Spectroscopy and Spectral Analysis, Volume. 43, Issue 5, 1340(2023)
Research Progress on Enhancement Mechanism of Surface-Enhanced Raman Scattering of Nanomaterials
[1] [1] Mcquillan A J, Hendra P J, Fleischmann M. Journal of Electroanalytical Chemistry and Interfacial Electrochemistry, 1975, 65(2): 933.
[4] [4] Saini R K, Sharma A K, Agarwal A, et al. Materials Chemistry and Physics, 2022, 287: 126288.
[5] [5] Gkhan D. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2022, 278: 121308.
[6] [6] Xie T H, Cao Z J, Li Y J, et al. Food Chemistry, 2022, 381: 132208.
[7] [7] Wu J, Fang J H, Xu L. Applied Surface Science, 2021, 563: 150367.
[8] [8] Li Y, Xin X L, Zhang T T, et al. Chemical Engineering Journal, 2021, 422: 129983.
[9] [9] Shafi M, Zhou M X, Duan P Y, et al. Sensors and Actuators B: Chemical, 2022, 356: 131360.
[10] [10] Zhang M, Wang Y A, Ma Y, et al. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2022, 264: 120288.
[11] [11] Nguyen H A, Mai Q D, Ngo X D, et al. Applied Surface Science, 2022, 584: 152555.
[12] [12] Lombardi J R, Birke R L. The Journal of Physical Chemistry C, 2008, 112: 5605.
[13] [13] Lombardi J R, Birke R L. Accounts of Chemical Research, 2009, 42(6): 734.
[14] [14] Garrell R L. Annual Review of Analytical Chemistry, 2009, 394(7): 1717.
[15] [15] Pilot R, Signorini R, Durante C, et al. Biosensors, 2019, 9(2): 57.
[16] [16] Rivera V A G, Silva O B, Ledemi Y, et al. Collective Plasmon-Modes in Gain Media Quantum Emitters and Plasmonic Nanostructues. Springer International Publishing, 2015: 71.
[17] [17] Willets K A, Duyne R P V. Annual Review of Physical Chemistry, 2007, 58(1): 267.
[18] [18] Nitzan A, Brus L E. The Journal of Chemical Physics, 1981, 75(5): 2205.
[19] [19] Shiohara A, Wang Y S, Liz-Marzán L M. Journal of Photochemistry & Photobiology Reviews, 2014, 21: 2.
[21] [21] Dong J, Zhao X, Gao W, et al. Nanoscale Research Letters, 2019, 14(1): 118.
[22] [22] Xu R, Yan L, Zhu Y Y, et al. Plasmonics, 2020, 15(6): 2061.
[23] [23] Wang K Q, Li J J. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2021, 263(15): 1386.
[24] [24] Yan X Y, Wang M L, Sun X, et al. Applied Surface Science, 2019, 479: 879.
[25] [25] Furtak T E, Macomber S H. Chemical Physics Letters, 1983, 95(4-5): 328.
[26] [26] Yang L, Peng Y, Yang Y, et al. Advanced Science, 2019, 6(12): 1900310.
[27] [27] Chen L, Tang J P, Ma H, et al. Biosens Bioelectron, 2021, 191: 113452.
[28] [28] Billmann J, Otto A. Solid State Communications, 1982, 44(2): 105.
[29] [29] Otto A. Journal of Raman Spectroscopy, 2005, 36(6-7): 497.
[30] [30] Otto A, Mrozek I, Grabhorn H, et al. Surface-Enhanced Raman Scattering. Elsevier Dynamics of Gas-Surface Interaction, 1982, 186.
[31] [31] Jensen L, Aikens C M, Schatz G C. Chemical Society Reviews, 2008, 37(5): 1061.
[32] [32] Lombardi J R, Birke R L. The Journal of Physical Chemistry C, 2014, 118(20): 11120.
[33] [33] Alessandri I, Lombardi J R. Chemical Reviews, 2016, 116(24): 14921.
[34] [34] Wang X, Guo L. Angewandte Chemie International Edition, 2020, 59(11): 4231.
[35] [35] Yang L L, Peng Y S, Yang Y, et al. Advanced Science, 2019, 6: 1900310.
[36] [36] Fujisawa J I. Chemical Physics Letters, 2021, 778: 138774.
[37] [37] Zhang H, Huang S Q, Yang X, et al. Sensors and Actuators B: Chemical, 2021, 343: 130142.
[38] [38] Pham T T H, Vu X H, Trang T T, et al. Optical Materials, 2021, 120(47): 111460.
[39] [39] Chen M P, Liu D, Du X Y, et al. Trends in Analytical Chemistry, 2020, 130: 115983.
[40] [40] Ananthoju B, Biroju R K, Theis W G, et al. Small, 2019, 15(48): 1901555.
[41] [41] Jiang X, Yin D, Yang M, et al. Applied Surface Science, 2019, 487: 938.
[42] [42] Papadakis D, Diamantopoulou A, Pantazopoulos P A, et al. Nanoscale, 2019, 11(44): 21542.
[43] [43] Huang S, Ling X, Liang L, et al. Nano Letters, 2015, 15(5): 2892.
[44] [44] Sheena Mary Y, Shyma Mary Y. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2021, 244: 118865.
[45] [45] Li J Y, Zhang S F, Yang J, et al. Vacuum, 2021, 194: 110579.
[46] [46] Zhao Z H, Zhao X, Zhang M, et al. Nanomaterials, 2021, 11(8): 2063.
[47] [47] Samriti, Prateek, Joshi M C, et al. Materials Chemistry and Physics, 2022, 278: 125642.
[48] [48] Lombardi J R, Birke R L. The Journal of Chemical Physics, 2012, 136: 144704.
[49] [49] Kumar E A, Barveen N R, Wang T J, et al. Microchemical Journal, 2021, 170: 106660.
[50] [50] Zeng Y, Wang F, Du D, et al. Applied Surface Science, 2021, 544: 148924.
[51] [51] Yi Z, Xu X B, Kang X L, et al. Surface and Coatings Technology, 2017, 324: 257.
[52] [52] Lai H S, Xu F G, Zhang Y, et al. Journal of Materials Chemistry B, 2018, 6(24): 4008.
[53] [53] Jabońska A, Jaworska A, Kasztelan M, et al. Current Medicinal Chemistry, 2019, 26(38): 6878.
[54] [54] Vales V, Drogowska-Horná K, Guerra V, et al. Scientific Reports, 2020, 10: 4516.
[55] [55] Kaushik V, Kagdada H L, Singh D K, et al. Applied Surface Science, 2022, 574: 151724.
[56] [56] He Q H, Han Y K, Huang Y Z, et al. Sensors and Actuators B: Chemical, 2021, 341: 130031.
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LI Jia-jia, XU Da-peng, WANG Zi-xiong, ZHANG Tong. Research Progress on Enhancement Mechanism of Surface-Enhanced Raman Scattering of Nanomaterials[J]. Spectroscopy and Spectral Analysis, 2023, 43(5): 1340
Received: Mar. 3, 2022
Accepted: --
Published Online: Jan. 7, 2024
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