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11. Buriak JM: Illuminating silicon surface hydrosilylation: an unexpected plurality of mechanisms. Chem Mater 2013, 26:763–772.CrossRef 12. Terracciano M, Rea I, Politi J, De Stefano L: Optical characterization of aminosilane-modified silicon dioxide surface for biosensing. J Europ Opt Soc Rap Public 2013, 8:13075.CrossRef 13. Ellington A, Pollard D: Synthesis and purification of oligonucleotides. In Current Protocols in Molecular Biology. New York: Wiley; 2001:2.11.1–2.11.25. 14. Kuijpers BIX 1294 price WHA, Huskens J, van Boeckel CAA: The 2-(acetoxymethyl)benzoyl (AMB) group as a new base-protecting group, designed for the protection of (phosphate) modified oligonucleotides. Tetrahedron Lett 1990, 31:6729. 10.1016/S0040-4039(00)97159-4CrossRef 15. Iyer RP, Dong Y, Jin X, Wen Z, Sudhir A: The use of gaseous ammonia for the deprotection and cleavage steps during the solid-phase synthesis of oligonucleotides, Smad inhibitor and analogs. Bio Med Chem Lett 1997, 11:1443.CrossRef 16. De Stefano L, Oliviero G, Amato J, Borbone N, Piccialli G, Mayol L, Rendina I, Terracciano M, Rea I: Aminosilane functionalizations of mesoporous oxidized silicon for oligonucleotides synthesis and detection. J R Soc Interface 2013, 10:20130160. 10.1098/rsif.2013.0160364542423536541CrossRef

17. Rea I, Oliviero G, Amato J, Borbone N, Piccialli G, Rendina I, De Stefano L: Direct synthesis of oligonucleotides on nanostructured Oxaprozin silica multilayers. J Phys Chem C 2010, 114:2617.CrossRef 18. Salonen J, Laine E, Niinistö L: Thermal carbonization of porous silicon surface by acetylene. J App Phys 2002, 91:456–461. 10.1063/1.1421221CrossRef Competing interests The Selleck Eltanexor Authors declare that they have no competing interests. Authors’ contributions MT performed the experiments. LDS and IR designed

the research. MT and IR analysed the data and wrote the paper. LDS and NB corrected the paper. MT prepared and characterized the samples. GO, SDE and FN performed the oligonucleotide synthesis and characterization. IvR and GP have given final approval of the version to be published. All authors read and approved the final manuscript.”
“Background During the last few years, there have been increasing efforts in developing growth of functional hybrid structures of III-V semiconductors on graphene or graphite thin films. In these hybrid structures, the graphene (or graphite) could function as a device electrode owing to its excellent optical transparency, electrical conductivity and flexibility [1]. Also, because of its two dimensional (2D) crystal structure and the chemical stability, the graphene serves as a platform for growth of semiconductors via van der Waals epitaxy.

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