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Tunable isotropic metamaterials in the optical regime based on metal nanoparticle cluster assemblies

Tunable isotropic metamaterials in the optical regime based on metal nanoparticle cluster assemblies
基于金属纳米颗粒簇组件的光学状态下可调谐各向同性超材料
批准号:
1137024
负责人:
Sassan Sheikholeslami
金额:
$20.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-10-01 至 2014-09-30

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中文摘要
翻译
化学部支持斯坦福大学的Sassan Sheikholeslami作为美国化学竞争力研究员。 Sheikholeslami博士将致力于使用自下而上的方法合成具有不寻常物理特性的新型材料(例如负折射率材料)。 材料将使用金属纳米粒子与DNA支架的自组装来合成。 PI将与劳伦斯伯克利国家实验室分子铸造厂的科学家合作。 这项研究的最终目标是开发出高效、廉价的方法来制造有趣的“超材料”。 为了扩大参与范围,Sheikholeslami博士将与旧金山弗朗西斯科湾区的一位艺术家合作,开发一个关于纳米科学的展览,以帮助公众了解这一重要的技术领域。Sheikholeslami博士的研究旨在开发具有有趣和不寻常特性的新材料。 Sheikholeslami博士专注于的特定材料(“超材料”)具有显着的光学特性,不同于任何其他常见的光学材料。 类似的材料已经在实验室里用复杂而昂贵的平版印刷方法制造出来。 Sheikholeslami博士正在开发一种方法,可以在烧瓶中以更低的成本制造这些材料。 这样的工作使科学家能够开发出可能导致革命性技术的材料,这些技术可能会对光学,太阳能和国防产生影响。 Sheikholeslami博士为扩大参与所作的努力旨在使广大公众了解化学科学的一个重要领域。
英文摘要
The Division of Chemistry supports Sassan Sheikholeslami of Stanford University as an American Competitiveness in Chemistry Fellow. Dr. Sheikholeslami will work on synthesizing new kinds of materials with unusual physical properties (e.g. materials with negative refractive index) using a bottom-up approach. Materials will be synthesized using self-assembly of metal nanoparticles with a DNA scaffolding. The PI will collaborate with scientists at the Molecular Foundry of Lawrence Berkeley National Laboratory. The ultimate goal of this research is to develop efficient, inexpensive methods for making interesting 'metamaterials'. For his plan for broadening participation, Dr. Sheikholeslami will collaborate with a San Francisco Bay Area artist to develop an exhibition on nanoscience to help educate the public about this important area of technology. Research like that of Dr. Sheikholeslami is aimed at developing new materials with interesting and unusual properties. The specific materials that Dr. Sheikholeslami is concentrating on ('metamaterials') have remarkable optical properties, unlike any other common optical materials. Similar materials have been created in the laboratory with elaborate and expensive lithographic methods. Dr. Sheikholeslami is developing methods that will create these materials in a flask, at a much lower cost. Work like this enables scientists to develop materials that may lead to revolutionary technology that can have impacts in optics, solar energy, and defense. The efforts at broadening participation being pursued by Dr. Sheikholeslami are aimed at giving a broad cross section of the public exposure to an important area of the chemical sciences.
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