共查询到18条相似文献,搜索用时 93 毫秒
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乐果涂膜表面增强拉曼光谱研究 总被引:2,自引:0,他引:2
通过蒸发乐果饱和水溶液在磁控溅射银膜上形成乐果涂膜,利用表面增强拉曼光谱(SERS)技术研究了乐果涂膜的分子振动特性,并与乐果固体拉曼谱进行比较。研究结果表明,乐果晶体结构长程有序性的破坏造成涂膜SERS体系中υ(P—S)和υ(PS)振动峰的展宽和蓝移,水解引起乐果δ(SPOC)和δs(COPOC)振动模式强度降低,OC—N键中的O原子和N原子以及水解质子化的O在银表面吸附造成υ(OC—N)、υ(OC)、δ(N—H)、υ(CN)、δ(C—N—C)、δ(OPO)和υ(P—O)等振动模式显著增强。这为利用SERS技术研究乐果溶液以及乐果在植物体、食品中的残留提供了实验和理论依据。 相似文献
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采用自组装的方法构建了双核磺化酞菁钴轴向配位有序排列的膜层结构. 结合双核磺化酞菁钴分子体系自身所具有的性质及其和桥联分子四巯基吡啶之间相互作用的信息, 对其自组装膜的表面增强拉曼光谱进行了分析, 探讨了其自组装行为, 合理地解释了本自组装体系的膜层结构. 研究结果表明, 双核磺化酞菁钴分子(Bi-CoPc)在这种自组装膜中是以与基底平面存在一定夹角的倾斜的方式排列的. 相似文献
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表面增强拉曼光谱研究银电极/乙腈界面微量水的吸附行为 总被引:1,自引:0,他引:1
利用表面增强拉曼散射技术研究了含微量水的乙腈溶液中银电极 /乙腈界面水分子的吸附行为 ,详细考察了随电极电位的改变及微量水浓度对其的影响 .研究表明 ,银电极双电层中存在多种吸附模式下的水分子结构 .在较正电位下 ,水分子主要与乙腈形成弱的氢键共吸附于电极表面上 ,ν(O— H)伸缩振动出现在3 487cm- 1左右 ,一定范围内增加体相水的浓度对其影响较小 ;在较负电位下 ,随着乙腈解离反应的进行 ,水分子转为与表面配合物 [Ag(CN) n]( n- 1 ) - 作用而共吸附于电极表面 ,其有序性地增加导致 ν(O— H)频率出现在更高的波数 3 5 83 cm- 1 .增加水的浓度加强了界面水分子间的氢键作用 ,致使 ν(O— H)红移 ;在极负电位下 ,水分子发生解离 ,ν(O— H)的振动主要来自 Li OH微晶 ,其波数为 3 665 cm- 1 .随着体相水含量的增加 ,电极表面进一步形成水合 Li OH· H2 O,特征 ν(O— H)的波数为 3 5 63 cm- 1 . 相似文献
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表面增强拉曼光谱研究高分子-金属界面结构 总被引:1,自引:0,他引:1
表面增强拉曼散射(SERS)是近十几年来迅速发展起来的一种有力的表界面分析手段。本文简要地介绍了作者对激光拉曼制样技术的改进,以及SERS在金属表面的聚合反应,聚合物在金属表面的取向,高聚物-金属表界面微观结构等研究中的应用。 相似文献
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《分析试验室》2021,40(9):1109-1116
表面增强拉曼散射(SERS)光谱具有灵敏度高、检测速度快及选择性好等优点。近年来SERS光谱被广泛地应用于分析化学、环境科学、生物传感和界面催化等领域。SERS基底的性能是SERS技术能否得到广泛应用的关键问题。磁性-等离子体纳米复合材料具有SERS活性高、磁分离速度快和稳定性高的特点,已成为材料研究领域的热点之一。从食品安全、环境保护、生物传感与医学诊断、有机污染物的光催化降解及反应监测、药品质量检测五个方面出发,综述了近年来磁性-等离子体纳米复合材料在SERS检测中的应用,对目前磁性-等离子体纳米复合材料作为SERS基底的应用所存在的问题进行了讨论,并展望了未来的研究发展方向。 相似文献
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关节滑液(SF)作为关节重要组分,在关节运动、润滑、保护等方面起至关重要的作用。随着骨关节炎(OA)的发展,滑液内蛋白、多糖等成分也会发生改变,因此可作为OA检测的标志物。常规拉曼光谱法检测的灵敏度较低,难以实现对关节滑液内微/痕量成分的光谱学检测,因此,表面增强拉曼散射(SERS)技术成为微/痕量生物组织检测的优先选择。本研究首先利用配制的银纳米溶胶检测稀释血清和透明质酸(HA),以检验SERS技术用于关节滑液内含物检测的可行性,然后以患病早期(8周)OA犬类膝关节处滑液为实验对象进行SERS检测。结果表明,蛋白谱带和HA、硫酸多糖等多糖谱带的强度均明显增强,实现了关节滑液的微量检测分析。通过病变与健康关节滑液SERS光谱的对比分析发现,在OA早期,关节滑液中HA、硫酸多糖等多糖成分较健康滑液均呈现增加趋势,并与健康关节滑液中对应的相关谱带有显著性差异(p<0.05)。本研究将SERS技术用于关节滑液的检测,取得了较为理想的实验结果,为早期OA识别和病变规律的探究以及关节滑液等组织液的微/痕量检测开辟了新的路径。 相似文献
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合成了碳纳米管和金纳米颗粒的复合物, 测量了水溶液相中复合物的表面增强拉曼光谱, 结果表明, 碳纳米管的巯基化修饰可以提高碳纳米管与金纳米颗粒复合的效率, 随着金纳米颗粒负载量的增加, 碳纳米管的拉曼信号逐渐增强. 加入己二胺分子可以减小金纳米颗粒之间的距离使表面增强效应更显著, 碳纳米管的拉曼光谱得到进一步的增强. 还可进一步在复合体系中加入对巯基苯胺和罗丹明B等小分子拉曼探针, 利用金纳米颗粒的表面增强效应, 这种多元复合体系有望作为多通道拉曼成像探针材料. 相似文献
8.
