Dislocations And Deformation Mechanisms In Thin Films And Small Structures Volume 673


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Dislocations and Deformation Mechanisms in Thin Films and Small Structures: Volume 673


Dislocations and Deformation Mechanisms in Thin Films and Small Structures: Volume 673

Author: Oliver Kraft

language: en

Publisher:

Release Date: 2001-09-20


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The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

Diffusion Processes in Advanced Technological Materials


Diffusion Processes in Advanced Technological Materials

Author: Devendra Gupta

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-01-15


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This new game book for understanding atoms at play aims to document diffusion processes and various other properties operative in advanced technological materials. Diffusion in functional organic chemicals, polymers, granular materials, complex oxides, metallic glasses, and quasi-crystals among other advanced materials is a highly interactive and synergic phenomenon. A large variety of atomic arrangements are possible. Each arrangement affects the performance of these advanced, polycrystalline multiphase materials used in photonics, MEMS, electronics, and other applications of current and developing interest. This book is written by pioneers in industry and academia for engineers, chemists, and physicists in industry and academia at the forefront of today's challenges in nanotechnology, surface science, materials science, and semiconductors.

Polymer Interfaces and Thin Films: Volume 710


Polymer Interfaces and Thin Films: Volume 710

Author: Materials Research Society. Meeting

language: en

Publisher:

Release Date: 2002


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Polymer interfaces are critical for many technological and industrial applications in thin films including microelectronics, packaging, automotive coatings and sensors. The structure and architecture of interfaces in thin films and bulk polymeric systems can be exceedingly complex. In thin films, the technological drive to diminish film thickness while simultaneously enhancing homogeneity, stability and adhesion, is a demanding challenge driving research in newer areas of nanofilled and controlled nanostructured and nanopatterned materials. Tailoring surface and interfacial properties is equally important for new developments in the traditional fields of bulk polymer blends, adhesion and wetting. There is a need to develop an understanding of interfacial phenomena with the ultimate goal of establishing structure-property relationships with quantitative predictive capabilities and this book discusses these challenges. Topics include: block copolymer films; theory, simulations and dynamics; polymer interfaces and thin films; adhesion and mechanical properties; self-assembly by polymeric films; self-assembly and electronic properties; lithographic, electronic properties; and nanoparticulate-filled films.