References

1. H.-C. Zhou, J.R. Long and O.M. Yaghi 2012 Introduction to metal–organic frameworks

Chemical Reviews 112 673–674.

2. Y.-R. Lee, J. Kim and W.-S. Ahn 2013 Synthesis of metal-organic frameworks: A mini review

Korean Journal of Chemical Engineering 30 1667–1680.

3. A.J. Bandodkar, I. Jeerapan and J. Wang 2016 Wearable chemical sensors: Present challenges

and future prospects ACS Sensors 1 464–482.

4. L. Liu, Y. Zhou, S. Liu and M. Xu 2018 The applications of metal−organic frameworks in

electrochemical sensors ChemElectroChem 5 6–19.

5. J. Li, J. Xia, F. Zhang, Z. Wang and Q. Liu 2018 An electrochemical sensor based on copper-

based metal-organic frameworks-graphene composites for determination of dihydrox­

ybenzene isomers in water Talanta 181 80–86.

6. X. Fang, X. Chen, Y. Liu, Q. Li, Z. Zeng, T. Maiyalagan and S. Mao 2019 Nanocomposites of

Zr(IV)-based metal–organic frameworks and reduced graphene oxide for electrochemically

sensing ciprofloxacin in water ACS Applied Nano Materials 2 2367–2376.

7. Y. Chen, W. Huang, K. Chen, T. Zhang, Y. Wang and J. Wang 2019 A novel electrochemical

sensor based on core-shell-structured metal-organic frameworks: the outstanding analytical

performance towards chlorogenic acid Talanta 196 85–91.

8. Q. Zhao, S-H Li, R-L Chai, X. Ren and C. Zhang 2020 Two-dimensional conductive metal–

organic frameworks based on truxene ACS Applied Materials & Interfaces 12 7504–7509.

9. L.-L. Gao and E.-Q. Gao 2021 Metal–organic frameworks for electrochemical sensors of

neurotransmitters Coordination Chemistry Reviews 434 213784.

10. Y. Li, W. Ye, Y. Cui, B. Li, Y. Yang and G. Qian 2020 A metal-organic frameworks@ carbon

nanotubes based electrochemical sensor for highly sensitive and selective determination of

ascorbic acid Journal of Molecular Structure 1209 127986.

11. L. Wang, H. Yang, J. He, Y. Zhang, J. Yu and Y. Song 2016 Cu-hemin metal-organic-

frameworks/chitosan-reduced graphene oxide nanocomposites with peroxidase-like bioac­

tivity for electrochemical sensing Electrochimica Acta 213 691–697.

12. D. Duan, H. Yang, Y. Ding, D. Ye, L. Li and G. Ma 2018 Three-dimensional molecularly

imprinted electrochemical sensor based on Au NPs@ Ti-based metal-organic frameworks for

ultra-trace detection of bovine serum albumin Electrochimica Acta 261 160–166.

13. P. Ling, J. Lei, L. Zhang and H. Ju 2015 Porphyrin-encapsulated metal–organic frameworks

as mimetic catalysts for electrochemical DNA sensing via allosteric switch of hairpin DNA

Analytical Chemistry 87 3957–3963.

14. K. Kang, B. Wang, X. Ji, Y. Liu, W. Zhao, Y. Du, Z. Guo and J. Ren 2021 Hemin-doped

metal–organic frameworks based nanozyme electrochemical sensor with high stability and

sensitivity for dopamine detection RSC Advances 11 2446–2452.

15. G. Gumilar, Y.V. Kaneti, J. Henzie, S. Chatterjee, J. Na, B. Yuliarto, N. Nugraha, A. Patah, A.

Bhaumik and Y. Yamauchi 2020 General synthesis of hierarchical sheet/plate-like M-BDC (M

= Cu, Mn, Ni, and Zr) metal–organic frameworks for electrochemical non-enzymatic glucose

sensing Chemical Science 11 3644–3655.

16. Y. Wang, Y. Hu, Q. He, J. Yan, H. Xiong, N. Wen, S. Cai, D. Peng, Y. Liu, Z. Liu and

Bioelectronics 2020 Metal-organic frameworks for virus detection Biosensors and Bioelectronics

169 112604.

17. G. Rong, Y. Zheng and M. Sawan 2021 Energy solutions for wearable sensors: A review

Sensors (Basel) 21 3806.

18. G. Pankratova, P. Bollella, D. Pankratov and L. Gorton 2022 Supercapacitive biofuel cells

Current Opinion in Biotechnology 73 179–187.

19. Z.L. Wang and J. Song 2006 Piezoelectric nanogenerators based on zinc oxide nanowire

arrays Science 312 242–246.

Advancements in MOFs Based Nanogenerators

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