黄曲霉素B1在银团簇表面吸附的表面增强拉曼光谱 总被引:2,自引:0,他引:2
采用密度泛函理论(DFT)的B3LYP方法和6-311g(d, p)(C, H, O)/LanL2DZ(Ag)基组, 优化得到黄曲霉素分子AFB1与Ag小团簇形成的复合物AFB1-Agn (n=2, 4, 6)的稳定结构, 并计算了三种复合物的表面增强拉曼光谱(SERS)和预共振拉曼光谱(SERRS), 与实验结果相一致. 计算结果显示: 三种复合物表面增强拉曼光谱中C=O伸缩振动模的增强因子约为102-103, 是由于极化率改变引起的静化学增强. 根据含时密度泛函理论(TDDFT)方法计算得到的吸收光谱, 分别选择407.5、446.2和411.2 nm作为入射光, 计算三种复合物的共振拉曼光谱, 发现在SERRS光谱中, Ag―O伸缩振动的增强因子达到104量级, 主要是由电荷转移产生的共振增强引起的. 相似文献
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利用成熟的电极处理方法成功地获得了苯在粗糙铑电极上电化学吸附的拉曼谱图.详细探讨了电极电位、电解质等因素对苯的电化学吸附的影响.结果表明,苯分子吸附到粗糙铑电极上后,表面拉曼谱图与纯苯本体谱图的差别很大,说明吸附后的苯分子在几何及电子结构上发生了巨大变化.苯分子可能以1,3-环己二烯的结构吸附于铑电极表面. 相似文献
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Graphene layer is a monolayer of graphite. Graphene single layer has confirmed to have a higher electron and hole mobility than silicon and has high heat conduction and special optical properties. And un‐perfect graphene sheets exist in any carbon materials. In our previous result to determine the graphene sheets content in any carbon material can be determined by X‐ray spectrum combination with a peak decomposition method. In this study, we have prepared two serious carbon materials from wood wastes, with and without MnO2 catalytic pyrolysis processes. Results show that all the G band intensity of all synthesized samples including a commercial graphene powder in Raman spectrum has a proportional relation with the graphene sheets content in these carbon materials. 相似文献
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Saulius Martusevi
ius Gediminas Niaura Zita Talaikyt Valdemaras Razumas 《Vibrational Spectroscopy》1996,10(2)
The adsorption of
-histidine on a copper electrode from H2O- and D2O-based solutions is studied by means of surface-enhanced Raman scattering (SERS) spectroscopy. Different adsorption states of histidine are observed depending upon pH, potential, and the presence of the SO2−4 and Cl− ions. In acidic solutions of pH 1.2 the imidazole ring of the adsorbed histidine remains protonated and is not involved in the chemical coordination with the surface. The SO2−4 and Cl− ions compete with histidine for the adsorption sites. In solutions of pH 3.1 three different adsorption states of histidine are observed depending on the potential. Histidine adsorbs with the protonated imidazole ring oriented mainly perpendicularly to the surface at potentials more positive than −0.2 V. Transformation of that adsorption state occurs at more negative potentials. As this takes place, histidine adsorbs through the α-NH2 group and the neutral imidazole ring. The Cl− ions cause the protonation and detachment of the α-NH2 group from the surface and the formation of the ion pair NH+3 … Cl− can be observed. In the neutral solution of pH 7.0 histidine adsorbs through the deprotonated nitrogen atom of the imidazole ring and the α-COO− group at E ≥ −0.2 V. However, this adsorption state is transformed into the adsorption state in which the α-NH2 group and/or neutral imidazole ring participate in the anchoring of histidine to the surface, once the potential becomes more negative. In alkaline solutions of pH 11.9 histidine is adsorbed on the copper surface through the neutral imidazole ring. 相似文献
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Comparison of Adsorption of Proteins at Di erent Sizes on Pristine Graphene and Graphene Oxide 下载免费PDF全文
Zuo-si Yu Yi-yi Gao Xiao-gang Wang Guo-quan Zhou Song-wei Zeng Jun-lang Chen 《化学物理学报(中文版)》2018,31(1):85-91
