J Photoch Photobio A 2007, 189:105–113 CrossRef 28 Kasai H, Nalw

J Photoch Photobio A 2007, 189:105–113.CrossRef 28. Kasai H, Nalwa HS, Oikawa H, Okada S, Matsuda H, Minami N, Kakuta A, Ono K, Mukoh A, Nakanishi H: A novel preparation method of organic microcrystals. Jpn J Appl Phys 1992, 31:L1132-L1134.CrossRef

29. Ujiiye-Ishii K, Baba K, Wei Z, Kasai H, Nakanishi H, Okada S, Oikawa H: Selleckchem BTK inhibitor Mass-production of pigment nanocrystals by the reprecipitation method and their encapsulation. Mol Cryst Liq Cryst 2006, 445:177–183.CrossRef 30. Oikawa H, Onodera T, Masuhara A, Kasai H, Nakanishi H: New class materials of organic–inorganic hybridized nanocrystals/nanoparticles, and their assembled micro- and nano-structure toward photonics. Polym Mat Adv Polym Sci 2010, 231:147–190.CrossRef 31. Varghese S, Park SK, Casado S, Fischer RC, Resel R, Milian-Medina B, Wannemacher R, Park SY, Gierschner J: Stimulated emission properties of sterically modified distyrylbenzene-based ARRY-438162 clinical trial H-aggregate single crystals. J Phys Chem Lett 2013, 4:1597–1602.CrossRef 32. Lakowicz JR: Principles of Fluorescence Spectroscopy. New York: Springer; 2006.CrossRef 33. Brouwer AM: Standards

for photoluminescence quantum yield measurements in selleck inhibitor solution (IUPAC Technical Report). Pure Appl Chem 2011, 83:2213–2228.CrossRef 34. Baba K, Kasai H, Okada S, Nakanishi H, Oikawa H: Fabrication of diacetylene nanofibers and their dynamic behavior in the course of solid-state polymerization. Mol Cryst Liq Cryst 2006, 445:161–166.CrossRef 35. Takahashi S, Miura H, Kasai H, Okada S, Oikawa H, Nakanishi H: Single-crystal-to-single-crystal transformation of diolefin derivatives in nanocrystals. J Am Cheml Soc 2002, 124:10944–10945.CrossRef 36. Baba K, Kasai H, Okada S, Oikawa H, Nakanishi H: Fabrication of organic nanocrystals using microwave irradiation and their optical properties. Opt Mater 2003, 21:591–594.CrossRef Competing interests The authors

declare that they have no competing interests. Authors’ contributions KB contributed to the conception of the study, carried out all the experiments, and drafted the manuscript. KN contributed to the interpretation of the data and revision of the manuscript. L-gulonolactone oxidase Both authors read and approved the final manuscript.”
“Background In recent years, there is an explosive development of inorganic semiconductor nanostructures, particularly low-dimensional nanostructures. A variety of low-dimensional nanostructures such as zero-dimensional (0D) nanoparticles; one-dimensional (1D) nanowires, nanotubes, nanorods, and nanobelts; and two-dimensional (2D) nanosheets are investigated extensively due to their novel and fascinating properties compared to their bulk counterparts [1–3]. In addition, as the dimension of a material is reduced to the nanometer scale level, a large percentage of atoms are located at the surface, which significantly affects the structural and optical properties.

Comments are closed.