
参考文献
[1] Zhang Y,Wang P,Jia G,et al. A short-wavelength raman optical activity spectrometer with laser source at 457 nm for the characterization of chiral molecules. Applied Spectroscopy,2017,71(9): 2211-2217.
[2] Zhang X,Du Z,Luan Z,et al. In situ Raman detection of gas hydrates exposed on the seafloor of the South China Sea. Geochemistry,Geophysics,Geosystems,2017,18(10): 3700-3713.
[3] Domes C,Domes R,Popp J,et al. Ultrasensitive detection of antiseptic antibiotics in aqueous media and human urine using deep UV resonance raman spectroscopy. Analytical chemistry,2017,89(18): 9997-10003.
[4] Mai L,Bao L J,Shi L,et al. A review of methods for measuring microplastics in aquatic environments. Environmental Science and Pollution Research,2018,25(12): 11319-11332.
[5] Ko J,Park S G,Lee S,et al. Culture-free detection of bacterial pathogens on plasmonic nanopillar arrays using rapid raman mapping. ACS applied materials and interfaces,2018,10(8): 6831-6840.
[6] Foucher F,Guimbretière G,Bost N,et al. Petrographical and mineralogical applications of Raman mapping. Raman spectroscopy and applications. IntechOpen,London,2017: 163-180.
[7] Synge E H. XXXVIII. A suggested method for extending microscopic resolution into the ultra-microscopic region. The London,Edinburgh,and Dublin Philosophical Magazine and Journal of Science,1928,6(35): 356-362.
[8] Wessel J. Surface-enhanced optical microscopy. Journal of the Optical Society of America b,1985,2(9): 1538-1541.
[9] Lipiec E W,Wood B R. Tip-Enhanced Raman Scattering: Principles,Instrumentation,and the Application toe Biological Systems//Encyclopedia of Analytical Chemistry: Applications,Theory and Instrumentation,2006: 1-26.
[10] Gibson K F,Kazarian S G,Kharintsev S S. Tip-Enhanced Raman Spectroscopy. Encyclopedia of Analytical Chemistry: Applications,Theory and Instrumentation,2006: 1-33.
[11] Böhme R,Mkandawire M,Krause-Buchholz U. Characterizing cytochrome c states–TERS studies of whole mitochondria. Chemical Communications,2011,47(41): 11453-11455.
[12]Wood B R,Bailo E,Khiavi M A. Tip-enhanced Raman scattering (TERS) from hemozoin crystals within a sectioned erythrocyte. Nano letters,2011,11(5): 1868-1873.
[13] Fleischmann M,Hendra P J,McQuillan A J. Raman spectra of pyridine adsorbed at a silver electrode. Chemical Physics Letters,1974,26(2): 163-166.
[14] Shi G,Wang M,Zhu Y. A flexible and stable surface-enhanced Raman scattering (SERS) substrate based on Au nanoparticles/Graphene oxide/Cicada wing array. Optics Communications,2018,412: 28-36.
[15] Tang S,Li Y,Huang H,et al. Efficient enrichment and self-assembly of hybrid nanoparticles into removable and magnetic SERS substrates for sensitive detection of environmental pollutants. ACS applied materials and interfaces,2017,9(8): 7472-7480.
[16] 张丹. 氨基酸的表面增强拉曼光谱研究[D].杭州:浙江工业大学,2016.
[17] 唐慧容. 银溶胶表面增强拉曼光谱(SERS)定性和定量分析农药残留的方法研究[D].上海:华东理工大学,2012.
[18] 叶冰.脐橙农药残留表面增强拉曼光谱检测方法研究[D].南昌:华东交通大学,2014.
[19] 万常斓. 水果农药残留拉曼光谱检测方法研究[D].南昌:华东交通大学,2013.
[20] 李俊杰,严霖元,刘木华,等. 脐橙果肉中噻菌灵农药的SERS快速检测研究.江西农大学学报,2014,36(06):1229-1233.
[21] 王晓彬,曾海龙,吴瑞梅,等. 基于SERS技术的脐橙果肉中三唑磷农药残留快速检测研究.食品工业科技,2015,36(10): 83-85,95.
[22] Fan Y,Lai K,Rasco B A,et al. Analyses of phosmet residues in apples with surface-enhanced Raman spectroscopy. Food Control,2014,37: 153-157.
[23] Wijaya W,Pang S,Labuza T P,et al. Rapid detection of acetamiprid in foods using surface-enhanced Raman spectroscopy (SERS). Journal of food science,2014,79(4): T743-T747.
[24] 翟晨,徐田锋,彭彦昆,等. 基于银溶胶表面增强拉曼光谱对菠菜毒死蜱农药的快速检测.光谱学与光谱分析,2016,36(09): 2835-2840.
[25] 姬文晋,张磊,罗洪盛,等. 纳米银溶胶的制备及利用其SERS效应检测BPA的研究. 光散射学报,2016,28(04): 293-296.
[26] Li X,Yang T,Li S,et al. Raman spectroscopy combined with principal component analysis and k nearest neighbour analysis for non-invasive detection of colon cancer. Laser Physics. 2016,26(3): 035702.
[27] Ryzhikova E,Kazakov O,Halamkova L,et al. Raman spectroscopy of blood serum for Alzheimer’s disease diagnostics: specificity relative to other types of dementia. Journal of Biophotonics. 2015,8(7): 584-596.
[28] Li S,Zhang Y,Xu J,et al. Noninvasive prostate cancer screening based on serum surface-enhanced Raman spectroscopy and support vector machine. Applied Physics Letters, 2014,105(9): 091104.
[29] Li Z,Wang J J,Huang J,et al. Nonlinear alignment of chromatograms by means of moving window fast Fourier transform cross-correlation. Journal of separation science,2013,36(9-10): 1677-1684.
[30]陈达,许云涛,李奇峰,等. 基于多尺度二维相关拉曼光谱的橄榄油掺杂检测. 纳米技术与精密工程,2016,14(1): 60-65.