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Physics And Chemistry Of Fullerenes And Derivatives - Proceedings Of The International Winterschool On Electronic Properties Of Novel Materials

Physics And Chemistry Of Fullerenes And Derivatives - Proceedings Of The International Winterschool On Electronic Properties Of Novel Materials
Author: Jorg Fink
Publisher: World Scientific
Total Pages: 608
Release: 1995-06-30
Genre:
ISBN: 9814548774

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The year 1995 witnessed the tenth anniversary of the International Winterschools in Kirchberg, Tyrol/Austria. These schools are devoted to the Electronic Properties of Novel Materials, having started with coverage of research on conducting polymers and high temperature superconductors to presently focusing on Fullerene, the newly discovered third allotrope of carbon.This year's proceedings present about ten tutorial and review papers on physics, chemistry, and material science of Fullerene, Fullerene derivatives and nanotubes, as well as bout a hundred research contributions on the latest development in this field including a summary on the assessment of the applications potential of the materials and phenomena which have already evolved from the activities in the past couple of years.


Thin Liquid Films

Thin Liquid Films
Author: Ralf Blossey
Publisher: Springer Science & Business Media
Total Pages: 158
Release: 2012-05-22
Genre: Science
ISBN: 9400744552

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This book is a treatise on the thermodynamic and dynamic properties of thin liquid films at solid surfaces and, in particular, their rupture instabilities. For the quantitative study of these phenomena, polymer thin films (sometimes referred to as “ultrathin”) have proven to be an invaluable experimental model system. What is it that makes thin film instabilities special and interesting? First, thin polymeric films have an important range of applications. An understanding of their instabilities is therefore of practical relevance for the design of such films. The first chapter of the book intends to give a snapshot of current applications, and an outlook on promising future ones. Second, thin liquid films are an interdisciplinary research topic, which leads to a fairly heterogeneous community working on the topic. It justifies attempting to write a text which gives a coherent presentation of the field which researchers across their specialized communities might be interested in. Finally, thin liquid films are an interesting laboratory for a theorist to confront a well-established theory, hydrodynamics, with its limits. Thin films are therefore a field in which a highly fruitful exchange and collaboration exists between experimentalists and theorists. The book stretches from the more concrete to more abstract levels of study: we roughly progress from applications via theory and experiment to rigorous mathematical theory. For an experimental scientist, the book should serve as a reference and guide to what is the current consensus of the theoretical underpinnings of the field of thin film dynamics. Controversial problems on which such a consensus has not yet been reached are clearly indicated in the text, as well as discussed in a final chapter. From a theoretical point of view, the field of dewetting has mainly been treated in a mathematically ‘light’ yet elegant fashion, often making use of scaling arguments. For the untrained researcher, this approach is not always easy to follow. The present book attempts to bridge between the ‘light’ and the ‘rigorous’, always with the ambition to enhance insight and understanding - and to not let go the elegance of the theory.


Functionalized Fullerenes

Functionalized Fullerenes
Author: Electrochemical Society. Fullerenes Group
Publisher: The Electrochemical Society
Total Pages: 292
Release: 2000
Genre: Dielectrics
ISBN: 9781566772761

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Fullerenes And Fullerene Nanostructures: Proceedings Of The International Winter School On Electronic Properties Of Novel Materials

Fullerenes And Fullerene Nanostructures: Proceedings Of The International Winter School On Electronic Properties Of Novel Materials
Author: Jorg Fink
Publisher: World Scientific
Total Pages: 660
Release: 1996-08-30
Genre:
ISBN: 9814547182

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During the last ten years, the International Winterschools on Electronic Properties of New Materials (IWEPNM) have developed into a well-established institution and the alumni form a very active interdisciplinary community which spreads all over the world. Past schools of this series have treated such topics as conducting polymers and high temperature superconductors. The present volume contains the proceedings of the fourth school on fullerenes and fullerene derivatives. Soccer-ball molecules, like C₆₀, C₇₀, etc., have been discovered in the late 1980's and are now regarded as the third allotrope of carbon (in addition to the classic allotropes graphite and diamond). By now, more than ten thousand original papers on fullerene have been published, and the present proceedings give a snap-shot of the development of the field and the state of the art, as reflected by research papers, overviews, and tutorial lectures. Highlights are contributions on fullerene polymers, magnetic properties of fullerene complexes, endohedral compounds, fullerenes with incorporated heteroatoms, and on fullerene nanotubes (single-walled, multi-walled, with open cores or metal-filled), as well as prospects of technological applications (field emission electron guns for flat video displays, fullerene plasma for vapour deposited diamond and SiC film, etc.).


Fullerene Research Advances

Fullerene Research Advances
Author: Carl N. Kramer
Publisher: Nova Publishers
Total Pages: 326
Release: 2007
Genre: Science
ISBN: 9781600218248

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Until 1985, the chemical element Carbon was only known to exist in two forms -- diamond and graphite. This changed when Kroto and co-workers discovered an entirely new form of carbon, which became known as C60 or the fullerene molecule. (This discovery later led to their award of the 1996 Nobel Prize in Chemistry.) The original discovery of C60 was in the soot produced from the laser ablation of graphite. Since then, other methods of production have been developed. It is also thought that isolated C60 molecules may be found in stars and interstellar media. It was soon discovered that C60 is not the only ball-like carbon molecule possible (although it is the most stable and the most dominant). The rugby-ball shaped C70 molecule is another possibility. In nanotechnology, the potential applications of carbon nanotubes (formed by combining hexagonal rings of carbon atoms only, rather than hexagons and pentagons as in C60) for very small electronic devices are currently the subject of much activity. This book presents the latest research in this dynamic field.


