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author:

Dai, Hong (Dai, Hong.) [1] | Zhang, Shupei (Zhang, Shupei.) [2] | Xu, Guifang (Xu, Guifang.) [3] | Peng, Yiru (Peng, Yiru.) [4] | Gong, Lingshan (Gong, Lingshan.) [5] | Li, Xiuhua (Li, Xiuhua.) [6] | Li, Yilin (Li, Yilin.) [7] | Lin, Yanyu (Lin, Yanyu.) [8] | Chen, Guonan (Chen, Guonan.) [9]

Indexed by:

EI

Abstract:

A heterojunction with excellent photocatalytic performance based on graphene-like carbon nitride (g-C3N4) nanosheets and dendritic zinc(ii) phthalocyanine was proposed. Herein, the g-C3N4 with excellent photo-activity and high nitrogen content was readily available as a functional material. The g-C3N4 acted as an electron pair donor for dendritic zinc(ii) phthalocyanine through axial coordination, forming the p-n heterojunction. Then by taking advantage of the distortion of dendritic zinc(ii) phthalocyanine, the spatial charge separation of photo-generated charge carriers in this metal macrocycle achieved high efficiency, resulting in the enhanced photo-to-electric conversion efficiency. Therefore, the optoelectronic sensing device based on the heterojunction led to an enhanced photocurrent, and made it a promising candidate for establishing photoelectrochemical biosensors. Moreover, the p-n heterojunction was successfully applied to the detection of choline with a wide linear range from 10 nM to 5 μM, which could be oxidized by the photo-generated holes. Along with these attractive features, the as-proposed biosensor also displayed a remarkable specificity against other interferents and could be successfully used for detecting choline in real samples. The heterojunction with enhanced photoelectronic properties provides a promising format for the future development of photoelectrochemical biosensors. © The Royal Society of Chemistry 2014.

Keyword:

Biosensors Carbon nitride Efficiency Electrochemistry Functional materials Heterojunctions Image enhancement Nanosheets Zinc compounds

Community:

  • [ 1 ] [Dai, Hong]College of Chemistry and Chemical Engineering, Fujian Normal University, Fuzhou, Fujian; 350108, China
  • [ 2 ] [Zhang, Shupei]College of Chemistry and Chemical Engineering, Fujian Normal University, Fuzhou, Fujian; 350108, China
  • [ 3 ] [Xu, Guifang]College of Chemistry and Chemical Engineering, Fujian Normal University, Fuzhou, Fujian; 350108, China
  • [ 4 ] [Peng, Yiru]College of Chemistry and Chemical Engineering, Fujian Normal University, Fuzhou, Fujian; 350108, China
  • [ 5 ] [Gong, Lingshan]College of Chemistry and Chemical Engineering, Fujian Normal University, Fuzhou, Fujian; 350108, China
  • [ 6 ] [Li, Xiuhua]College of Chemistry and Chemical Engineering, Fujian Normal University, Fuzhou, Fujian; 350108, China
  • [ 7 ] [Li, Yilin]College of Chemistry and Chemical Engineering, Fujian Normal University, Fuzhou, Fujian; 350108, China
  • [ 8 ] [Lin, Yanyu]College of Chemistry and Chemical Engineering, Fujian Normal University, Fuzhou, Fujian; 350108, China
  • [ 9 ] [Lin, Yanyu]Department of Chemistry, MOE Key Laboratory, Fuzhou University, Fuzhou, Fujian; 350002, China
  • [ 10 ] [Chen, Guonan]Department of Chemistry, MOE Key Laboratory, Fuzhou University, Fuzhou, Fujian; 350002, China

Reprint 's Address:

  • [dai, hong]college of chemistry and chemical engineering, fujian normal university, fuzhou, fujian; 350108, china

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Source :

RSC Advances

Year: 2014

Issue: 102

Volume: 4

Page: 58226-58230

3 . 8 4

JCR@2014

3 . 9 0 0

JCR@2023

ESI HC Threshold:268

JCR Journal Grade:1

CAS Journal Grade:3

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count: 45

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 0

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