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1.
孙艺梦  于泓 《色谱》2013,31(10):969-973
建立了快速分析无紫外吸收的N-甲基,丙基吗啉阳离子的离子对色谱-间接紫外检测法。采用反相C18硅胶整体柱,以背景紫外吸收试剂-离子对试剂-有机溶剂为流动相。研究了背景紫外吸收试剂、检测波长、离子对试剂、有机溶剂、柱温、流速对吗啉阳离子测定的影响。最佳色谱条件为:(0.5 mmol/L对氨基苯酚盐酸盐-0.1 mmol/L庚烷磺酸钠)溶液-甲醇(9:1, v/v)为流动相,检测波长230 nm,柱温30 ℃,流速1.0 mL/min。在此条件下,N-甲基,丙基吗啉阳离子的保留时间为2.966 min,检出限为0.07 mg/L(S/N=3),峰面积的相对标准偏差为2.1%(n=5),保留时间的相对标准偏差为0.02%(n=5)。将此方法用于分析实验室合成的N-甲基,丙基吗啉离子液体,加标回收率为98.8%。结果表明本方法简便、快速。  相似文献   

2.
安莹  于泓  邹春苗 《分析化学》2013,(7):1057-1062
建立了快速分析无紫外光吸收的吡咯烷离子液体阳离子的离子对色谱-间接紫外检测法。采用反相硅胶整体柱,以(背景紫外吸收试剂-离子对试剂)水溶液-有机溶剂为流动相,分别讨论了背景紫外吸收试剂、检测波长、离子对试剂、有机溶剂、柱温及流速对分离测定吡咯烷阳离子的影响。最佳色谱条件为:以80%(V/V)(0.5 mmol/L对氨基苯酚盐酸盐-0.1 mmol/L庚烷磺酸钠)水溶液-20%(V/V)甲醇为流动相,检测波长230 nm,柱温30℃,流速2.0 mL/min。在此条件下,N-甲基,乙基吡咯烷阳离子、N-甲基,丙基吡咯烷阳离子和N-甲基,丁基吡咯烷阳离子在1.6 min之内基线分离,检出限(S/N=3)分别为0.02,0.03和0.07 mg/L,相对标准偏差(n=5)小于0.4%。将此方法用于分析实验室合成的离子液体样品,加标回收率在97.4%~98.0%之间。本方法快速、简单、准确、可靠,具有良好的实用性。  相似文献   

3.
建立了以咪唑离子液体为流动相的液相色谱-间接紫外检测分析N-甲基,丙基吗啉阳离子的方法。用反相硅胶整体柱,以咪唑离子液体-离子对试剂水溶液/有机溶剂为流动相测定吗啉阳离子。咪唑离子液体为背景紫外吸收试剂。研究了咪唑离子液体、检测波长、离子对试剂、有机溶剂、柱温、流速对测定吗啉阳离子的影响,探讨了保留规律。以0.5 mmol·L-11-乙基-3-甲基咪唑四氟硼酸盐-0.1 mmol·L-1庚烷磺酸钠水溶液/甲醇(85∶15,v/v)为流动相,检测波长210 nm,柱温30℃,流速1.0 m L·min-1,N-甲基,丙基吗啉阳离子的保留时间为2.397 min,检出限(S/N=3)为0.02 mg·L-1,峰面积的相对标准偏差(n=5)为1.1%,保留时间的相对标准偏差(n=5)为0.03%。将此方法用于分析实验室合成的N-甲基,丙基吗啉离子液体,加标回收率为100.5%。本方法简便、快捷,可满足N-甲基,丙基吗啉离子液体阳离子的定量分析要求。  相似文献   

