真空 ›› 2026, Vol. 63 ›› Issue (1): 28-34.doi: 10.13385/j.cnki.vacuum.2026.01.05
刘博文, 王瑞生, 梁显鹏, 阴晓俊, 郭志帅, 袁泉, 杨兆祥, 孟靖翔
LIU Bowen, WANG Ruisheng, LIANG Xianpeng, YIN Xiaojun, GUO Zhishuai, YUAN Quan, YANG Zhaoxiang, MENG Jingxiang
摘要: 本文研究和分析了国内外拉曼光谱技术相关标准体系现状,涉及现行国内标准42项,包括国家标准13项,行业标准15项,地方标准4项,团体标准10项;涉及现行国际标准17项,包括ASTM International(美国材料和试验协会国际组织)标准8项,IEC(国际电工委员会)标准6项,ISO(国际标准化组织)标准3项。对现行相关标准侧重的内容进行了归类梳理,探讨了国内外标准化差异与标准接轨融合。最后,对现阶段拉曼光谱技术标准化体系进行了总结,并展望了未来的发展方向,旨在为后续标准体系的不断完善和相关领域的研究提供参考。
中图分类号: O433
| [1] DAS R S, AGRAWAL Y K.Raman spectroscopy: Recent advancements, techniques and applications[J]. Vibrational spectroscopy, 2011, 57(2): 163-176. [2] 刘博文,高鹏,王瑞生,等.拉曼检测仪器用干涉滤光片综述[J]. 真空,2023,60(6):37-41. [3] FAN M, ANDRADE G F S, BROLO A G. A review on recent advances in the applications of surface-enhanced Raman scattering in analytical chemistry[J]. Analytica Chimica Acta, 2020, 1097: 1-29. [4] DODO K, FUJITA K, SODEOKA M.Raman spectroscopy for chemical biology research[J]. Journal of the American Chemical Society, 2022, 144(43): 19651-19667. [5] 王玉平,朱磊,仲嘉琪,等.同位素原子饱和吸收谱稳频的拉曼激光方案[J]. 光子学报,2024,53(1):40-48. [6] KUHAR N, SIL S, VERMA T, et al.Challenges in application of Raman spectroscopy to biology and materials[J]. RSC Advances, 2018, 8(46): 25888-25908. [7] BUTLER H J, ASHTON L, BIRD B, et al.Using Raman spectroscopy to characterize biological materials[J]. Nature Protocols, 2016, 11(4): 664-687. [8] RALBOVSKY N M, LEDNEV I K.Towards development of a novel universal medical diagnostic method: Raman spectroscopy and machine learning[J]. Chemical Society Reviews, 2020, 49(20): 7428-7453. [9] YIN K, DONG X, ZHANG F, et al.Superamphiphobic miniature boat fabricated by laser micromachining[J]. Applied Physics Letters, 2017, 110(12): 121909. [10] QI Y, CHEN E X, HU D, et al.Applications of Raman spectroscopy in clinical medicine[J]. Food Frontiers, 2024, 5(2): 392-419. [11] ZHANG X, TAN Q H, WU J B, et al.Review on the Raman spectroscopy of different types of layered materials[J]. Nanoscale, 2016, 8(12): 6435-6450. [12] 李静,张媛,张莹,等.基于GA-GRNN算法和显微拉曼光谱的城市河流微塑料识别方法研究[J]. 光散射学报,2025,37(1):69-76. [13] BERSANI D, LOTTICI P P.Applications of Raman spectroscopy to gemology[J]. Analytical and Bioanalytical Chemistry, 2010, 397: 2631-2646. [14] WANG Z Y, LIU T, YU Y, et al.Coffee ring-inspired approach toward oriented self assembly of biomimetic Murray MOFs as sweat biosensor[J]. Small, 2018, 14(45): 1802670. [15] 黄帅东. 用于月球矿物探测的拉曼光谱技术研究[D]. 西安:中国科学院大学,2024. [16] 申玮,张文君,廉宇琦,等. 高分辨率MEMS纤毛式湍流传感器[J]. 微纳电子技术,2019,56(11):911-917. [17] 武建龙,胡江荣,鲍萌萌,等. 基于专利数据的全球光刻技术竞争态势研究[J]. 科技与管理,2023,25(1):1-12. [18] 柳艳. 基于拉曼光谱法的假药快速检测新方法的研究[D]. 上海:第二军医大学,2012. [19] 覃治鹏. 中红外3μm波段Er:ZBLAN光纤激光器研究[D]. 上海:上海交通大学,2017. [20] NTZIOUNI A, THOMSON J, XIARCHOS I, et al.Review of existing standards, guides, and practices for Raman spectroscopy[J]. Applied Spectroscopy, 2022, 76(7): 747-772. [21] 王春喜,柳晓菁.传感器及仪器仪表技术发展和标准化现状[J]. 自动化博览, 2019(5):34-39. [22] 邱柏凯,蒋东尧,萧健男,等.浅谈近年光学薄膜之应用[J]. 科仪新知, 2020(222):13-34. [23] 孙言,王瑞生,支壮志.荧光成像系统对比度分析与成像仿真[J]. 光学仪器, 2018, 40(2):67-72. [24] 高鹏,金秀,任少鹏,等.浅谈国内外光学薄膜技术标准[J]. 真空,2020,57(4):19-23. [25] 张阳,李挺,刘沁,等.工业传感器技术及标准体系研究[J]. 仪表技术与传感器,2023(5):123-126. [26] RODRIGUEZ J D, WESTENBERGER B J, BUHSE L F, et al.Standardization of Raman spectra for transfer of spectral libraries across different instruments[J]. Analyst, 2011, 136(20): 4232-4240. [27] PENCE I, MAHADEVAN-JANSEN A.Clinical instrumentation and applications of Raman spectroscopy[J]. Chemical Society Reviews, 2016, 45(7): 1958-1979. [28] HUTSEBAUT D, VANDENABEELE P, MOENS L.Evaluation of an accurate calibration and spectral standardization procedure for Raman spectroscopy[J]. Analyst, 2005, 130(8): 1204-1214. [29] 王昕,康哲铭,刘龙,等.基于高斯核主成分分析的多通道拉曼光谱重建[J]. 光子学报,2020,49(3):130-139. [30] QIN J, CHAO K, KIM M S.Raman chemical imaging system for food safety and quality inspection[J]. Transactions of the ASABE, 2010, 53(6): 1873-1882. |
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