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Titlebook: Biomolecular Electronics; An Introduction via Nikolai Vsevolodov,David Amiel Book 1998 Birkhäuser Boston 1998 Biocomputers.Biosensor.Biote

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发表于 2025-3-21 19:34:23 | 显示全部楼层 |阅读模式
期刊全称Biomolecular Electronics
期刊简称An Introduction via
影响因子2023Nikolai Vsevolodov,David Amiel
视频video
学科分类Bioengineering of Materials
图书封面Titlebook: Biomolecular Electronics; An Introduction via  Nikolai Vsevolodov,David Amiel Book 1998 Birkhäuser Boston 1998 Biocomputers.Biosensor.Biote
影响因子The properties of materials depend on the nature of the macromolecules, small molecules and inorganic components and the interfaces and interactions between them. Polymer chemistry and physics, and inorganic phase structure and density are major factors that influence the performance of materials. In addition, molecular recognition, organic-inorganic interfaces and many other types of interactions among components are key issues in determining the properties of materials for a wide range of applications. Materials require­ ments are becoming more and more specialized to meet increasingly demand­ ing needs, from specific environmental stresses to high performance or biomedical applications such as matrices for controlled release tissue scaf­ folds. One approach to meet these performance criteria is to achieve better control over the tailoring of the components and their interactions that govern the material properties. This goal is driving a great deal of ongoing research in material science laboratories. In addition, control at the molecular level of interactions between these components is a key in many instances in order to reach this goal since traditional approaches used to glu
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The Distinguished Family of Rhodopsins, BR, discovered by Stoeckenius in halobacteria in 1973 (see Section 2C.1), was the first rhodopsin on Earth, the precursor of all other rhodopsins, including visual rhodopsins. Following the discovery of the first BR (whose function is proton phototransfer across the cell membrane of halobacteria),
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The Unique Properties of Bacteriorhodopsins as Energy Converters,re of .. Since that time, microbiologists and geneticists have synthesized dozens of artificial halobacteria cell cultures, have reconstructed hundreds of BR analogs (genetic and mutant invariants), and have even discovered new bacterial rhodopsinoid molecules. Such analogs differ in their ground st
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Photosensitive Materials for Use as Optical Memory,information recording and storage. As a whole, the table shows that optical recording is superior to the others. Only the human brain (and possibly not only human) stays ahead. Optical memory is divided into permanent and temporary categories. Artificial photomaterials for permanent recording of opt
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https://doi.org/10.1007/978-94-009-7645-0Their younger brother, the reversible photomaterial for temporary recording, has a shorter and somewhat sadder history—since from their very conception they have remained in the shadow of their older brother.
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