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Adsorption of Extracellular Polymeric Substances Derived from S. cerevisiae to Ceria Nanoparticles and the Effects on Their Colloidal Stability

机译:酿酒酵母来源的细胞外聚合物对二氧化铈纳米粒子的吸附及其胶体稳定性的影响

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In order to understand the adsorption preferences of extracellular polymeric substances (EPS) components derived from fungus Saccharomyces cerevisiae on sparingly soluble CeO 2 nanoparticles (CeNPs), the adsorption experiments of the EPS including organic matter with low molecular weight have been performed at pH 6.0 at room temperature (25 ± 1 °C). The subsequent effects of the coating on the dispersibility of CeNPs was systematically measured as a function of time and ionic strength ranging from 1 to 1000 mmol L ?1 . Among the EPS and other components, orthophosphate and saccharides preferentially adsorb onto CeNPs, and proteins are the only major N-compounds adsorbing onto the CeNP surfaces. Adsorption of orthophosphate resulted in a dramatic decrease in ζ potential to ?40 mV at pH > 5, whereas the EPS adsorption suppressed the deviation of ζ potential within a narrow range (?20–+20 mV) at pHs ranging from 3 to 11. Critical aggregation concentrations (CAC) of an electrolyte (NaCl), inorganic orthophosphate, and EPS solutions are 0.01, 0.14, and 0.25 mol L ?1 , respectively, indicating that the EPS adsorption suppresses aggregation of CeNPs by the electrostatic repulsive forces derived from the adsorbed orthophosphate and the steric barrier formed by organic matter on the nanoparticle surfaces. Therefore, the EPS derived from fungus S. cerevisiae can potentially enhance colloidal dispersibility of CeNPs at circumneutral pH.
机译:为了了解源自酿酒酵母的胞外聚合物(EPS)组分在微溶CeO 2纳米颗粒(CeNPs)上的吸附偏好,已在pH 6.0的条件下进行了包括低分子量有机物在内的EPS吸附实验。室温(25±1°C)。系统地测量了涂层对CeNPs分散性的后续影响,该影响是时间和离子强度的函数,范围为1至1000 mmol L?1。在EPS和其他成分中,正磷酸盐和糖类优先吸附到CeNPs上,蛋白质是唯一吸附在CeNP表面的主要N化合物。在pH> 5时,正磷酸盐的吸附导致ζ电势急剧下降至?40 mV,而在pH范围为3至11的情况下,EPS吸附抑制了ζ电势在窄范围内(?20– + 20 mV)的偏离。电解液(NaCl),无机正磷酸盐和EPS溶液的临界聚集浓度(CAC)分别为0.01、0.14和0.25 mol L?1,这表明EPS吸附通过源自于电极的静电排斥力抑制了CeNPs的聚集。吸附的正磷酸盐和有机物在纳米颗粒表面形成的空间位阻。因此,在环境pH值下,源自酿酒酵母的EPS可以潜在地增强CeNPs的胶体分散性。

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