化学
纤维素
检出限
电极
纳米颗粒
对映体
分子
热稳定性
纳米晶
电化学
安培法
化学工程
热分解
组合化学
手性(物理)
重复性
分解
化学稳定性
溶剂
纳米技术
纳米尺度
纳米纤维
氧化纤维素
分子识别
八面体
有机化学
作者
Hang Su,Shuo Huang,Jingming Lan,Xin Gao,Hongyan Yue
标识
DOI:10.1021/acs.analchem.5c05828
摘要
Chiral recognition and detection of enantiomer molecules are crucial for biochemical sensing and pharmaceutical applications. In this study, a rod-shaped left-handed cellulose nanocrystal (CNC, length of ∼75 nm and diameter of ∼10 nm) is extracted from strobili fibers of plane trees through acid hydrolysis. Then, octahedral CuO/C nanoparticles (∼450 nm) are synthesized via thermal decomposition of the Cu-MOF precursor. Finally, CNC@CuO/C is prepared by the self-assembly of CNC and CuO/C driven by solvent evaporation. The CNC@CuO/C electrode demonstrates a remarkable enantioselectivity to l -cysteine ( l -Cys) and achieves a high sensitivity of 3.14 μA·mM –1 and a low detection limit (LOD) of 4.62 μM. The electrode exhibits an excellent anti-interference capability, reproducibility, repeatability (RSD < 5%), and stability (>90% after 15 days). This presents a sustainable approach to use renewable nanomaterials, and it also shows a promising potential for clinical diagnostics.
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