In this paper we demonstrate the possibility of modifying porous silicon (PSi) particles with surface chemistry and recognition molecules (antibodies) such that these devices could potentially be used for single-cell identification or sensing. This is achieved by modifying PSi Rugate filters via hydrosilylation with surface chemistry that serves firstly, to protect the silicon surfaces from oxidation; secondly, renders the surfaces resistant to nonspecific adsorption of proteins and cells and thirdly, allows further functionality to be added such as the coupling of antibodies. The surface chemistry remained unchanged after sonication of the PSi to form PSi microparticles. The ability to monitor the spectroscopic properties of microparticles...
Porous silicon micro-particles (micro-pSi) with size in the range of 1–10 mm are obtained by etching...
Porous silicon (PSi) is an ideal platform for label-free biosensing, and the development of porous s...
Porous silicon (PSi) is an ideal platform for label-free biosensing, and the development of porous s...
This thesis presents research results obtained on developing novel porous silicon microparticle bios...
Porous silicon (PSi) photonic crystals have aroused research interest as label-free chemical and bio...
Porous silicon (PSi) photonic crystals have aroused interest as chemical and biological sensing devi...
Porous silicon (PSi) is an ideal platform for label-free biosensing, and the development of PSi patt...
Herein, the ability of porous silicon (PSi) particles for selectively binding to specific cells is i...
International audienceWe study the effect of different surface functionalization methods on the sens...
Inorganic porous materials are the subject of much investigation for a variety of bio-application in...
Porous silicon has been established as an excellent sensing platform for the optical detection of ha...
PSi structures have unique physical and optical properties, which are being exploited for a numerous...
Porous silicon micro-particles (micro-pSi) with size in the range of 1–10 mm are obtained by etching...
Herein, the ability of porous silicon (PSi) particles for selectively binding to specific cells is i...
For over 30 years, porous silicon as a material has been leveraged for its usefulness in biomedical ...
Porous silicon micro-particles (micro-pSi) with size in the range of 1–10 mm are obtained by etching...
Porous silicon (PSi) is an ideal platform for label-free biosensing, and the development of porous s...
Porous silicon (PSi) is an ideal platform for label-free biosensing, and the development of porous s...
This thesis presents research results obtained on developing novel porous silicon microparticle bios...
Porous silicon (PSi) photonic crystals have aroused research interest as label-free chemical and bio...
Porous silicon (PSi) photonic crystals have aroused interest as chemical and biological sensing devi...
Porous silicon (PSi) is an ideal platform for label-free biosensing, and the development of PSi patt...
Herein, the ability of porous silicon (PSi) particles for selectively binding to specific cells is i...
International audienceWe study the effect of different surface functionalization methods on the sens...
Inorganic porous materials are the subject of much investigation for a variety of bio-application in...
Porous silicon has been established as an excellent sensing platform for the optical detection of ha...
PSi structures have unique physical and optical properties, which are being exploited for a numerous...
Porous silicon micro-particles (micro-pSi) with size in the range of 1–10 mm are obtained by etching...
Herein, the ability of porous silicon (PSi) particles for selectively binding to specific cells is i...
For over 30 years, porous silicon as a material has been leveraged for its usefulness in biomedical ...
Porous silicon micro-particles (micro-pSi) with size in the range of 1–10 mm are obtained by etching...
Porous silicon (PSi) is an ideal platform for label-free biosensing, and the development of porous s...
Porous silicon (PSi) is an ideal platform for label-free biosensing, and the development of porous s...