Ln-Mofs with In-Situ Exsolved Perovskite as Ratiometric Fluorescent Detection for H2o and Cu2+: Spacial Charge Transfer and Detection Mechanism

18 Pages Posted: 21 May 2024

See all articles by Chunwei Guo

Chunwei Guo

Shanghai Institute of Technology

Wen-Xuan Yang

Shanghai Institute of Technology

Jia-Rong Zhao

Shanghai Institute of Technology

Jing Guo

Shanghai Institute of Technology

Jian-Yong Zhang

Shanghai Institute of Technology

Jie Ren

Shanghai Institute of Technology

qinfei ke

Shanghai Institute of Technology

Na Zhang

Shanghai Institute of Technology

Yongzheng Fang

Shanghai Institute of Technology

Abstract

Herein, a ratiometric fluorescent sensor based on CPB⊆Pb/Eu-MOF heterojunction has been designed for rapid, sensitive and visual detection of H2O and Cu2+ in extraction solution. The energy transfer from Pb2+ to Eu3+ in Pb/Eu-MOF has enhanced the luminescent emission of Eu3+, and the CPB⊆Pb/Eu-MOF n-n heterojunction with S-scheme charge transfer can stabilize CPB to activate the detecting for H2O and Cu2+. In-situ XPS and XRD have confirmed the phase transformation from cubic CPB to CsPb2Br5 majorly contributes to color switch when being introduced by H2O. Moreover, the dynamic quenching and electron transfer are verified by the adsorption energy Br-Cu bonding according to DFT calculation and the shortened fluorescence lifetime. Typically, 0.2CPB⊆Pb/Eu-MOF composite exhibits a highly sensitive and selective ratiometric fluorescent sensing. The proper linear ranges from 10.8% - 23.1% and a low detection limit of 0.26% for H2O, while 20-180 μM, R2 = 0.996, and 8.09 μM for Cu2+. More importantly, the paper-based sheet sensor has been manufactured practically in the real floral teas and different solvents for the visual detection of H2O and Cu2+ by naked eyes.

Keywords: n-n heterojunction, Perovskite Nanocrystals, Ln-MOF, Ratio fluorescent sensor

Suggested Citation

Guo, Chunwei and Yang, Wen-Xuan and Zhao, Jia-Rong and Guo, Jing and Zhang, Jian-Yong and Ren, Jie and ke, qinfei and Zhang, Na and Fang, Yongzheng, Ln-Mofs with In-Situ Exsolved Perovskite as Ratiometric Fluorescent Detection for H2o and Cu2+: Spacial Charge Transfer and Detection Mechanism. Available at SSRN: https://ssrn.com/abstract=4835954 or http://dx.doi.org/10.2139/ssrn.4835954

Chunwei Guo

Shanghai Institute of Technology ( email )

China

Wen-Xuan Yang

Shanghai Institute of Technology ( email )

China

Jia-Rong Zhao

Shanghai Institute of Technology ( email )

China

Jing Guo

Shanghai Institute of Technology ( email )

China

Jian-Yong Zhang (Contact Author)

Shanghai Institute of Technology ( email )

China

Jie Ren

Shanghai Institute of Technology ( email )

China

Qinfei Ke

Shanghai Institute of Technology ( email )

China

Na Zhang

Shanghai Institute of Technology ( email )

China

Yongzheng Fang

Shanghai Institute of Technology ( email )

China

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