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Materials Research Science and Engineering Center

Materials Research Science and Engineering Center
材料研究科学与工程中心
批准号:
9632716
负责人:
Anthony Cheetham
金额:
$1102.66万
依托单位国家:
美国
项目类别:
Cooperative Agreement
财政年份:
1996
资助国家:
美国
项目状态:
已结题
起止时间:
1996-09-15 至 2002-03-31

项目摘要

项目成果

Anthony Cheetham的其他基金

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中文摘要
翻译
9632716加州大学圣巴巴拉分校的材料研究科学与工程中心(MRSEC)支持四个跨学科小组在复杂材料领域的研究。一个研究复杂流体的小组专注于生物分子材料的产生和控制。重点是生物分子材料,其微观结构可以控制,可能应用于耐热蛋白质、人造组织、新型药物输送系统和生物凝胶的开发。第二组研究分子和原子界面上无机物的溶液合成,试图了解这些过程的基本机制,并探索新材料的合成,并将其应用于电光、催化和生物技术。第三个小组研究了多相聚合物结构。这些结构包括用于潜在生物医学应用的非均相嵌段共聚物和用于聚合物发光电化学电池的网络混合物。第四个小组研究了复杂材料中的强烈非平衡现象,该小组具有强大的理论成分,重点关注材料领域具有实际意义的问题,共同的主题是非线性。计划中的研究包括摩擦的基本机制,断裂的动力学,包括传统的断裂和地震事件,薄膜的结构演变,以及反应聚合物的相变。MRSEC支持材料研究共享实验设施的开发、运营和维护。它为探索性研究和新兴领域提供种子资金,并促进本科生参与研究。MRSEC拥有强大的产业联系和教育推广计划。该教育计划包括学校创新科学伙伴关系和一个由当地一所城市大学的教师和学生参与的实习计划。该中心目前支持30名高级研究员、10名博士后助理研究员、5名技术人员或其他专业人员、35名研究生和25名本科生。MRSEC由安东尼·K·契坦教授执导。加州大学圣巴巴拉分校的材料研究科学与工程中心(PARSEC)支持四个跨学科小组在复杂材料领域的研究。一个研究复杂流体的小组专注于生物分子材料的产生和控制,其微结构可以被控制,以可能应用于耐热蛋白质、人造组织和新型药物输送系统的开发。第二个小组研究分子和原子界面无机物的合成,试图了解这些过程的基本机制,并探索应用于电光、催化和生物技术的新材料的合成。非均相聚合物结构由第三类具有潜在生物医学应用的聚合物发光电化学池进行研究。第四个小组研究了复杂材料中的强烈非平衡现象,该小组具有强大的理论成分,专注于材料领域中具有实际意义的问题。计划中的研究包括摩擦的基本机制,断裂的动力学,包括传统的断裂和地震事件,薄膜的结构演变,以及反应聚合物的相变。MRSEC支持材料研究共享实验设施的开发、运营和维护。它为探索性研究和新兴领域提供种子资金,并促进本科生参与研究。MRSEC拥有强大的产业联系和教育推广计划。该教育计划包括学校创新科学伙伴关系和一项由当地一所城市大学的教师和学生参与的实习计划。该中心目前支持30名S高级研究员、10名博士后助理研究员、5名技术人员或其他专业人员、35名研究生和25名本科生。MRSEC由安东尼·K·契坦教授执导。*_
英文摘要
9632716 Cheetham The Materials Research Science and Engineering Center (MRSEC) at the University of California Santa Barbara supports research in the area of complex materials in four interdisciplinary groups. One group investigating complex fluids is focused on the creation and control of biomolecular materials. The emphasis is on biomolecular materials whose microstructure can be controlled for possible applications to the development of heat-proof proteins, artificial tissue, novel drug delivery systems, and biogels. A second group investigating solution synthesis of inorganics at molecular and atomic interfaces seeks to understand basic mechanisms of these processes and to explore the synthesis of new materials with applications to electro-optics, catalysis, and biotechnology. Heterogeneous polymeric structures are investigated by a third group. These structures include heterogeneous block copolymers for potential biomedical applications and network blends for polymer light-emitting electrochemical cells. Strongly non-equilibri um phenomena in complex materials are investigated by a fourth group that has a strong theoretical component focused on issues of practical importance in the materials area with a common theme of nonlinearity. Planned studies include fundamental mechanisms of friction, dynamics of fracture, including both conventional fracture and seismic events, the structural evolution of thin films, and phase transitions in reacting polymers. The MRSEC supports the development, operation and maintenance of shared experimental facilities for materials research. It provides seed funding for exploratory research and emerging areas, and fosters research participation by undergraduates. The MRSEC has strong industrial links and an educational outreach program. The educational program includes the Science Partnership for School Innovation and an internship program involving instructors and students from a local city college. The Center currently supports 30 senior investigators, 10 postdoctoral research associates, 5 technicians or other professionals, 35 graduate students, and 25 undergraduates. The MRSEC is directed by Professor Anthony K. Cheetham. %%% The Materials Research Science and Engineering Center (PARSEC) at the University of California Santa Barbara supports research in the area of complex materials in four interdisciplinary groups. One group investigating complex fluids is focused on the creation and control of biomolecular materials whose microstructure can be controlled for possible applications to the development of heat-proof proteins, artificial tissue, and novel drug delivery systems. A second group investigating synthesis of inorganics at molecular and atomic interfaces seeks to understand basic mechanisms of these processes and to explore the synthesis of new materials with applications to electro-optics, catalysis, and biotechnology. Heterogeneous polymeric structures are investigated by a third groupwith potential biomedical applications and polymer light-emitting electrochemical cells. Strongly non-equilibrium phenomena in complex materials are investigated by a fourth group that has a strong theoretical component focused on issues of practical importance in the materials area. Planned studies include fundamental mechanisms of friction, dynamics of fracture, including both conventional fracture and seismic events, the structural evolution of thin films, and phase transitions in reacting polymers. The MRSEC supports the development, operation and maintenance of shared experimental facilities for materials research. It provides seed funding for exploratory research and emerging areas, and fosters research participation by undergraduates. The MRSEC has strong industrial links and an educational outreach program. The educational program includes the Science Partnership for School Innovation and an internship program involving instructors and students from a local city college The Center currently supports 30 s enior investigators, 10 postdoctoral research associates, 5 technicians or other professionals, 35 graduate students, and 25 undergraduates. The MRSEC is directed by Professor Anthony K. Cheetham. *** _
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Fronties in Materials Research: A CIAM-CIMAT-CONICYT Workshop; April 26-29, 2004; Santiago, Chile
国内基金
海外基金
Research on Quantum Field Theory without a Lagrangian Description
  • 批准号:
    24ZR1403900
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    SATOSHI NAWATA
  • 依托单位:
Cell Research
Cell Research
Cell Research (细胞研究)