4.
以咪唑离子液体作为流动相添加剂,建立了哌啶离子液体阳离子的整体柱离子对色谱-间接紫外检测分析方法。系统研究了流动相、流速等因素对哌啶阳离子分离测定的影响情况。流动相中的咪唑离子液体不仅起到了背景紫外吸收剂的作用,还改善了阳离子的分离效果。用0.5mmol/L 1-乙基-3-甲基咪唑四氟硼酸盐-0.1mmol/L庚烷磺酸盐水溶液(pH=4.5)/甲醇(90/10,V/V)作为流动相,流速3.0mL/min,检测波长210nm,N-甲基-N-乙基、N-甲基-N-丙基和N-甲基-N-丁基哌啶阳离子在3.0min之内实现基线分离。3种哌啶阳离子的检出限分别为0.13、0.34和0.42mg/L。该方法测定实验室合成的哌啶离子液体样品的加标回收率范围为94%~98%。  相似文献   

5.
离子色谱-直接电导检测法分析哌啶离子液体阳离子   总被引:1,自引:0,他引:1  
张仁庆  于泓  刘玉珍 《色谱》2012,30(7):728-732
建立了离子色谱-直接电导检测法分析N-甲基,乙基哌啶([MEPi]+)、N-甲基,丙基哌啶([MPPi]+)和N-甲基,丁基哌啶([MBPi]+) 3种哌啶离子液体阳离子的方法。采用磺酸型阳离子交换色谱柱,以乙二胺-柠檬酸-乙腈为流动相。考察了流动相组成及色谱柱温度对哌啶阳离子保留的影响,并讨论了保留规律。结果表明,哌啶阳离子的保留是一个放热过程,即哌啶阳离子的保留时间随着色谱柱温度的升高而缩短,且哌啶阳离子同系物的保留符合碳数规律。在以0.2 mmol/L乙二胺-0.3 mmol/L柠檬酸-3%(v/v)乙腈(pH 4.4)为流动相、流速1.0 mL/min、柱温30 ℃条件下,[MEPi]+、[MPPi]+和[MBPi]+3种哌啶阳离子可以在7 min内分离,检出限(信噪比为3)分别为0.14、0.20和0.56 mg/L,峰面积的相对标准偏差(n=5)在1.2%以下。将此方法应用于分析实验室合成的哌啶离子液体样品,加标回收率在97.6%与105.1%之间。本方法准确、可靠、快速,具有较好的实用性。  相似文献   

6.
建立了用紫外检测的反相离子对色谱梯度淋洗同时分离测定4种吡啶离子液体阳离子和5种咪唑离子液体阳离子的方法。实验采用ZORBAX Eclipse XDB-C18反相色谱柱,以离子对试剂水溶液(用柠檬酸调节pH值)+乙腈为流动相,考察了离子对试剂种类和浓度、乙腈浓度和色谱柱温度对保留的影响,探讨了相关保留规律,确定最佳色谱条件为:流速1.0 mL/min、柱温30℃,以1.0 mmol/L庚烷磺酸钠水溶液(pH 4.0)-乙腈为淋洗液进行梯度洗脱。在此条件下,4种吡啶阳离子和5种咪唑阳离子在15 min内达到基线分离。检出限(S/N=3)为0.31~0.54 mg/L,峰面积的相对标准偏差为0.10%~0.75%。将该方法用于实验室合成的离子液体样品分析,加标回收率为94%~98%。该方法准确、可靠,具有较好的实用性。  相似文献   

7.
建立了用离子色谱-紫外检测法分离测定3种吡啶离子液体阳离子(N-乙基吡啶、N-丁基吡啶和N-丁基四甲基吡啶)的方法。采用磺酸型阳离子交换柱,以乙二胺-柠檬酸-乙腈为流动相,考察了流动相和色谱柱温度对离子保留的影响,探讨了保留规律。实验发现,吡啶阳离子的保留过程是放热过程。优化的色谱条件为:流动相是0.2 mmol//L乙二胺-0.3 mmol//L柠檬酸-0.5%(v/v)乙腈(pH 4.2),流速1.0 mL/min,柱温30℃。在此条件下可以基线分离3种吡啶阳离子。所测阳离子的检出限(S/N=3)分别为0.01、0.01、0.02 mg/L,峰面积的相对标准偏差(n=5)小于0.8%。将此方法应用于分析实验室合成的吡啶离子液体样品,加标回收率在96.3%~103.7%之间。本方法准确、可靠、快速,具有较好的实用性。  相似文献   

