Abstract Fabrication of water-compatible superparamagnetic molecularly imprinted biopolymer for clean separation of baclofen from bio-fluid samples: A mild and green approach
首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Fabrication of water-compatible superparamagnetic molecularly imprinted biopolymer for clean separation of baclofen from bio-fluid samples: A mild and green approach
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Fabrication of water-compatible superparamagnetic molecularly imprinted biopolymer for clean separation of baclofen from bio-fluid samples: A mild and green approach

机译:水相容的超顺磁性分子印迹生物聚合物的制备用于从生物流体样品中清洁Baclofen的分离:温和和绿色的方法

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AbstractA superparamagnetic molecularly imprinted biopolymer (SMIBP) was utilized as an eco-friendly and worth welting bio-sorbent and subsequently was applied for selective dispersive solid phase extraction (d-SPE) and selective separation of baclofen from urine samples. This effective solid phase was biopolymer network with imprinted cavities grafted on the surface of Fe3O4cores possessing an influential SiO2layer. The present sorbent easily achieved via co-precipitation and sol-gel processes followed by impressive bio-polymerization route under green and mild reaction conditions. The prepared SMIBP was subsequently characterized by different techniques including SEM, VSM, FT-IR, XRD, TEM and TGA verifying high suitability of the proposed solid phase for trapping and accumulation of target compound. Under optimized conditions recommended by experimental design, understudy SMIBP-d-SPE procedure supplied linear response over 1.0–2500.0μgL?1with a satisfactory detection limit close to 0.26μgL?1, while repeatability assign to intra-day and inter-day precision as coefficients of variation was lower than 3.9% in both case. These appropriate validation imply high ability of proposed microextraction procedure for clean and effective enrichment of target analyte in complex human urine sample cause consequently leading to accurate analyses at ultra-trace levels.<
机译:<![cdata [ 抽象 超顺磁性分子印迹生物聚合物(SMIBP)用作生态友好的,值得欢萎的生物吸附剂,随后施用于选择性分散固相萃取(D-SPE)和尿液样品中巴克洛芬的选择性分离。这种有效的固相是生物聚合物网络,具有压印腔的嫁接在Fe 3 O 4 拥有有影响力的SIO 2 层。本发明的吸附剂通过共沉淀和溶胶 - 凝胶方法易于实现,然后在绿色和温和的反应条件下令人印象深刻的生物聚合途径。随后,制备的SMIBP通过不同的技术表征,包括SEM,VSM,FT-IR,XRD,TEM和TGA验证所提出的固相的高适用性,以捕获和积聚目标化合物。在通过实验设计建议的优化条件下,Spectry Smibp-D-SPE程序提供的线性响应超过1.0-2500.0μg1?1 ,令人满意的检测限接近0.26μg1 ?1 ,而在两种情况下,可重复性分配给日内的内部和日内的精确度低于3.9%。这些合适的验证意味着提出的微萃取方法的高能力,用于在复杂的人尿样中的靶分析物中的清洁和有效富集靶分析物,因此导致在超痕量水平上准确分析。 <

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