Thermally Induced Silane Dehydrocoupling on Silicon Nanostructures

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Organic trihydridosilanes can be grafted to hydrogen-terminated porous Si nanostructures with no catalyst. The reaction proceeds efficiently at 80 degrees C, and it shows little sensitivity to air or water impurities. The modified surfaces are stable to corrosive aqueous solutions and common organic solvents. Octadecylsilane H3Si(CH2)(17)CH3, and functional silanes H3Si(CH2)(11)Br, H3Si(CH2)(9)CH=CH2, and H3Si(CH2)(2)(CF2)(5)CF3 are readily grafted. When performed on a mesoporous Si wafer, the perfluoro reagent yields a superhydrophobic surface (contact angle 151 degrees). The bromo-derivative is converted to azide, amine, or alkyne functional surfaces via standard transformations, and the utility of the method is demonstrated by loading of the antibiotic ciprofloxaxin (35% by mass). When intrinsically photoluminescent porous Si films or nanoparticles are used, photoluminescence is retained in the grafted products, indicating that the chemistry does not introduce substantial nonradiative surface traps.
Publisher
WILEY-V C H VERLAG GMBH
Issue Date
2016-05
Language
English
Article Type
Article
Citation

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, v.55, no.22, pp.6423 - 6427

ISSN
1433-7851
DOI
10.1002/anie.201601010
URI
http://hdl.handle.net/10203/306539
Appears in Collection
CH-Journal Papers(저널논문)
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