8.
发展了用吡啶离子液体作为流动相添加剂的反相液相色谱分离和间接紫外检测三氟乙酸根和三氟甲磺酸根的分析方法。研究了吡啶离子液体、咪唑离子液体、对氨基苯酚盐酸盐和氯化四丁基铵作为流动相添加剂对三氟乙酸根和三氟甲磺酸根的影响,考察了吡啶离子液体的浓度、有机溶剂和检测波长等因素,并讨论了离子液体的作用、保留规律和相关机理。吡啶离子液体在分离检测中起到离子对试剂和紫外吸收试剂的作用。采用反相C_(18)色谱柱,以甲醇-0.3 mmol/L溴化N-己基吡啶水溶液(体积比10∶90)为流动相,在柱温30℃,流速1.0 m L/min,紫外检测波长250 nm条件下,三氟乙酸根和三氟甲磺酸根在12 min内完全分离,检出限分别为0.09、0.18 mg/L。将此法应用于离子液体中三氟乙酸根和三氟甲磺酸根阴离子的测定,加标回收率为96.0%~101%。该方法简单、准确,具有实用价值。  相似文献   

9.
建立了以咪唑离子液体为背景紫外吸收试剂间接检测无紫外光吸收的烷基磺酸盐的高效液相色谱法。该方法采用反相C18色谱柱,以咪唑离子液体-有机溶剂为流动相,实现了2种烷基磺酸盐的分离和检测。研究了检测波长、有机溶剂和咪唑离子液体种类、浓度、pH值等因素对分离和测定的影响,探讨了保留规律,优化了色谱条件。结果表明,在柱温30℃,流速1.0 mL/min,检测波长210 nm,以0.7 mmol/L 1-乙基-3-甲基咪唑四氟硼酸盐水溶液(2 mmol/L磷酸二氢钠-磷酸调至pH 3.0)-甲醇(55∶45)作为流动相,戊烷磺酸钠和庚烷磺酸钠可在10 min内完全分离,线性范围分别为0.8~200 mg/L和2.5~200 mg/L,线性系数均达到0.999以上,检出限分别为0.24,0.75 mg/L。将方法应用于环境水样的测定,加标回收率为98.3%~99.1%,相对标准偏差小于1.5%。该方法准确、可靠,可以满足定量分析的要求。  相似文献   

10.
建立了用离子交换色谱分离-紫外检测法测定N-乙基吡啶、N-丁基吡啶和N-丁基四甲基吡啶3种吡啶离子液体阳离子的方法。采用磺酸型阳离子交换柱,以乙二胺-柠檬酸-乙腈为流动相,研究了流动相和色谱柱温度对离子保留行为的影响和规律。实验发现,吡啶阳离子的保留过程是放热过程。优化后的色谱条件:流动相为乙二胺(0.2 mmol//L)-柠檬酸(0.3 mmol//L)-乙腈(0.5%,v/v,pH=4.2),流动相流速为1.0mL/min,色谱柱为Shim-pack IC-C1阳离子交换柱,色谱柱温度为30℃。在此条件下3种吡啶阳离子可以达到基线分离。所测阳离子的检出限(S/N=3)分别为0.01、0.01、0.02mg/L,峰面积的相对标准偏差(n=5)小于0.8%。紫外检测法测定化学实验室合成的吡啶离子液体样品,样品加标后测得的加标回收率在96.3%~104%。方法准确、可靠、快速,具有较好的实用价值。  相似文献   

