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Component reconstitution-driven photoelectrochemical sensor for sensitive detection of Cu2+ based on advanced CuS/CdS p-n junction 被引量:1

Component reconstitution-driven photoelectrochemical sensor for sensitive detection of Cu2+ based on advanced CuS/CdS p-n junction
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摘要 The rational design of robust photoactive material and artful sensing strategy are vital for the construction of an ultrasensitive photoelectrochemical(PEC) sensor. Although great progress has been made in PEC sensing, the resultant detection performances and adoptable sensing strategies are still limited. Herein, through the design of a subtle component reconstitution strategy, an ultrasensitive PEC sensor is developed for the detection of Cu2+ based on advanced Cu S/Cd S nanohybrids(NHs).This proposed sensor shows superior sensing performances with a low detection limit of 0.1 n M and a wide detection range from0.2 n M to 60 μM due to the formation of p-n junction between Cu S and Cd S and the component transformation of Cd S to CuxS(x=1,2). Moreover, such PEC sensor also displays goodish results for monitoring the Cu2+released from apoptotic He La cells in vitro. This idea of component reconstitution provides a new paradigm for the design of advanced PEC sensors. The rational design of robust photoactive material and artful sensing strategy are vital for the construction of an ultrasensitive photoelectrochemical(PEC)sensor.Although great progress has been made in PEC sensing,the resultant detection performances and adoptable sensing strategies are still limited.Herein,through the design of a subtle component reconstitution strategy,an ultrasensitive PEC sensor is developed for the detection of Cu2+based on advanced CuS/CdS nanohybrids(NHs).This proposed sensor shows superior sensing performances with a low detection limit of 0.1 nM and a wide detection range from 0.2 nM to 60 pM due to the formation of p-n junction between CuS and CdS and the component transformation of CdS to CuxS(x=1,2).Moreover,such PEC sensor also displays goodish results for monitoring the Cu^2+released from apoptotic HeLa cells in vitro.This idea of component reconstitution provides a new paradigm for the design of advanced PEC sensors.
出处 《Science China Chemistry》 SCIE EI CAS CSCD 2019年第12期1725-1731,共7页 中国科学(化学英文版)
基金 supported by the National Natural Science Foundation of China (21625502) Priority Academic Program Development and Postgraduate Research & Practice Innovation Program of Jiangsu Province (KYCX18,1188)
关键词 component reconstitution PHOTOELECTROCHEMICAL p-n junction CuS/CdS hybrids CU^2+ component reconstitution photoelectrochemical p-n junction CuS/CdS hybrids Cu2+
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