers introduction and history of ATR before discussing theoretical aspects. Includes informative illustratio...

Full description

Saved in:
Bibliographic Details
Main Author: Milosevic, Milan, 1955-
Format: eBook
Language:English
Published: Hoboken, N.J. : John Wiley & Sons, ©2012.
Series:Chemical analysis ; v. 176.
Subjects:
Online Access:Click for online access

MARC

LEADER 00000cam a2200000Ma 4500
001 ocn797823039
003 OCoLC
005 20240909213021.0
006 m o d
007 cr cn|||||||||
008 111220s2012 njuad o 001 0 eng d
010 |z  2011046733 
040 |a E7B  |b eng  |e pn  |c E7B  |d OCLCO  |d CDX  |d UWO  |d DEBSZ  |d COO  |d B24X7  |d OCLCQ  |d OCLCF  |d OCLCQ  |d YDXCP  |d EBLCP  |d N$T  |d CUS  |d DG1  |d IDEBK  |d CHVBK  |d RECBK  |d DEBBG  |d OCLCQ  |d AZK  |d DG1  |d MOR  |d LIP  |d PIFAG  |d ZCU  |d OCLCQ  |d MERUC  |d ESU  |d OCLCQ  |d U3W  |d GRG  |d OCLCQ  |d UUM  |d STF  |d COCUF  |d WRM  |d OCLCQ  |d NRAMU  |d ICG  |d INT  |d VT2  |d AU@  |d OCLCQ  |d WYU  |d S3O  |d OCLCQ  |d DKC  |d OCLCQ  |d S9I  |d OCLCQ  |d UKCRE  |d OCLCO  |d UKAHL  |d OCLCO  |d OCLCQ  |d OCLCO  |d OCLCL  |d OCLCQ 
019 |a 787842615  |a 795912946  |a 817082246  |a 864910814  |a 939816433  |a 960495377  |a 961502763  |a 962592369  |a 1018025739  |a 1037764034  |a 1038640409  |a 1045517297  |a 1055323716  |a 1058178798  |a 1066585108  |a 1081233492  |a 1153563600  |a 1162248975  |a 1228531503 
020 |a 9781118309711  |q (e-book) 
020 |a 1118309715 
020 |a 9781118309711 
020 |a 0470278323  |q (cloth) 
020 |a 9780470278321  |q (cloth) 
020 |a 9781280591105  |q (MyiLibrary) 
020 |a 1280591102  |q (MyiLibrary) 
020 |a 9781118309742 
020 |a 111830974X 
020 |a 9781118309766  |q (electronic bk.) 
020 |a 1118309766  |q (electronic bk.) 
020 |a 9786613620934 
020 |a 6613620939 
020 |z 9780470278321  |q (cloth) 
028 0 1 |a EB00063316  |b Recorded Books 
035 |a (OCoLC)797823039  |z (OCoLC)787842615  |z (OCoLC)795912946  |z (OCoLC)817082246  |z (OCoLC)864910814  |z (OCoLC)939816433  |z (OCoLC)960495377  |z (OCoLC)961502763  |z (OCoLC)962592369  |z (OCoLC)1018025739  |z (OCoLC)1037764034  |z (OCoLC)1038640409  |z (OCoLC)1045517297  |z (OCoLC)1055323716  |z (OCoLC)1058178798  |z (OCoLC)1066585108  |z (OCoLC)1081233492  |z (OCoLC)1153563600  |z (OCoLC)1162248975  |z (OCoLC)1228531503 
037 |a 10.1002/9781118309742  |b Wiley InterScience  |n http://www3.interscience.wiley.com 
050 4 |a QC454.I5  |b M55 2012eb 
072 7 |a SCI  |x 078000  |2 bisacsh 
049 |a HCDD 
100 1 |a Milosevic, Milan,  |d 1955-  |1 https://id.oclc.org/worldcat/entity/E39PCjqPm6BXv3CmYFkcBJwFqP 
245 1 0 |a Internal reflection and ATR spectroscopy /  |c Milan Milosevic. 
260 |a Hoboken, N.J. :  |b John Wiley & Sons,  |c ©2012. 
300 |a 1 online resource (xvi, 239 pages) :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
347 |a data file  |2 rda 
490 1 |a Chemical analysis : a series of monographs on analytical chemistry and its applications ;  |v v. 176 
500 |a Includes index. 
520 |a Attenuated Total Reflection (ATR) Spectroscopy is now the most frequently used sampling technique for infrared spectroscopy. This book fully explains the theory and practice of this method. Offers introduction and history of ATR before discussing theoretical aspects. Includes informative illustrations and theoretical calculations. Discusses many advanced aspects of ATR, such as depth profiling or orientation studies, and particular features of reflectance. 