11.
A method was developed for the determination of tetraethyl ammonium (TEA) by reversed-phase ionpair chromatography with indirect ultraviolet detection. Chromatographic separation was achieved on a reversed-phase C18 column using background ultraviolet absorbing reagent - ion-pair reagent - organic solvent as mobile phase. The effects of the background ultraviolet absorbing reagents, detection wavelength, ion-pair reagents, organic solvents and column temperature on the determination method were investigated and the retention rules discussed. Results found that TEA could be successfully analyzed by using 0.7 μmol/L 4-aminophenol hydrochloride and 0.15 μmol/L 1-heptanesulfonic acid sodium mixed with 20% (v/v) methanol asmobile phase at a UV detection wavelength of 230 nm. Under these conditions, the retention time of tetraethyl ammonium was 2.85 min. The detection limit (S/N = 3) for TEA was 0.06 mg/L. The relative standard deviations (n = 5) for peak area and retention time were 0.35% and 0.02%, respectively. The method has been successfully applied to the determination of synthesized tetraethyl ammonium bromide. Recovery of tetraethyl ammonium after spiking was 99.1%.  相似文献   

12.
A novel analytical method was developed for determining morpholinium cations lacking ultraviolet absorption groups.This determination was carried out by high performance liquid chromatographyindirect ultraviolet(HPLC-1UV) detection using imidazolium ionic liquid as background absorption reagents,and imidazolium ionic liquid aq.soln.-organic solvent as mobile phase by a reversed-phase C18 column.The background ultraviolet absorption reagents,imidazolium ionic liquids and organic solvents were investigated.The imidazolium ionic liquid in the mobile phase is not only the background ultraviolet absorption reagent for IUV,but also an active component to improve the separation of morpholinium cations.It was found that morpholinium cations could be adequately determined when0.5 mmol/L 1-ethyl-3-methylimidazolium tetrafluoroborate aq.soln./methanol(80:20,v/v) was used as mobile phase with an IUV detection wavelength of 210 nm.In this study,the baseline separation of Nmethyl,ethylmorpholinium cations(MEMo) and N-methyl.propylmorpholinium cations(MPMo) was successfully achieved in 8.5 min.The detection limits(S/N = 3) for MEMo and MPMo were 0.15 and0.29 mg/L,respectively.This simple and practical method has been successfully applied to the determination of two morpholinium ionic liquids synthesized by the chemistry laboratory.  相似文献   

13.
A method of ion-pair chromatography with direct conductivity detection was developed on a silicabased monolithic column for the fast and simultaneous determination of piperidinium and pyrrolidinium ionic liquid cations. The effects of the mobile phase, column temperature and flow rate on the retention of the cations were investigated. The retention rules were discussed. As an ion-pair reagent, sodium heptanesulfonate is more suitable than sodium pentanesulfonate for the separation and determination of piperidinium and pyrrolidinium cations. The increase of ion-pair reagent concentration led to the increased retention time of the cations. When acetonitrile content and mobile phase flow were increased, the retention time of the cations became shorter. The retention of piperidinium and pyrrolidinium cations is an exothermic process, and the retention of the cations conforms to the carbon number rule. The chromatographic analysis was performed using the Chromolith Speed ROD RP-18e column, 0.5 μmol/L sodium heptanesulfonate-5% acetonitrile as the mobile phase at a flow rate of 3.0 mL/min and column temperature of 30℃. Separation of N-methyl-N-ethyl piperidinium, N-methyl-N-propyl piperidinium, N-methyl-N-butyl piperidinium and N-methyl-N-ethyl pyrrolidinium, N-methyl-N-propyl pyrrolidinium, N-methyl-N-butyl pyrrolidinium cations were achieved within 10 min. The detection limits (S/N=3) were between 0.19 and 3.08 mg/L. Relative standard deviations (n=5) for peak areas were less than 1.2%. The method has been applied to the determination of piperidinium and pyrrolidinium cations in ionic liquid samples. The spiked recoveries of ionic liquid cations were between 96% and 111%. The method is accurate, reliable, rapid, and has a better practicability.  相似文献   

