亞洲知識產權資訊網為知識產權業界提供一個一站式網上交易平台,協助業界發掘知識產權貿易商機,並與環球知識產權業界建立聯繫。無論你是知識產權擁有者正在出售您的知識產權,或是製造商需要購買技術以提高操作效能,又或是知識產權配套服務供應商,你將會從本網站發掘到有用的知識產權貿易資訊。

Scalable Super-Resolution Synthesis Of Core-Vest Composites Assisted By Surface Plasmons

技術優勢
Significant plasmonic enhancement of nanocomposites.
技術應用
Sensors, Therapeutic nanoparticles, Dye particles, Catalytic nanoparticles, Photocatalytic nanoparticles, Dye-sensitized solar cells, Mass-production of designer nanoparticles, Light-assisted mass production of nanoparticles using colloidal chemistry.
詳細技術說明
None
*Abstract

Concurrent control of size, shape, and composition of nanoparticles is key to tuning their functionality with widespread applications in sensing, catalysis, cancer cell ablation, water-splitting, spectroscopy, dye-sensitized solar cells, and more.

UCB inventors demonstrate unprecedented precision over the structure and composition of complex nanoparticles by fusing colloidal chemistry with plasmon assisted synthesis.  They show that combining properties of light used for plasmon excitation (wavelength, intensity, and pulse-duration) with the physical properties of nanoparticles (size, shape, and composition) leads to hitherto unrealized core-vest composite nanostructures. Tunable variations in localized temperature distributions >50 degrees C are achieved over nanoparticles as small as 50-100 nm. These temperature variations result in core-vest formations with selective shell coverage that mirrors the local inhomogeneities of the heat distribution. This new class of core-vest nanoparticles (CVNs) allows plasmonic enhancement of nanocomposite functionalities that are inaccessible in typical core-shell geometries.

 

*Principal Investigation

Name: Carlo Carraro

Department:


Name: Roya Maboudian

Department:


Name: Arthur Okhtay Montazeri

Department:

其他

Additional Technologies by these Inventors


Tech ID/UC Case

27627/2017-149-0


Related Cases

2017-149-0

國家/地區
美國

欲了解更多信息,請點擊 這裡
移動設備