Growth of Robust Carbon Nitride Films by Double Crystallization with Exceptionally Boosted Electrochemiluminescence for Visual DNA Detection

Author:

Hou Yuhua1,Fang Yanfeng1,Zhou Zhixin1,Hong Qing1,Li Wang1,Yang Hong1,Wu Kaiqing1,Xu Yuan1,Cao Xuwen1,Han Dan1,Liu Songqin1,Shen Yanfei2,Zhang Yuanjian1ORCID

Affiliation:

1. Jiangsu Engineering Laboratory of Smart Carbon‐Rich Materials and Device Jiangsu Province Hi‐Tech Key Laboratory for Bio‐Medical Research State Key Laboratory of Bioelectronics School of Chemistry and Chemical Engineering Southeast University Nanjing 211189 China

2. Medical School Southeast University Nanjing 210009 China

Abstract

AbstractElectrochemically generated chemiluminescence (ECL) has attracted significant interest over the past decades, ranging from fundamental studies on highly efficient electron‐to‐photon interconversion to practical bioassays. Nonetheless, the ECL efficiency (ΦECL) of most emitters is low, which significantly hampers further development. Herein, this work reports a highly robust carbon nitride film with unusually enhanced ECL efficiency (2256 times higher than that of the reference Ru(bpy)3Cl2/K2S2O8). Double crystallization, which provides the primary interaction of carbon nitride with the substrate and subsequent growth, plays a crucial role in the preparation. The improved ECL efficiency is ascribed to little pinholes suppressing futile co‐reagent reduction, maintenance of more orbit‐delocalized heptazine subunits improving ECL kinetics, and high transparency avoiding self‐absorption. As a potential application, an ultrasensitive visual DNA biosensor by the naked eye is further successfully developed with a linear detection range of 100 pmto 1 µmand limit of detection of 27 pm(S/N = 3).

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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