光谱学与光谱分析
光譜學與光譜分析
광보학여광보분석
SPECTROSCOPY AND SPECTRAL ANALYSIS
2015年
5期
1276-1280
,共5页
袁荣辉%刘文涵%滕渊洁%聂晶%马苏珍
袁榮輝%劉文涵%滕淵潔%聶晶%馬囌珍
원영휘%류문함%등연길%섭정%마소진
Fe3O4/Ag%磁性复合材料%表面增强拉曼光谱%丙线磷
Fe3O4/Ag%磁性複閤材料%錶麵增彊拉曼光譜%丙線燐
Fe3O4/Ag%자성복합재료%표면증강랍만광보%병선린
Fe3 O4/Ag%Magnetic composite materials%SERS%Ethoprophos
以共沉淀法合成Fe3 O4纳米颗粒,再通过柠檬酸三钠还原 AgNO3制备 Fe3 O4/Ag磁性复合材料。Fe3 O4/A g能够与溶液中的丙线磷形成吸附,通过磁性收集达到萃取富集的效果。测定吸附于Fe3 O4/A g表面的痕量丙线磷所产生的表面增强拉曼光谱(SERS),其检测过程的拉曼增强因子为1.48×105,极大地提高了检测灵敏度,建立了磁性Fe3 O4/Ag萃取富集与SERS分析农药丙线磷的方法。采用紫外可见吸收光谱、能谱及透射电子显微镜对制备的材料进行了分析及形貌与结构的表征。并对丙线磷模型分子进行结构优化的密度泛函理论计算,得到了理论拉曼光谱和谱峰归属,以用于丙线磷的判断。结果表明,SERS峰强在富集15 min后基本趋于稳定,其丙线磷浓度低至2×10-8 mol?L -1仍有明显响应,可以满足丙线磷农残检测的要求。其方法可推广至含硫有机磷农药残留的分析。
以共沉澱法閤成Fe3 O4納米顆粒,再通過檸檬痠三鈉還原 AgNO3製備 Fe3 O4/Ag磁性複閤材料。Fe3 O4/A g能夠與溶液中的丙線燐形成吸附,通過磁性收集達到萃取富集的效果。測定吸附于Fe3 O4/A g錶麵的痕量丙線燐所產生的錶麵增彊拉曼光譜(SERS),其檢測過程的拉曼增彊因子為1.48×105,極大地提高瞭檢測靈敏度,建立瞭磁性Fe3 O4/Ag萃取富集與SERS分析農藥丙線燐的方法。採用紫外可見吸收光譜、能譜及透射電子顯微鏡對製備的材料進行瞭分析及形貌與結構的錶徵。併對丙線燐模型分子進行結構優化的密度汎函理論計算,得到瞭理論拉曼光譜和譜峰歸屬,以用于丙線燐的判斷。結果錶明,SERS峰彊在富集15 min後基本趨于穩定,其丙線燐濃度低至2×10-8 mol?L -1仍有明顯響應,可以滿足丙線燐農殘檢測的要求。其方法可推廣至含硫有機燐農藥殘留的分析。
이공침정법합성Fe3 O4납미과립,재통과저몽산삼납환원 AgNO3제비 Fe3 O4/Ag자성복합재료。Fe3 O4/A g능구여용액중적병선린형성흡부,통과자성수집체도췌취부집적효과。측정흡부우Fe3 O4/A g표면적흔량병선린소산생적표면증강랍만광보(SERS),기검측과정적랍만증강인자위1.48×105,겁대지제고료검측령민도,건립료자성Fe3 O4/Ag췌취부집여SERS분석농약병선린적방법。채용자외가견흡수광보、능보급투사전자현미경대제비적재료진행료분석급형모여결구적표정。병대병선린모형분자진행결구우화적밀도범함이론계산,득도료이론랍만광보화보봉귀속,이용우병선린적판단。결과표명,SERS봉강재부집15 min후기본추우은정,기병선린농도저지2×10-8 mol?L -1잉유명현향응,가이만족병선린농잔검측적요구。기방법가추엄지함류유궤린농약잔류적분석。
The magnetic Fe3 O4/Ag composite materials were synthesized by reducing AgNO3 with sodium citrate in the presence of Fe3 O4 which were prepared by co-precipitation firstly .The enrichment and extraction of ethoprophos assembled on Fe3 O4/Ag were achieved with the applied magnetic field .The different concentrations of ethoprophos adsorbed on Fe3 O4/Ag were analyzed by SERS and it was showed that the trace analysis of ethoprophos had been established ,while the enhancement factor of probe molecules on Fe3O4/Ag was 1.48 × 105 .The structure and morphology of Fe3O4/Ag were characterized by UV-Vis ,EDX and TEM .Compared with Ag ,the UV-Vis absorption peak of Fe3O4/Ag shifted from 417 to 369 nm ,and the UV-Vis of Fe3O4 al-most had no characteristic absorption peak in this region .At the same time ,it was showed that the surface properties of Fe3 O4/Ag changed with Raman enhancement effect during the aggregation process of Ag around the surface of Fe3 O4 .Further EDX im-ages of micro area element analysis suggested that the chemical composition of products were Ag ,Fe and O while the Cu peak was from the copper mesh .In addition ,TEM images indicated that the average particle size of Fe3 O4 was between 30 and 60 nm with shape tended to be spherical .And the silver nanoparticles were attached to the Fe3 O4 particles and agglomeration occured . Density functional theory calculations which can be applied to qualitative judgment of molecule was carried out to obtain the mo-lecular optimization structure and theoretical Raman spectra .It was found that the stabilized SERS signals were detected under the saturated adsorption equilibrium after 15 min .Finally ,Raman response of ethoprophos was achieved with lower than 2 × 10-8 mol?L -1 ,indicatint that the established method had reached the requirements of ethoprophos residues detection and could be used for analysis of sulfur-containing organophosphorus pesticide .