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Poly(m-Phenylenediamine) Nanospheres and Nanorods: Selective Synthesis and Their Application for Multiplex Nucleic Acid Detection

机译:聚(间苯二胺)纳米球和纳米棒:选择性合成及其在多重核酸检测中的应用

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摘要

In this paper, we demonstrate for the first time that poly(m-phenylenediamine) (PMPD) nanospheres and nanorods can be selectively synthesized via chemical oxidation polymerization of m-phenylenediamine (MPD) monomers using ammonium persulfate (APS) as an oxidant at room temperature. It suggests that the pH value plays a critical role in controlling the the morphology of the nanostructures and fast polymerization rate favors the anisotropic growth of PMPD under homogeneous nucleation condition. We further demonstrate that such PMPD nanostructures can be used as an effective fluorescent sensing platform for multiplex nucleic acid detection. A detection limit as low as 50 pM and a high selectivity down to single-base mismatch could be achieved. The fluorescence quenching is attributed to photoinduced electron transfer from nitrogen atom in PMPD to excited fluorophore. Most importantly, the successful use of this sensing platform in human blood serum system is also demonstrated.
机译:在本文中,我们首次证明了在室内使用过硫酸铵(APS)作为氧化剂,通过间苯二胺(MPD)单体的化学氧化聚合反应,可以选择性地合成聚间苯二胺(PMPD)纳米球和纳米棒。温度。这表明pH值在控制纳米结构的形貌中起着至关重要的作用,并且快速聚合速率有利于在均相成核条件下PMPD的各向异性生长。我们进一步证明,这种PMPD纳米结构可以用作多重核酸检测的有效荧光传感平台。可以实现低至50 pM的检测限和低至单碱基失配的高选择性。荧光猝灭归因于光诱导的电子从PMPD中的氮原子转移到激发的荧光团。最重要的是,还证明了该传感平台在人血清系统中的成功使用。

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