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Complexation of Dextran and glucose with thiolate boronic acid capped on nanoparticle

机译:葡聚糖与硫醇硼酸覆盖在纳米粒子上的络合

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Tiopronin-monolayer protected silver nanoparticles (average diameter = 5 nm) were partially replaced by thiolate boronic acid via ligand exchange. The uncapped boronic acids could be coupled with both a polysaccharide (Dextran) and a monoaccharide (glucose). Boronic acids capped on the particle were coupled selectively only by Dextran. With the decrease of charge on particle surface at pH = 5, boronic acids capped on the particle could be coupled with glucose. The particles were observed to aggregate along the Dextran chain, resulting in an absorbance decrease of the transverse plasmon at 397 nm and simultaneous rising of longitudinal plasmon at 640 nm. The aggregation increased with the concentration of Dextran. Luminescence intensity of phenyl boronic acid was enhanced by an upward deviation from a line with the concentration of Dextran in solution but the decay time was decreased, principally by the aggregation of the metallic cores.
机译:通过配体交换部分通过硫醇酸酯硼酸部分替代Tiopronin-单层保护的银纳米颗粒(平均直径= 5nm)。未花纹的硼酸可以与多糖(葡聚糖)和单糖(葡萄糖)偶联。覆盖在颗粒上的硼酸仅通过葡聚糖选择性地偶联。随着PH = 5的颗粒表面上的电荷减少,覆盖在颗粒上的硼酸可以与葡萄糖偶联。观察颗粒沿葡聚糖链聚集,导致横向等离子体在397nm处的吸光度降低,并在640nm处同时上升纵向等离子体。聚集随着葡聚糖的浓度而增加。通过从溶液中的葡聚糖浓度的浓度向上偏差而增强了苯基硼酸的发光强度,但衰减时间的原则上衰减,主要是通过金属芯的聚集。

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