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Boronate affinity-mediated magnetic solid phase extraction and bioactivities of polysaccharides from beverage plants
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作者 Yuwen Ding Haiyang Li +6 位作者 Tao Liu yan Liu Minghan yan Liangjingjing Shan Xiaomeng Liu tingxuan yan Shuangshou Wang 《Beverage Plant Research》 2023年第1期116-127,共12页
Polysaccharides are of great significance in food production,but their isolation highly relies on multi-staged liquid-liquid extraction.In this study,a boronate affinity-mediated magnetic solid phase extraction(BA-MSP... Polysaccharides are of great significance in food production,but their isolation highly relies on multi-staged liquid-liquid extraction.In this study,a boronate affinity-mediated magnetic solid phase extraction(BA-MSPE)method was initiated for the effortless and efficient extraction of polysaccharides using boronic acid-grafted magnetic nanospheres(MNPs@B(OH)_(2))as extractants.MNPs@B(OH)_(2)showed fine class selectivity toward cis-diol containing compounds at weak alkaline condition(pH 7.5~8.5)and higher binding capacity than that of MNPs without boronic acid functionalization.Fast binding dynamics with a binding equilibrium within 10 min,stronger affinity toward polysaccharides(Kd as low as 10^(−3)~10^(−6)M level)than that of small molecular cis-diol compounds(Kd in the range of 10^(−1)~10^(−4)M level),and good recyclability(the binding capacity decreased less than 13%after ten times consecutive extraction)could also be observed for MNPs@B(OH)2.Finally,the BA-MSPE of polysaccharides was performed with three beverage plants as real samples,including tea leaves,soybeans,and Lycium barbarum.Antioxidant activity of polysaccharide extractives was verified by DPPH radical scavenging assays,giving a radical scavenging rate of 31.4%and 18.8%for crude extractives of TPS(tea polysaccharide)and LBPS(Lycium barbarum polysaccharide),respectively.Microscopic imaging combining with MTT and trypan blue staining trials uncovered that the extractives were of dosage-dependent antitumor bioactivities,giving the cell mortality rates over 91.8%and 77.2%for MCF-7 and A549 cells in the presence of 5.0 mg/mL TPS,and 56.6%and 40.0%with the equal dosage of LBPS,respectively.As the BA-MSPE strategy is simple and eco-friendly,there will be more potential for the application of cis-diol compound purification. 展开更多
关键词 BORON MAGNETIC initiated
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Mechanistic insights into the selective photocatalytic degradation of dyes over TiO_(2)/ZSM-11
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作者 Zhou Zhang Kai Huo +5 位作者 tingxuan yan Xuwen Liu Maocong Hu Zhenhua Yao Xuguang Liu Tao Ye 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2023年第8期127-136,共10页
Photocatalytic degradation is a promising way to eliminate dye contaminants.In this work,a series of TiO2/ZSM-11(TZ)nanocomposites were prepared using a facile solid state dispersion method.Methyl orange(MO),methylene... Photocatalytic degradation is a promising way to eliminate dye contaminants.In this work,a series of TiO2/ZSM-11(TZ)nanocomposites were prepared using a facile solid state dispersion method.Methyl orange(MO),methylene blue(MB),and rhodamine B(RhB)were intentionally chosen as target substrates in the photocatalytic degradation reactions.Compared to pristine TiO2,negative effect was observed on MO degradation while promoted kinetics were collected on MB and RhB over TZ composites.Moreover,a much higher photocatalytic rate was interestingly achieved on RhB than MB,which indicated that a new factor has to be included other than the widely accepted electrostatic interaction mechanism to fully understand the selective photodegradation reactions.Systematic characterizations showed that TiO2 and ZSM-11 physically mixed and maintained both the whole framework and local structure without chemical interaction.The different trends observed in surface area and the photo-absorption ability of TZ composites with reaction performance further excluded both as the promotion mechanism.Instead,adsorption energies predicted by molecular dynamics simulations suggested that differences in the adsorption strength played a critical role.This work provided a deep mechanistic understanding of the selective photocatalytic degradation of dyes reactions,which helps to rationally design highly efficient photocatalysts. 展开更多
关键词 Selective dye degradation Photocatalysis TiO2 ZSM-11 CHEMISORPTION
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