14.
邹春苗  张小东  于泓  关超  王淼煜 《色谱》2015,33(7):759-764
建立了整体柱离子对色谱-间接紫外检测和填充柱离子对色谱-间接紫外检测分析四乙基铵根离子的两种方法。用反相整体柱和反相填充柱,以咪唑离子液体-离子对试剂-有机溶剂为流动相,研究了背景紫外吸收试剂、检测波长、离子对试剂、有机溶剂、柱温和流速对测定四乙基铵根离子的影响,比较了两种色谱柱的差异,并讨论了保留规律。在优化的实验条件下,两种方法测定四乙基铵根离子的保留时间分别是2.40和3.02 min;检出限分别是0.04和0.07 mg/L;峰面积的相对标准偏差分别是0.16%和0.11%;保留时间的相对标准偏差分别是0.02%和0.01%。将这两种方法用于分析实验室合成的溴化四乙基铵离子液体,加标回收率分别为98.2%和99.1%。两种方法均能满足四乙基铵根离子测定的需要。  相似文献   

15.
A method for rapid and simultaneous determination of imidazolium and pyridinium ionic liquid cations by ion-pair chromatography with ultraviolet detection was developed.Chromatographic separations were performed on a reversed-phase silica-based monolithic column using 1-heptanesulfonic acid sodium-acetonitrile as mobile phase.The effects of ion-pair reagent and acetonitrile concentration on retention of the cations were investigated.The retention times of the cations accord with carbon number rule.The method has been successfully applied to the determination of four ionic liquids synthesized by organic chemistry laboratory.  相似文献   

16.
《中国化学会会志》2018,65(6):726-734
A method was developed for the separation and detection of morpholinium ionic liquid cations by hydrophilic interaction column combined with indirect ultraviolet detection using imidazolium ionic liquids as ultraviolet absorbents in high‐performance liquid chromatography. The effects of the ultraviolet absorbents, organic solvents, and the pH value of the aqueous solution in the mobile phase for the determination of morpholinium cations were investigated by using a hydrophilic column with carbamoyl group as the analytical column. The retention and detection behavior of morpholinium cations was discussed. The suitable chromatographic conditions were 0.8 mmol/L 1‐ethyl‐3‐methyl‐imidazolium tetrafluoroborate aqueous solution (pH 3.5 adjusted with acetic acid)/acetonitrile (45/55, v/v) as the mobile phase and a detection wavelength of 210 nm. Under these conditions, the baseline separation of N‐methyl‐N‐ethyl‐morpholinium cation ([MEMo]+) and N‐methyl‐N‐propyl‐morpholinium cation ([MPMo]+) was successfully achieved in 15 min. The detection limits of [MEMo]+ and [MPMo]+ were 0.595 and 0.531 mg/L, respectively. Relative standard deviations were less than 0.2%. This method has been successfully applied to the analysis of morpholinium ionic liquid samples synthesized in chemical laboratories, which is simple, reliable, and practical.  相似文献   

17.
赵丹  于泓 《分析测试学报》2017,36(1):112-116
研究了不同背景紫外吸收试剂对无紫外光吸收的烷基磺酸盐检测的影响。采用反相C18色谱柱的高效液相色谱-间接紫外检测法,以背景紫外吸收试剂-有机溶剂为流动相分离烷基磺酸盐。研究不同背景紫外吸收试剂对分离检测烷基磺酸盐的影响规律和分离机理。结果表明,不同类型的背景紫外吸收试剂测定烷基磺酸盐的色谱峰类型不同。阳离子型背景紫外吸收试剂测定烷基磺酸盐时,样品峰均为正峰;阴离子型和两性离子型背景紫外吸收试剂时,样品峰均为倒峰。比较不同的背景紫外吸收试剂,发现采用阳离子型紫外吸收试剂测定烷基磺酸盐的色谱峰更好,其中以咪唑离子液体最佳,检测响应值最高。  相似文献   

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