Instabilities and Breakup in Thin Liquid Films

Instabilities and Breakup in Thin Liquid Films
Author: Vineeth Chandran Suja
Publisher:
Total Pages:
Release: 2020
Genre:
ISBN:

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Liquid films having dimensions that are relatively small in the direction normal to their surface are commonly referred to as thin liquid films. Due to their prevalence in nature and due to their unique geometrical characteristics, a comprehensive understanding of thin film dynamics including instabilities and break-up within thin liquid films is of fundamental and practical interest. Practically this understanding is crucial to tuning the stability thin films in a number of important applications such as for stabilizing foams in foods and beverages, destabilizing foams in lubricants, avoiding surface irregularities in liquid coatings and treating ophthalmic disorders originating from the unnatural breakup of the tear film. Fundamentally, the microscopic thickness of these liquid films along with their large surface to volume ratio presents a convenient framework to investigate characteristics of two dimensional flows, and probe the effects of surface phenomenon such as evaporation and surfactant dynamics on fluid flows. Motivated by the importance of thin liquid films, in this thesis, we experimentally investigate the instabilities and break-up within thin liquid films. In the first part of the thesis (Chapters 2 - 4), we develop and optimize experimental tools and protocols for systematically studying thin liquid films. Notably, we show that single bubble/drop experiments are a convenient and complementary technique to study the dynamics of thin liquid films. Subsequently, we detail a new technique for automatically and robustly measuring the spatiotemporal thickness of thin liquid films - hyperspectral interferometry coupled with machine learning. Finally, we will also establish the operating regimes within which the size of bubbles formed on capillaries for single bubble experiments can be precisely controlled to avoid an air compressibility driven shape instabilities. In the subsequent parts of the thesis we utilize the developed tools to study four different problems - Bubble stability in worm like micellar (WLM) polymer solutions (Chapter 5), Lubricant foaming (Chapters 6 - 8), Drying of thin polymer films (Chapter 9) and Dewetting of the tear film (Chapter 10). In Chapter 5, we explore a problem relevant for the cosmetic industry, and characterize the drainage characteristics of thin films between bubbles and flat wormlike micellar solution - air interfaces. The supramolecular structure and elasticity of the wormlike micelles alters the dynamics of film drainage in WLM as compared to those in thin films containing pure surfactants. The unique features of film drainage include film elasticity driven 'dimple recoil' and a single step transition to a Newton black film beyond a critical film thickness. In Chapters 6 - 8, we explore a problem relevant for the lubricant industry, and study the stability of thin liquid films in lubricants with and without antifoams. Utilizing single bubble experiments, we reveal that the stability of thin films between bubbles in lubricant base oils are enhanced by Marangoni flows driven by the differential evaporation of the various components in the oil. Fundamentally, we also show that the spatiotemporal characteristics of these Marangoni flows are regulated by the concentration and volatility of the volatile species in the oil. Interestingly when the concentration of the volatile species approaches 50%, evaporation driven Marangoni flows become chaotic, with disordered spatial structure, chaotic fluctuations, spatially invariant mean film thickness statistics, high sensitivity to initial conditions, rapidly decaying spatial correlation and a power spectrum for thickness fluctuation that obeys a power law scaling that closely resembles the Kolmogorov's -5/3rd scaling. In the presence of filtered lubricants with antifoams, we reveal that the stability of thin films are positively correlated to the number of filtration cycles, and inversely correlated to the nominal filter pore size and the initial antifoam concentration. In Chapter 9 we explore a problem relevant for film coating, and study the drying of aqueous polymer solutions. Depending on the polymer concentration and the polymer diffusivities, we show that a classical Rayleigh-Taylor instability can develop within the drying solution. We also present the scaling laws describing the onset time of the instability as a function of the physical properties and initial polymer concentrations of the solutions. In Chapter 10 we report a platform to characterize the thickness of the tear film in vivo. By qualitatively comparing the dewetting characteristics observed in vivo with in vitro experiments, we will show that the mechanisms of dewetting is influenced by the presence of interfacial rheology. Further we also reveal that the spatial locations that are prone to dewetting are determined by the presence of interfacial rheology and the spatiotemporal drainage characteristics of the tear film. In Chapter 11 we summarize the findings in this thesis and discuss a number of interesting venues for future research.


Optical and Electronic Properties of Fullerenes and Fullerene-Based Materials

Optical and Electronic Properties of Fullerenes and Fullerene-Based Materials
Author: Joseph Shinar
Publisher: CRC Press
Total Pages: 400
Release: 1999-11-24
Genre: Science
ISBN: 9780824782573

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This text covers a host of fullerene applications, including nanotubes, compounds of fullerenes with other elements and structures and polymerized fullerenes. It discusses properties of photoexcited states of fullerenes, neutral and charged states, nonlinear optical response (NLO) and electron-electron interactions.