首页> 外文期刊>Journal of the American Chemical Society >Size-Controllable Synthesis of Uniform Spherical Covalent Organic Frameworks at Room Temperature for Highly Efficient and Selective Enrichment of Hydrophobic Peptides
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Size-Controllable Synthesis of Uniform Spherical Covalent Organic Frameworks at Room Temperature for Highly Efficient and Selective Enrichment of Hydrophobic Peptides

机译:在室温下尺寸可控的均匀球形共价有机骨架合成,可高效高效地富集疏水性肽

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摘要

Covalent organic frameworks (COFs) represent a new class of porous crystalline polymers with a diversity of applications. However, synthesis of uniform spherical COFs poses a great challenge. Here, we present size-controllable synthesis of uniform spherical COFs from nanometer to micrometer scale by a facile approach at room temperature. The as-prepared spherical COFs with different sizes exhibited ultrahigh surface area, good crystallinity, and chemical/thermal stability. Multifarious microscopic and spectroscopic techniques were performed to understand the formation mechanism and influencing factors of the spherical COFs. Moreover, the general applicability for room-temperature synthesis of the spherical COFs was demonstrated by varying different building blocks. Spherical COFs, because of the advantageous nature of their surface area, hydrophobicity, and mesoporous microenvironment, serve as an attractive restricted-access adsorption material for highly selective and efficient enrichment of hydrophobic peptides and size exclusion of macromolecular proteins simultaneously. On this basis, the spherical COFs were successfully applied to the specific capture of ultratrace C-peptide from human serum and urine samples. This research provides a new strategy for room-temperature controllable synthesis of uniform spherical COFs with different sizes and extends the application of COFs as an attractive sample-enrichment probe for clinical analysis.
机译:共价有机骨架(COF)代表了一类具有多种应用的新型多孔晶体聚合物。然而,均匀球形COF的合成提出了巨大的挑战。在这里,我们介绍了一种简便的方法,可在室温下控制纳米到微米级均匀球形COF的尺寸可控合成。所制备的具有不同尺寸的球形COF表现出超高的表面积,良好的结晶度以及化学/热稳定性。为了了解球形COFs的形成机理和影响因素,进行了多种显微镜和光谱技术的研究。而且,通过改变不同的结构单元证明了球形COF的室温合成的一般适用性。球形COF由于其表面积,疏水性和中孔微环境的有利性质,可作为一种吸引人的受限访问吸附材料,用于高度选择性和高效地富集疏水性肽,并同时排除大分子蛋白质。在此基础上,球形COF成功应用于从人血清和尿液样品中超痕量C肽的特异性捕获。这项研究为室温可控合成大小不同的均匀球形COF提供了新的策略,并扩展了COF作为有吸引力的临床分析样品富集探针的应用。

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