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Brannon-Peppas theory of swelling in ionic hydrogels Original theory for elastic networks developed by Flory and Mehrer, refined for treatment of ionic hydrogels by Brannon-Peppas and Peppas Other theoretical treatments Derivation of ionic hydrogel swelling Model structure of the system
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Lecture 8: Physical Hydrogels Last Day Overview of biomedical applications of hydrogels Structure of covalent hydrogels Thermodynamics of hydrogel swelling Today Bonding in physical hydrogels Structure and thermodynamics of block copolymer hydrog Reading
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Lecture 10: Bioengineering applications of hydrogels: Molecular Imprinting and Drug Delivery Last Day polyelectrolyte gels Polyelectrolyte complexes and multilayers Applications in bioengineering Theory of ionic gel swelling Toda Molecular imprinting
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Lecture 7: Hydrogel Biomaterials: Structure and Physical Chemistry Last Day: programmed/regulated/multifactor controlled release for drug delivery and tissue engineering
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Lecture 5: Controlled Release Devices Last time: Using enzyme substrate and cytokine peptides to engineer biological recognition of synthetic polymers Today: principles of controlled release devices based on degradable polymers Synthesis of controlled release devices Theory of polymer-based controlled release
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Molecular Principles of Biomaterials Spring 2003 Lecture 2: Molecular Design and Synthesis of Biomaterials I: Biodegradable Materials Chemistry of Biodegradable Materials Hydrolytically degraded biomaterials Common hydrolytically unstable linkages Ester
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Lecture 2: Molecular Design and Synthesis of Biomaterials I: Biodegradable Solid Polymeric Materials(continued) hemistry and physical chemistry of degrading polymeric solids for biomaterials Today Theory of polymer erosion Enzymatic degradation of synthetic biomaterials Designing degradable materials Reading
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Biodegradable solid polymeric Materials Today course overview and administrative details Intro to concepts covered Chemistry and physical chemistry of biodegradable polymeric solids Hand-outs course syllabus Course administrative details Readin Third-Generation Biomedical Materials. \LL Hench and j M. Polak. Science 295
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醛、酮和醌的分子结构中都含有羰基(图.11.1), 总称为羰基化合物。羰基至少和一个氢原子结合的化 合物叫醛(-CHO又叫醛基,图11.2),羰基和两个烃基 结合的化合物叫酮。醌是一类不饱和环二酮,在分子 中含有两个双键和两个羰基。例如,图11.3 羰基是醛、酮的官能团
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一、原子结构(ppt第1章,《结构和物性》第1章) 二、分子结构(含配合物) (ppt第2,6,7章,《结构和物性》第2,4章) 三、晶体结构(晶胞,点阵)(ppt第9章,《结构和物性》第8章)
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