Acta Optica Sinica, Volume. 40, Issue 11, 1117001(2020)
Graphene-Based Optical Biosensor Using Functionalized Magnetic Nanoparticles
[1] Bao Q L, Zhang H, Wang B et al. Broadband graphene polarizer[J]. Nature Photonics, 5, 411-415(2011).
[2] Ye Q, Wang J, Liu Z B et al. Polarization-dependent optical absorption of graphene under total internal reflection[J]. Applied Physics Letters, 102, 021912(2013).
[3] Xing F, Liu Z B, Deng Z C et al. Sensitive real-time monitoring of refractive indexes using a novel graphene-based optical sensor[J]. Scientific Reports, 2, 908(2012).
[4] Peterson A W, Halter M, Tona A et al. High resolution surface plasmon resonance imaging for single cells[J]. BMC Cell Biology, 15, 35(2014).
[6] Sun L X, Zhang Y Q, Wang Y J et al. Real-time subcellular imaging based on graphene biosensors[J]. Nanoscale, 10, 1759-1765(2018).
[7] Wang Y J, Zhang S W, Xu T et al. Ultra-sensitive and ultra-fast detection of whole unlabeled living cancer cell responses to paclitaxel with a graphene-based biosensor[J]. Sensors and Actuators B: Chemical, 263, 417-425(2018).
[8] Jiang W S, Xin W, Xun S et al. Reduced graphene oxide-based optical sensor for detecting specific protein[J]. Sensors and Actuators B: Chemical, 249, 142-148(2017).
[10] Bianco M. Sonato A, de Girolamo A, et al. An aptamer-based SPR-polarization platform for high sensitive OTA detection[J]. Sensors and Actuators B: Chemical, 241, 314-320(2017).
[11] Zhang H, Sun Y, Wang J et al. Preparation and application of novel nanocomposites of magnetic-Au nanorod in SPR biosensor[J]. Biosensors and Bioelectronics, 34, 137-143(2012).
[12] Xing F, Zhang S, Yang Y et al. Chemically modified graphene films for high-performance optical NO2 sensors[J]. The Analyst, 141, 4725-4732(2016).
[14] Miao P, Tang Y G, Wang L. DNA modified Fe3O4@Au magnetic nanoparticles as selective probes for simultaneous detection of heavy metal ions[J]. ACS Applied Materials & Interfaces, 9, 3940-3947(2017).
[15] Chen H X, Qi F J, Zhou H J et al. Fe3O4@Au nanoparticles as a means of signal enhancement in surface plasmon resonance spectroscopy for thrombin detection[J]. Sensors and Actuators B: Chemical, 212, 505-511(2015).
[17] Li C M. Applications of AuNPs, Fe3O4 Nanoparticles and Fe3O4@Au nanorose in biosensing and cell imaging[D]. Chongqing: Southwest University, 69-87(2013).
[18] Guo X W. Fe3O4@Au nanoparticles enhanced surface plasmon resonance for ultrasensitive immunoassay[J]. Sensors and Actuators B: Chemical, 205, 276-280(2014).
[19] Sun L X, Zhang Y Q, Wang Y J et al. Refractive index mapping of single cells with a graphene-based optical sensor[J]. Sensors and Actuators B: Chemical, 242, 41-46(2017).
[20] Sun L X, Zhang Y Q, Zhang C L et al. Refractive index sensing and imaging based on polarization-sensitive graphene[J]. Optics Express, 27, 29273-29286(2019).
[22] Yang Y, Sun J L, Liu L et al. Research of detection depth for graphene-based optical sensor[J]. Optics Communications, 411, 143-147(2018).
[23] Chikazawa J I, Uwada T, Furube A et al. Flow-induced transport via optical heating of a single gold nanoparticle[J]. The Journal of Physical Chemistry C, 123, 4512-4522(2019).
[24] Zhang H, Zhong X, Xu J J et al. Fe3O4/polypyrrole/Au nanocomposites with core/shell/shell structure: synthesis, characterization, and their electrochemical properties[J]. Langmuir, 24, 13748-13752(2008).
[25] Meulenberg E P. Immunochemical methods for ochratoxin A detection: a review[J]. Toxins, 4, 244-266(2012).
[26] Mateo R, Medina Á, Mateo E M et al. An overview of ochratoxin A in beer and wine[J]. International Journal of Food Microbiology, 119, 79-83(2007).
[27] Al Rubaye A, Nabok A, Catanante G et al. Detection of ochratoxin A in aptamer assay using total internal reflection ellipsometry[J]. Sensors and Actuators B: Chemical, 263, 248-251(2018).
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Huiqin Zhang, Lixun Sun, Yizhe Yang, Xiaojing Wu, Yong Yang, Siwei Zhu, Xiaocong Yuan. Graphene-Based Optical Biosensor Using Functionalized Magnetic Nanoparticles[J]. Acta Optica Sinica, 2020, 40(11): 1117001
Category: Medical Optics and Biotechnology
Received: Dec. 23, 2019
Accepted: Mar. 10, 2020
Published Online: Jun. 10, 2020
The Author Email: Wu Xiaojing (xiaojingwu@nankai.edu.cn), Yang Yong (yangyong@nankai.edu.cn)