Size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(I) pyrazolate complex
Column gravity chromatography suffered from several drawbacks such as time-consuming and need a large amount of eluents. Herein we reported an efficient technique for effective separation of amphiphilic trinuclear gold(I) pyrazolate complex ([Au 3 Pz 3 ] C10TEG ) with high polarity based on size-exc...
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my.utm.848602020-02-29T13:48:54Z http://eprints.utm.my/id/eprint/84860/ Size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(I) pyrazolate complex Jalani, Mohamad Azani Leny Yuliati, Leny Yuliati Lee, Siew Ling Lintang, Hendrik Oktendy QC Physics Column gravity chromatography suffered from several drawbacks such as time-consuming and need a large amount of eluents. Herein we reported an efficient technique for effective separation of amphiphilic trinuclear gold(I) pyrazolate complex ([Au 3 Pz 3 ] C10TEG ) with high polarity based on size-exclusion principle of chromatographic technique. Based on the size-exclusion limit, [Au 3 Pz 3 ] C10TEG having a larger size with molecular weight of 4011.39 Da (4030.40 Da when added Na + ) was successfully eluted and collected firstly from its impurities after being recycled for 2 times. In the chromatogram for first cycle, an intense peak upon excitation at 220 nm for [Au 3 Pz 3 ] C10TEG was observed at retention time of 58 mins, while small peaks due to the presence of impurities was observed in the range between 73 to 85 mins. In the second cycle, the impurities were flushed away before [Au 3 Pz 3 ] C10TEG was successfully collected at retention time of 170 mins in the third cycle. The columns were a set of polystyrene/divinylbenzene (PS/DVB) JAIGEL-1H and -2.5H connected in series having exclusion limit of 1 X 10 3 and 2 X 10 4 in which chloroform was used as the eluent at flow rate of 3.5 mL min -1. As a result, the visual appearance of dark-yellowish [Au 3 Pz 3 ] C10TEG was successfully purified to give pale-yellowish product. Moreover, differential scanning calorimetry thermogram showed that extra shoulder from impurities at 6.13 °C in the first endothermic peak of [Au 3 Pz 3 ] C10TEG at 0.76 °C was completely removed. Hence, it can be concluded that size-exclusion chromatography can be used as an effective purification method with much more convenience and small consumption of solvents. Penerbit UTM Press 2018 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/84860/1/LeeSiewLing2018_Size-ExclusionLiquidChromatography.pdf Jalani, Mohamad Azani and Leny Yuliati, Leny Yuliati and Lee, Siew Ling and Lintang, Hendrik Oktendy (2018) Size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(I) pyrazolate complex. Malaysian Journal of Fundamental and Applied Sciences, 14 . pp. 133-137. ISSN 2289-5981 (In Press) http://dx.doi.org/10.11113/mjfas.v14n1-2.953 |
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QC Physics Jalani, Mohamad Azani Leny Yuliati, Leny Yuliati Lee, Siew Ling Lintang, Hendrik Oktendy Size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(I) pyrazolate complex |
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Column gravity chromatography suffered from several drawbacks such as time-consuming and need a large amount of eluents. Herein we reported an efficient technique for effective separation of amphiphilic trinuclear gold(I) pyrazolate complex ([Au 3 Pz 3 ] C10TEG ) with high polarity based on size-exclusion principle of chromatographic technique. Based on the size-exclusion limit, [Au 3 Pz 3 ] C10TEG having a larger size with molecular weight of 4011.39 Da (4030.40 Da when added Na + ) was successfully eluted and collected firstly from its impurities after being recycled for 2 times. In the chromatogram for first cycle, an intense peak upon excitation at 220 nm for [Au 3 Pz 3 ] C10TEG was observed at retention time of 58 mins, while small peaks due to the presence of impurities was observed in the range between 73 to 85 mins. In the second cycle, the impurities were flushed away before [Au 3 Pz 3 ] C10TEG was successfully collected at retention time of 170 mins in the third cycle. The columns were a set of polystyrene/divinylbenzene (PS/DVB) JAIGEL-1H and -2.5H connected in series having exclusion limit of 1 X 10 3 and 2 X 10 4 in which chloroform was used as the eluent at flow rate of 3.5 mL min -1. As a result, the visual appearance of dark-yellowish [Au 3 Pz 3 ] C10TEG was successfully purified to give pale-yellowish product. Moreover, differential scanning calorimetry thermogram showed that extra shoulder from impurities at 6.13 °C in the first endothermic peak of [Au 3 Pz 3 ] C10TEG at 0.76 °C was completely removed. Hence, it can be concluded that size-exclusion chromatography can be used as an effective purification method with much more convenience and small consumption of solvents. |
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Article |
author |
Jalani, Mohamad Azani Leny Yuliati, Leny Yuliati Lee, Siew Ling Lintang, Hendrik Oktendy |
author_facet |
Jalani, Mohamad Azani Leny Yuliati, Leny Yuliati Lee, Siew Ling Lintang, Hendrik Oktendy |
author_sort |
Jalani, Mohamad Azani |
title |
Size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(I) pyrazolate complex |
title_short |
Size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(I) pyrazolate complex |
title_full |
Size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(I) pyrazolate complex |
title_fullStr |
Size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(I) pyrazolate complex |
title_full_unstemmed |
Size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(I) pyrazolate complex |
title_sort |
size-exclusion liquid chromatography for effective purification of amphiphilic trinuclear gold(i) pyrazolate complex |
publisher |
Penerbit UTM Press |
publishDate |
2018 |
url |
http://eprints.utm.my/id/eprint/84860/1/LeeSiewLing2018_Size-ExclusionLiquidChromatography.pdf http://eprints.utm.my/id/eprint/84860/ http://dx.doi.org/10.11113/mjfas.v14n1-2.953 |
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