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Featured researches published by Ryosuke Hasui.


nano/micro engineered and molecular systems | 2006

Development of New Localized Surface Plasmon Resonance Sensor with Nanoimprinting Technique

Takeo Nishikawa; Hideyuki Yamashita; Megumi Nakamura; Ryosuke Hasui; Tomohiko Matsushita; Shigeru Aoyama

A new localized surface plasmon resonance sensor fabricated by the nanoimprinting technique is presented. Nanoimprinting, one of the most important nanofabrication technologies, can produce stable nanopatterns on a substrate with high throughput. In this study, we apply this technique to the preparation of sensor chips for a low-cost and reliable biosensor. The optimal cross-sectional structure of the sensor chip was calculated by a two-dimensional finite-difference time domain (FDTD) simulation method. The sensor chip with the optimized structure was fabricated by nanoimprinting of the nanopatterned metal mold onto a UV-curable resin and subsequent sputtering of a thin gold film. Using this fabrication process, an extremely large number of sensor chips can easily be produced from a single metal mold with high accuracy and reproducibility. The characteristics of the fabricated sensor chips were evaluated by measuring their absorption spectra. The absorption peak due to the localized SPR could be observed, which was almost consistent with the simulation result. The sensitivity of this sensor chip was confirmed to be comparable with that of the standard localized SPR sensor under development. The low-cost, stable, high-sensitivity biosensors that can be constructed by the present process will generate practical protein chips and point-of-care chips, which are expected to become key diagnosis tools in the future


Japanese Journal of Applied Physics | 2008

Localized Surface Plasmon Resonance Sensor Based on Fabricating Nano-period Structure for High Throughput by Polymer

Tomohiko Matsushita; Takeo Nishikawa; Hideyuki Yamashita; Ryosuke Hasui; Satoshi Fujita; Yutaro Okuno

To realize a low-cost sensor and a sensor chip, we propose a localized surface plasmon resonance (LSPR) sensor in which nano-imprinting technology is applied to produce periodic arrangements of metallic nanostructures; we also verify its utility. LSPR can concentrate electric fields in the vicinity of nano-order metal structures. Accordingly, the sensing depth can be localized, resulting in noise reduction. Furthermore, nano-imprinting can be applied inexpensively and with high accuracy to fabricate nano-patterned sensor chips in large quantities. This work involves the design of an original nano-period structure and the application of nano-imprint technology to the fabrication of a sensor chip. The result is a proposal for a biosensor that allows fabrication with both higher throughput and lower cost.


TRANSDUCERS 2007 - 2007 International Solid-State Sensors, Actuators and Microsystems Conference | 2007

A Nanobiosensor Fabricated by Nanoimprinting Technology

Takeo Nishikawa; Hideyuki Yamashita; Ryosuke Hasui; Y. Ohno; S. Fujita; R. Masuda; Tomohiko Matsushita; Yutaro Okuno; Shigeru Aoyama

A new biosensor with a high sensitivity and a low process cost is presented in this paper. Localized surface plasmon resonance generated inside the nanogrooves was verified to have a high sensitivity and this structure could be produced using a nano imprinting technology which realizes a high reproducibility and a mass-production. The present sensor had five times as high sensitivity as the conventional colloidal localized surface plasmon resonance sensor. And the detection of BSA antigen using the present sensor was attained in this research.


Frontiers in Optics 2008/Laser Science XXIV/Plasmonics and Metamaterials/Optical Fabrication and Testing (2008), paper MWA7 | 2008

Development of Localized Surface Plasmon Resonance Sensor Based on Nanoimprinting Technology

Takeo Nishikawa; Hideyuki Yamashita; Ryosuke Hasui; Rie Masuda; Satoshi Fujita; Yutaro Okuno

This paper introduces a localized surface plasmon resonance biosensor fabricated by using nanoimprinting technology. The detection of a cancer marker (alpha-fetoprotein) by a desktop proto-model based on this principle is also presented.


Archive | 2008

SURFACE PLASMON RESONANCE SENSOR AND SENSOR CHIP

Takeo Nishikawa; Tomohiko Matsushita; Hideyuki Yamashita; Ryosuke Hasui; Satoshi Fujita; Yutaro Okuno; Shigeru Aoyama


Archive | 2007

Surface plasmon resonance sensor and chip therefor

Shigeru Aoyama; Satoshi Fujita; Ryosuke Hasui; Tomohiko Matsushita; Takeo Nishikawa; Yutaro Okuno; Hideyuki Yamashita; 雄太郎 奥野; 英之 山下; 智彦 松下; 亮介 蓮井; 悟史 藤田; 武男 西川; 茂 青山


Archive | 2007

Chip for surface plasmon resonance sensor and surface plasmon resonance sensor

Tomohiko Matsushita; Hideyuki Yamashita; Takeo Nishikawa; Megumi Moriyama; Ryosuke Hasui; Shigeru Aoyama


Archive | 2008

Surface plasmon resonance sensor and chip used for the same

Takeo Nishikawa; Tomohiko Matsushita; Hideyuki Yamashita; Ryosuke Hasui; Satoshi Fujita; Yutaro Okuno; Shigeru Aoyama


Archive | 2009

SURFACE PLASMON RESONANCE CHIP

Ryosuke Hasui; Susumu Kamiyama; Takeo Nishikawa; 進 神山; 亮介 蓮井; 武男 西川


Archive | 2006

New Localized Surface Plasmon Resonance Sensor Utilizing Nanoimprinting Technology

Tomohiko Matsushita; Takeo Nishikawa; Hideyuki Yamashita; Megumi Nakamura; Ryosuke Hasui; Shigeru Aoyama

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