Particle Size Analysis (Special Publications) by N G Stanley-Wood, R W Lines

By N G Stanley-Wood, R W Lines

Particle measurement research reports the advance of particle characterization during the last 25 years and likewise speculates on its destiny. curiosity within the topic has elevated drastically through the years and this publication highlights the adjustments and advances made in the box. This e-book is accomplished in its assurance of particle dimension research and contains contributions on such characterization suggestions as microscopy utilizing fractal research, gentle diffraction, mild scattering with the part doppler approach, mild statement, and photon correlation spectroscopy. a couple of chapters deal with the curiosity in online in-stream particle dimension research and illustrate the growth being made in attaining this lengthy wanted excellent of in-situ in-process particle characterization. functions to different technological fields are designated by means of chapters protecting organic structures and the pharmaceutical undefined. the topic of floor quarter selection is taken into account with specific emphasis at the measurements on porosity of powders, the characterization and comparison of reference fabrics, and the necessity for criteria. Particle measurement research should still supply stimulating studying for technologists, scientists, and engineers curious about particle characterization and powder know-how around the globe.

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K. H. Drexhage (1974) in E. ), Progress in Optics, NorthHolland, Amsterdam, pp. 165-232. W. H. Weber and C. F. Eagen. Energy-Transfer from an Excited Dye Molecule to the Surface-Plasmons of an Adjacent Metal Optics Letters, 1979, 4, 236-238. W. L. Barnes. Fluorescence near interfaces: the role of photonic mode density Journal ofModern Optics, 1998,45, 661-699. C. D. Geddes and J. R. Lakowicz. Metal-enhanced fluorescence Journal of fluorescence, 2002, 12, 121-129. K. Asian, I. Gryczynski, J. Malicka, E.

Le Rua*, J. Grand*, N. Félidj *, J. Aubard*, G. Lévi\ A. Hohenauc, J. R. Krennc, E. Blackie", P. G. 1 INTRODUCTION In this chapter, we provide a tutorial review of an often-overlooked aspect of Metal Enhanced Fluorescence (MEF), namely the modification of the spectral profile of emission [1]. Decay rates (radiative and total) of a fluorophore are strongly modified in MEF conditions, as a result of electromagnetic (EM) coupling to localized surface plasmon (LSP) resonances in the metallic substrate [2,3,4,5,6,7,8,9,10,11,12].

First observation of surface plasmon-coupled chemiluminescence (SPCC) Chemical physics letters, 2007, 435, 114-118. J. Moan, Q. Peng, R. Sorensen, V. Iani, and J. M. Nesland. The biophysical foundations of photodynamic therapy Endoscopy, 1998, 30, 387-391. M. S. Thompson, A. Johansson, T. Johansson, S. Andersson-Engels, S. Svanberg, N. Bendsoe, and K. Svanberg. Clinical system for interstitial photodynamic therapy with combined on-line dosimetry measurements Appl Opt, 2005, 44, 4023-4031. Y. Zhang, K.

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