Using all-atom molecular dynamics (MD) simulations, we have investigated the adsorption stability and conformation change of different proteins on the surface of pristine graphene (PG) and graphene oxide (GO). We find that: (ⅰ) with the cooperation of the electrostatic interactions between proteins and oxygen-containing groups, GO shows better adsorption stability than PG; (ⅱ) the peptide loses its secondary structure on both PG and GO surface, and the α-helix structure of the protein fragment is partially broken on PG surface, but is well preserved on GO surface, while the secondary structure of globular protein has no distinct change on both PG and GO surface. In general, GO presents better biocompatibility than PG. Our results are of significant importance to understand the interactions between proteins and PG/GO and the applications of PG/GO in biotechnology and biomedicine. 相似文献
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锂离子电池由于具有高能量密度,高循环寿命,低自放电率的优势,成为当前使用最为广泛的储能器件。层状材料是极为常用的负极材料,其微观嵌锂行为的研究对提高电池的能量密度和循环寿命有重要意义。本工作发展了一种新的平板微电池结构,可用于研究锂离子在各类二维层状纳米材料中的嵌锂行为。我们用机械剥离的单片少层石墨烯为正极,热蒸镀的锂金属为负极,构成石墨烯电池,用恒电压放电的方法进行嵌锂测试。采用拉曼成像技术收集石墨烯G峰信号的空间分布,实现对锂的嵌入过程的显微观测。发现了锂在石墨烯中沿层间扩散迁移,以及石墨烯断层对锂扩散的阻碍作用。这些结果有助于理解放电时锂在石墨烯电极中扩散过程,并且这项研究开发的平板微电池结构可用于多种材料的电化学过程中的微观过程表征,同时可实现与光学、电学、电子显微学等多种表征手段的兼容,具有较好的应用前景。 相似文献
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罗丹明6G(Rhodamine 6G,R6G)是单分子表面增强拉曼光谱(SM-SERS)研究中最常用的探针分子之一,对R6G分子在表面吸附行为的研究有助于了解R6G分子和表面的相互作用. 本文应用电化学和电化学表面增强拉曼光谱技术,研究不同电位下R6G的银电极表面的吸附行为. 结果表明,随着电位负移罗丹明6G在银表面上从垂直吸附转为倾斜吸附,该变化和碱性条件下吸附于金纳米粒子上R6G的吸附构象一致. 这说明,在部分单分子实验中所发现的R6G反常光谱其来源是单个R6G分子在表面吸附取向变化. 本研究对后续详细分析SM-SERS研究中单分子SERS谱峰变化的机制有一定的参考价值. 相似文献
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Saulius Martusevi?ius Gediminas Niaura Zita Talaikyté Valdemaras Razumas 《Vibrational Spectroscopy》1996,10(2):271-280
The adsorption of l-histidine on a copper electrode from H2O- and D2O-based solutions is studied by means of surface-enhanced Raman scattering (SERS) spectroscopy. Different adsorption states of histidine are observed depending upon pH, potential, and the presence of the SO2−4 and Cl− ions. In acidic solutions of pH 1.2 the imidazole ring of the adsorbed histidine remains protonated and is not involved in the chemical coordination with the surface. The SO2−4 and Cl− ions compete with histidine for the adsorption sites. In solutions of pH 3.1 three different adsorption states of histidine are observed depending on the potential. Histidine adsorbs with the protonated imidazole ring oriented mainly perpendicularly to the surface at potentials more positive than −0.2 V. Transformation of that adsorption state occurs at more negative potentials. As this takes place, histidine adsorbs through the α-NH2 group and the neutral imidazole ring. The Cl− ions cause the protonation and detachment of the α-NH2 group from the surface and the formation of the ion pair NH+3 … Cl− can be observed. In the neutral solution of pH 7.0 histidine adsorbs through the deprotonated nitrogen atom of the imidazole ring and the α-COO− group at E ≥ −0.2 V. However, this adsorption state is transformed into the adsorption state in which the α-NH2 group and/or neutral imidazole ring participate in the anchoring of histidine to the surface, once the potential becomes more negative. In alkaline solutions of pH 11.9 histidine is adsorbed on the copper surface through the neutral imidazole ring. 相似文献