505 0 |a INTERNAL REFLECTION AND ATR SPECTROSCOPY; CONTENTS; PREFACE; 1: Introduction to Spectroscopy; 1.1 HISTORY; 1.2 DEFINITION OF TRANSMITTANCE AND REFLECTANCE; 1.3 THE SPECTROSCOPIC EXPERIMENT AND THE SPECTROMETER; 1.4 PROPAGATION OF LIGHT THROUGH A MEDIUM; 1.5 TRANSMITTANCE AND ABSORBANCE; 1.6 S/N IN A SPECTROSCOPIC MEASUREMENT; 2: Harmonic Oscillator Model for Optical Constants; 2.1 HARMONIC OSCILLATOR MODEL FOR POLARIZABILITY; 2.2 CLAUSIUS-MOSSOTTI EQUATION; 2.3 REFRACTIVE INDEX; 2.4 ABSORPTION INDEX AND CONCENTRATION; 3: Propagation of Electromagnetic Energy. 
505 8 |a 3.1 POYNTING VECTOR AND FLOW OF ELECTROMAGNETIC ENERGY3.2 LINEAR MOMENTUM OF LIGHT; 3.3 LIGHT ABSORPTION IN ABSORBING MEDIA; 3.4 LAMBERT LAW AND MOLECULAR CROSS SECTION; 4: Fresnel Equations; 4.1 ELECTROMAGNETIC FIELDS AT THE INTERFACE; 4.2 SNELL'S LAW; 4.3 BOUNDARY CONDITIONS AT THE INTERFACE; 4.4 FRESNEL FORMULAE; 4.5 REFLECTANCE AND TRANSMITANCE OF INTERFACE; 4.6 SNELL'S PAIRS; 4.7 NORMAL INCIDENCE; 4.8 BREWSTER'S ANGLE; 4.9 THE CASE OF THE 45° ANGLE OF INCIDENCE; 4.10 TOTAL INTERNAL REFLECTION; 5: Evanescent Wave; 5.1 EXPONENTIAL DECAY AND PENETRATION DEPTH. 
505 8 |a 5.2 ENERGY FLOW AT A TOTALLY INTERNALLY REFLECTING INTERFACE5.3 THE EVANESCENT WAVE IN ABSORBING MATERIALS; 6: Electric Fields at a Totally Internally Reflecting Interface; 6.1 EX, EY, AND EZ FOR S-POLARIZED INCIDENT LIGHT; 6.2 EX, EY, AND EZ FOR P-POLARIZED INCIDENT LIGHT; 7: Anatomy of ATR Absorption; 7.1 ATTENUATED TOTAL REFLECTION (ATR) REFLECTANCE FOR S- AND P-POLARIZED BEAM; 7.2 ABSORBANCE TRANSFORM OF ATR SPECTRA; 7.3 WEAK ABSORPTION APPROXIMATION; 7.4 SUPERCRITICAL REFLECTANCE AND ABSORPTION OF EVANESCENT WAVE; 7.5 THE LEAKY INTERFACE MODEL; 8: Effective Thickness. 
505 8 |a 8.1 DEFINITION AND EXPRESSIONS FOR EFFECTIVE THICKNESS8.2 EFFECTIVE THICKNESS AND PENETRATION DEPTH; 8.3 EFFECTIVE THICKNESS AND ATR SPECTROSCOPY; 8.4 EFFECTIVE THICKNESS FOR STRONG ABSORPTIONS; 9: Internal Reflectance nearCritical Angle; 9.1 TRANSITION FROM SUBCRITICAL TO SUPERCRITICAL REFLECTION; 9.2 EFFECTIVE THICKNESS AND REFRACTIVE INDEX OF SAMPLE; 9.3 CRITICAL ANGLE AND REFRACTIVE INDEX OF SAMPLE; 10: Depth Profiling; 10.1 ENERGY ABSORPTION AT DIFFERENT DEPTHS; 10.2 THIN ABSORBING LAYER ON A NONABSORBING SUBSTRATE; 10.3 THIN NONABSORBING FILM ON AN ABSORBING SUBSTRATE. 
505 8 |a 10.4 THIN NONABSORBING FILM ON A THIN ABSORBING FILM ON A NONABSORBING SUBSTRATE11: Multiple Interfaces; 11.1 REFLECTANCE AND TRANSMITTANCE OF A TWO-INTERFACE SYSTEM; 11.2 VERY THIN FILMS; 11.3 INTERFERENCE FRINGES; 11.4 NORMAL INCIDENCE; 11.5 INTERFERENCE FRINGES AND TRANSMISSION SPECTROSCOPY; 11.6 THIN FILMS AND ATR; 11.7 INTERNAL REFLECTION: SUBCRITICAL, SUPERCRITICAL, AND IN BETWEEN; 11.8 UNUSUAL FRINGES; 11.9 PENETRATION DEPTH REVISITED; 11.10 REFLECTANCE AND TRANSMITTANCE OF A MULTIPLE INTERFACE SYSTEM; 12: Metal Optics; 12.1 ELECTROMAGNETIC FIELDS IN METALS; 12.2 PLASMA. 
546 |a English. 
650 0 |a Internal reflection spectroscopy. 
650 0 |a Absorption spectra. 
650 7 |a SCIENCE  |x Spectroscopy & Spectrum Analysis.  |2 bisacsh 
650 7 |a Absorption spectra  |2 fast 
650 7 |a Internal reflection spectroscopy  |2 fast 
650 7 |a ATR-Technik  |2 gnd 
650 7 |a Infrarotspektroskopie  |2 gnd 
776 0 8 |i Print version:  |z 9780470278321  |w (DLC) 2011046733 
830 0 |a Chemical analysis ;  |v v. 176. 
856 4 0 |u https://ebookcentral.proquest.com/lib/holycrosscollege-ebooks/detail.action?docID=832597  |y Click for online access 
903 |a EBC-AC 
994 |a 92  |b HCD