"A bottom-up enzyme encapsulation technique on mesoporous silica together with top-down deep X-ray lithography provides a novel fabrication method for producing bioactive mesoporous patterned substrates for potential use as a biosensing platform. This precise, spatially controllable functionalisation technique is promising for micro-fluidic or lab-on-a-chip type devices.. . . "

Microfabrication of Mesoporous Silica Encapsulated Enzymes using Deep X-Ray Lithography / Doherty, Cm; Gao, Y; Marmiroli, B; Amenitsch, H; Lisi, F; Malfatti, Luca; Okada, K; Takahashi, M; Hill, Aj; Innocenzi, Plinio; Falcaro, P.. - In: JOURNAL OF MATERIALS CHEMISTRY. - ISSN 0959-9428. - 22:32(2012), pp. 16191-16195. [10.1039/c2jm32863a]

Microfabrication of Mesoporous Silica Encapsulated Enzymes using Deep X-Ray Lithography

MALFATTI, Luca;INNOCENZI, Plinio;
2012-01-01

Abstract

"A bottom-up enzyme encapsulation technique on mesoporous silica together with top-down deep X-ray lithography provides a novel fabrication method for producing bioactive mesoporous patterned substrates for potential use as a biosensing platform. This precise, spatially controllable functionalisation technique is promising for micro-fluidic or lab-on-a-chip type devices.. . . "
2012
Microfabrication of Mesoporous Silica Encapsulated Enzymes using Deep X-Ray Lithography / Doherty, Cm; Gao, Y; Marmiroli, B; Amenitsch, H; Lisi, F; Malfatti, Luca; Okada, K; Takahashi, M; Hill, Aj; Innocenzi, Plinio; Falcaro, P.. - In: JOURNAL OF MATERIALS CHEMISTRY. - ISSN 0959-9428. - 22:32(2012), pp. 16191-16195. [10.1039/c2jm32863a]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11388/156553
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