Laser Journal, Volume. 45, Issue 1, 1(2024)
Research progress in fiber optic Raman biochemical sensors
[1] [1] Wa ng R, Zh an g H, Li u Q, et a l. O perando m onitoring of ion acti vities in aq ueous batteri es with plasmon ic fiber-optic senso rs [ J]. Nat. Com mu n. , 20 22 , 13( 1): 547.
[2] [2] Dong L, G ang T, Bian C, et al. A hi gh sensit ivity o ptical fib er stra in sensor bas ed on h ollow core tapering [J]. Opti- cal Fi ber Tech nology , 202 0, 56.
[3] [3] Wang Q, Jin g J -Y, Wang B-T. Hig hly Sensitive S PR Bio- se nsor Based on Grap hen e Oxide and Staphyloco ccal P rotein A Co-Modif ied TFBG for Huma n IgG Detection [J] . IEEE Transac tions on Instrumentation and Measurement, 2019, 68(9) : 3 350- 3357.
[4] [4] Zhang B , Asad Ra hman M, L iu J, et al . R eal-time detec- tio n and a nalysis of fo odborne pathoge ns via machine learn- ing ba sed fiber - optic Raman sensor [ J]. Measurement, 2023 , 2 17.
[5] [5] Ham J, Lee K M, Ko J, et al. Susp ens io n Arrays Pr epared from N anofiber-B ased Micropar ticles for a Platform of SERS-Based M ultiplex Immun oassay [J]. ACS Applied Polymer Mat eria ls, 202 2, 5(1 ): 62 5-6 34.
[6] [6] Qin Y, H uang R, Lu F, et a l. Effects o f the cone an gle on the SE RS detect ion sen sitivity of tapered fiber probes [ J]. Op tics Expre ss, 202 2, 3 0( 21) :310-319.
[7] [7] Yu M, T ian Q , He G, et al. Surfa ce - Enhanc ed Ra man Scatter ing Fi ber Probe B ased o n Silver Nanocubes [J]. Ad- vance d F iber M ate rials, 2 02 1, 3( 6): 349-3 58.
[8] [8] Ya ng K, Wa ng Z, Zhang J. Hig h se nsitivity D-sh ape d fi- ber decorated with se lf-assembl y Ag nano parti cles for Ra- man e nhancemen t via c ollecti ng back wa rd an d vertical di- rection scattering signals [J]. Optics & Laser Technology, 202 3, 164:28 5-2 93.
[9] [9] Liu M, Zh ang W, Me ng C, et a l. Lab on D -sh aped fiber excited vi a azimu thally polariz ed ve ctor be am for su rface -enhanced Raman spectroscopy [J]. Optics Express, 2020, 28( 8) :185- 194.
[10] [10] Yin Z, Geng Y, L i X, et al. Sensitivity - Enhan ced U -Shaped Fiber SERS Probe Wi th Photor educed Silver Nanop- articl es [ J]. IE EE Pho toni cs Jou rnal, 2016, 8( 3): 1 -7.
[11] [11] Yuan L, Lan X, Hua ng J, e t al. Comp aris on of Silica and Sapphire Fiber SERS Probes Fabricated by a Femtosecond Laser[J]. IEEE Photonics Technology Letters, 2014, 26 (13): 1299-1302.
[12] [12] Erdene N. Fa bricatio n of fib er-optic loc ali zed su rface plas-mon re sonance s en sor and its applicati on to d etect ant ibody-antigen r eaction of interferon - gamma [ J]. Optical Engi- ne eri ng, 201 1, 5 0(1 2) :85 -93.
[13] [13] Li J, Mu Y, Liu M, et al. Direct Laser Writing of SERS Hollow Fibers [J]. Nanomaterials, 2022, 12( 16):104 -112.
[14] [14] Mu Y, Li u M, Li J, et al. Plas monic hollow fibers w ith distribu ted inn er-wal l hots pots for direct SERS dete ction of flowing liquids [ J]. Opt. Lett. , 2021, 46 ( 6): 1369 -1372.
[18] [18] Zhou X, Hu Z, Yang D, et al. Bacteria Det ection: From Powe rful S ERS to Its Ad vanced Compat ible Techniques [J]. Ad v. Sci. ( We inh), 20 20, 7( 23): 2001 739.
[19] [19] Arabi M, Ostovan A, Zha ng Z, e t al. Label- fre e SERS de- tectio n of Raman -Inactive protein biomar kers b y Raman re- porte r indicat or: Toward ultrase nsitiv ity and universality [J]. Bi osens Bi oele ctro n, 2 021 , 1 74: 112825.
[20] [20] Jiang L, Ha ssan M M, Al i S, et al. Evol ving tre nd s in SER S-bas ed techn iqu es for food qu ali ty and safety : A re- view [ J]. Trends in Food Science & Technology, 2021, 11 2: 2 25-2 40.
[21] [21] Fu X, Wang Z, Li J, et al. M icro cavity Fibe r SERS Pr obe Coat ed Wi th Ag Nanoparti cles For Detecti ng Antib iotic in Mil k [ J]. I EEE Photo nics Jo urna l, 2021, 13(2): 1-13.
[22] [22] Liu Y , Zho u F, Wang H , e t al. M icro -coffee-r ing-pat- tern ed fiber SE RS pro bes and their in situ detecti on ap plica- tion in c omplex liqu id envi ronments [J]. Sensors and Actu- ato rs B : C hem ical , 2 01 9, 2 99:92-101.
