全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
Sensors  2011 

Measurement of Fluorescence in a Rhodamine-123 Doped Self-Assembled “Giant” Mesostructured Silica Sphere Using a Smartphone as Optical Hardware

DOI: 10.3390/s110707055

Keywords: biological sensing and sensors, optical diagnostics for medicine, fluorescence, optoelectronics, light-emitting diodes, fluorescence microscopy, nanomaterials, silica, optical instruments, smartphones, mobile platforms

Full-Text   Cite this paper   Add to My Lib

Abstract:

The blue OLED emission from a mobile phone was characterised, revealing a sharp emission band centred at λ = 445 nm with a 3dB bandwidth Δλ ~ 20 nm. It was used to excite Rhodamine 123 doped within a “giant” mesostructured silica sphere during fabrication through evaporative self-assembly of silica nanoparticles. Fluorescence was able to be detected using a standard optical microscope fitted with a green transmission pass filter and cooled CCD and with 1 ms exposure time demonstrating the potential of mobile platforms as the basis for portable diagnostics in the field.

References

[1]  Lu, J; Liong, M; Zink, J; Tamanoi, F. Mesoporous Silica Nanoparticles as a Delivery System for Hydrophobic Anticancer Drugs. Small 2007, 3, 1341–1346.
[2]  Bruinsma, PJ; Kim, AY; Liu, J; Baskaran, S. Mesoporous Silica Synthesized by Solvent Evaporation: Spun Fibers and Spray-Dried Hollow Spheres. Chem. Mater 1997, 9, 2507–2512.
[3]  Brinker, C; Lu, Y; Sellinger, A; Fan, H. Evaporation-Induced Self-Assembly: Nanostructures Made Easy. Adv. Mater 1999, 11, 579–685.
[4]  Ghallab, YH; Badawy, W. Lab-on-a-Chip: Techniques, Circuits, and Biomedical Applications; Artech House: Norwood, MA, USA, 2010.
[5]  Ahn, CH; Choi, J-W; Beaucage, G; Nevin, JH; Lee, J-B; Puntambekar, A; Lee, YJ. Disposable Smart Lab on a Chip for Point-of-Care Diagnostics. Proc. IEEE 2004, 92, 154–173.
[6]  Jokersta, NM; Brookea, MA; Choa, S; Thomas, M; Lillie, J; Kim, D; Ralph, S; Dennis, K; Comeau, B; Henderson, C. Integrated Planar Lightwave Bio/Chem OEIC Sensors on Si CMOS Circuits. Proc SPIE 2005, 5730, doi:10.1117/12.592771..
[7]  Furman, S. Sensor Solutions for Global Health Challenges. Proceedings of Symposium on Nanomaterial-Based Sensors for Biomedical Applications, Sydney, Australia, 17–18 March 2011.
[8]  Bowman, RW; Gibson, G; Carberry, D; Picco, KL; Miles, M; Padgett, MJ. iTweezers: Optical Micro-Manipulation Controlled by an Apple iPad. J. Opt 2011, 13, 044002.
[9]  “Color Flash”, Apps—Android Market. Available online: https://market.android.com/ (accessed on 21 June 2011).
[10]  HTC Ditches Samsung AMOLED Display for Sony’s Super LCDs. Available online: http://www.ibtimes.com/articles/38429/20100726/htc-ditches-samsung-amoled-display-for-sony-s-super-lcds.htm (accessed on 21 June 2011).
[11]  Naqshbandi, M; Canning, J; de Bruyn, H; Crossley, MJ. Porphyrin-Films Versus Porphyrin-Coated Silica Nanoparticles within Structured Optical Fibres. Proceedings of Asia Pacific Optical Sensors (APOS 2), Guangzhou, China, 28–30 June 2010.
[12]  Larmour, I; Saunders, G; Bell, S. Remarkably Simple Fabrication of Superhydrophobic Surfaces Using Electroless Galvanic Deposition. Angew. Chem. Int. Ed 2007, 46, 1710–1712.
[13]  Kubin, RF; Fletcher, AN. Fluorescence Quantum Yields of Some Rhodamine Dyes. J. Luminescence 1982, 27, 455–462.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133