[23] [23] Liu Y, Liu R, Ai C, e t a l. Stic k-slip -motion-assis ted in- terfac ial self -asse mbly of nob le metal nanop arti cles on ta- pered optical fiber sur face and its appli cation i n SERS de- tection [ J]. Applied Surface Science, 2022, 602: 244 -251 .
[24] [24] Guo X- D, Tang J , Liu W-Y , e t al. Ap plication o f cone-cylinder combin ed fi ber prob e to surf ace enh anced Raman scattering [J]. Acta Physica Sinica, 2017, 66 ( 4):82 -90.
[25] [25] Che n Z, Dai Z, C hen N, et a l. G old Nan opartic les-Modi- fied Tapere d Fiber N anoprobe for Remote SERS Detection [J]. IEEE Photonics Technology Letters, 2014, 26( 8): 777 -780.
[26] [26] Luo Q, Ba i H, Chuang F, et al. A b iconical tape r multi-mode fibe r SERS sensor [Z]. Optical Sensors and Biopho- tonics II. 2010. 10. 1117 / 12. 888564
[27] [27] Che n Z, Dai Z, C hen N, et a l. G old Nan opartic les-Modi- fied Tapere d Fiber N anoprobe for Remote SERS Detection [J]. IEEE Photonics Technology Letters, 2014, 26( 8): 777-780.
[28] [28] Luo Q, Ba i H, Chuang F, et al. A b iconical tape r multi-mode fibe r SERS sensor [Z]. Optical Sensors and Biopho- tonics II. 2010. 10. 1117 / 12. 888564
[30] [30] Yin Z , Gen g Y , Xie Q, et a l. Ph otoreduce d silver nan opar- ticles gro wn on femtosecond laser ab lated, D- shaped fiber prob e for su rface - en hanced Raman scattering [ J]. Appl Opt, 201 6, 55 (20 ): 540 8- 541 2.
[31] [31] Zhang J, C hen S, Gong T, et a l. Tap ered Fiber Probe Modified by Ag N anopartic les for SERS Detection [ J ]. Plas mo nics, 201 5, 11 (3) : 743- 751.
[32] [32] Gao D , Yang X, Teng P, et al. O ptofluidic in- fiber inte- grated s ur face - enhance d Ra man s pectroscop y det ection base d on a hollow optical fib er with a suspended core [ J]. Opt . L ett. , 201 9, 44(21): 51 73- 5176.
[33] [33] Cao J, W ang J. De velop ment of Ag n anopol yhedra ba sed fi- ber- optic pr ob es for high p erform ance SER S detection [J]. New Jo urnal of C hemi stry , 2015 , 39(4) : 24 21-2424.
[34] [34] Cao J, Zhao D , Qin Y. Novel str ategy for fa bricatio n of sens ing layer on th iol-fu nctional ized f iber-opti c taper s and their application as SERS probes [J]. Talanta, 2019, 194: 895-902.
[36] [36] Zhen gkun W, Z hina n Y, Ning W , et al. Raman en hance- ment mec hanism and e xperim ents of cavity -enhan ced Ag NP decora ted tapered fiber sensor [ J]. Opt. Lett. , 2021, 46 (17): 4 300-4303 .
[39] [39] Gao D, Yang X, Teng P, et al. In-fiber optofluidic online SERS detection of trace uremia toxin [J]. Opt. Lett. ,2021, 46(5): 1101-1104.
[40] [40] Gao D, Yang X, Teng P, et al. On-line SERS detection of adenine in DNA based on the optofluidic in-fiber integrated GO/ PDDA/ Ag NPs [J]. Sensors and Actuators B: Chemical,2021, 332.
[41] [41] Gao D, Yang X, Teng P, et al. On-line SERS detection of bilirubin based on the optofluidic in-fiber integrated GO/ AgNPs for rapid diagnosis of jaundice [J]. Talanta, 2021,234: 122692.
[42] [42] Gao D, Yang X, Luo M, et al. Surface-Enhanced Raman Spectroscopy Detection of Cerebrospinal Fluid Glucose Based on the Optofluidic In-Fiber-Integrated Composites of Graphene Oxide, Silver Nanoparticles, and 4 - Mercaptophenylboronic Acid [ J]. ACS Applied Nano Materials,2021, 4(10): 10784-10790.
[43] [43] Li X, Zhang Y, Xue B, et al. A SERS nano-tag-based fiber-optic strategy for in situ immunoassay in unprocessed whole blood [J]. Biosens Bioelectron, 2017, 92: 517-522.
[44] [44] Kim J A, Wales D J, Thompson A J, et al. Fiber-Optic SERS Probes Fabricated Using Two-Photon Polymerization For Rapid Detection of Bacteria [ J]. Advanced Optical Materials, 2020, 8(9):76-85.
[47] [47] Wang J, Geng Y, Shen Y, et al. SERS-active fiber tip for intracellular and extracellular pH sensing in living single cells [ J]. Sensors and Actuators B: Chemical, 2019,290: 527-534.
[48] [48] Jin Z, Chu Q, Xu W, et al. All-Fiber Raman Biosensor by Combining Reflection and Transmission Mode [J]. IEEE Photonics Technology Letters, 2018, 30(4): 387-390.
Get Citation
Copy Citation Text
WANG Rui, GAO Shuai, TIAN Fengjun, TENG Pingping, WANG Yuhan, QIANG Chengwen, YANG Xinghua. Research progress in fiber optic Raman biochemical sensors[J]. Laser Journal, 2024, 45(1): 1
Category:
Received: Sep. 11, 2023
Accepted: --
Published Online: Aug. 6, 2024
The Author Email: Xinghua YANG (yangxh@hrbeu.edu.cn)