High Electron Affinity as a Determinant of Oxidizing Strength in Layered Birnessite
Main Article Content
Abstract
Article Details
Section
How to Cite
References
1. X. Sun, K. Meng, W. Wang, and Q. Wang, "Drone assisted freight transport in highway logistics coordinated scheduling and route planning," In 2025 4th International Symposium on Computer Applications and Information Technology (ISCAIT), March, 2025, pp. 1254-1257. doi: 10.1109/iscait64916.2025.11010302
2. K. Xu, Y. Lu, S. Hou, K. Liu, Y. Du, M. Huang, and X. Sun, "Detecting anomalous anatomic regions in spatial transcriptomics with STANDS," Nature Communications, vol. 15, no. 1, p. 8223, 2024. doi: 10.1038/s41467-024-52445-9
3. A. H. Abdelmohsen, S. A. El‐khodary, N. Ismail, Z. Song, and J. Lian, "Basics and advances of manganese‐based cathode materials for aqueous zinc‐ion batteries," Chemistry-A European Journal, vol. 31, no. 4, p. e202403425, 2025.
4. Q. Li, R. Pokharel, L. Zhou, M. Pasturel, and K. Hanna, "Coupled effects of Mn (II), pH and anionic ligands on the reactivity of nanostructured birnessite," Environmental Science: Nano, vol. 7, no. 12, pp. 4022-4031, 2020.
5. F. Chen, S. Li, H. Liang, P. Xu, and L. Yue, "Optimization study of thermal management of domestic SiC power semiconductor based on improved genetic algorithm," 2025. doi: 10.20944/preprints202505.2288.v1
6. M. M. Najafpour, G. Renger, M. Hołynska, A. N. Moghaddam, E. M. Aro, R. Carpentier, and S. I. Allakhverdiev, "Manganese compounds as water-oxidizing catalysts: From the natural water-oxidizing complex to nanosized manganese oxide structures," Chemical Reviews, vol. 116, no. 5, pp. 2886-2936, 2016.
7. H. Peng, N. Dong, Y. Liao, Y. Tang, and X. Hu, "Real-time turbidity monitoring using machine learning and environmental parameter integration for scalable water quality management," Journal of Theory and Practice in Engineering and Technology, vol. 1, no. 4, pp. 29-36, 2024. doi: 10.22541/essoar.175674608.88310773/v1
8. J. W. Ondersma, and T. W. Hamann, "Conduction band energy determination by variable temperature spectroelectrochemistry," Energy & Environmental Science, vol. 5, no. 11, pp. 9476-9480, 2012.
9. K. Xu, X. Xu, H. Wu, and R. Sun, "Venturi aeration systems design and performance evaluation in high density aquaculture," 2024. doi: 10.53469/wjimt.2024.07(06).16
10. M. F. Fink, M. Weiss, R. Marschall, and C. Roth, "Experimental correlation of Mn 3+ cation defects and electrocatalytic activity of α-MnO 2-an X-ray photoelectron spectroscopy study," Journal of Materials Chemistry A, vol. 10, no. 29, pp. 15811-15838, 2022.
11. C. Wang, N. Smieszek, and V. Chakrapani, "Unusually high electron affinity enables the high oxidizing power of layered birnessite," Chemistry of Materials, vol. 33, no. 19, pp. 7805-7817, 2021. doi: 10.1021/acs.chemmater.1c02234
12. S. Roy, and S. Roy, "Metal oxides for the oxygen evolution reaction: Tailoring electronic properties through structural modifications," Dalton Transactions, vol. 54, no. 34, pp. 12737-12748, 2025. doi: 10.1039/d5dt01174d
13. B. Wang, G. E. N. G. Linna, and V. W. Tam, "Effective carbon responsibility allocation in construction supply chain under the carbon trading policy," Energy, vol. 319, p. 135059, 2025.
14. M. Gómez, M. D. Murcia, E. Gómez, S. Ortega, A. Sánchez, O. Thaikovskaya, and N. Briantceva, "Modelling and experimental checking of the influence of substrate concentration on the first order kinetic constant in photo-processes," Journal of Environmental Management, vol. 183, pp. 818-825, 2016.
15. S. Sun, Y. Zhang, X. Shi, W. Sun, C. Felser, W. Li, and G. Li, "From charge to spin: An in‐depth exploration of electron transfer in energy electrocatalysis," Advanced Materials, vol. 36, no. 37, p. 2312524, 2024. doi: 10.1002/adma.202312524
16. J. Y. Park, L. R. Baker, and G. A. Somorjai, "Role of hot electrons and metal-oxide interfaces in surface chemistry and catalytic reactions," Chemical Reviews, vol. 115, no. 8, pp. 2781-2817, 2015. doi: 10.1021/cr400311p
17. W. Sun, “Integration of Market-Oriented Development Models and Marketing Strategies in Real Estate,” European Journal of Business, Economics & Management, vol. 1, no. 3, pp. 45–52, 2025
18. C. Spöri, J. T. H. Kwan, A. Bonakdarpour, D. P. Wilkinson, and P. Strasser, "The stability challenges of oxygen evolving catalysts: Towards a common fundamental understanding and mitigation of catalyst degradation," Angewandte Chemie International Edition, vol. 56, no. 22, pp. 5994-6021, 2017. doi: 10.1002/anie.201608601
19. S. Yuan, “Data Flow Mechanisms and Model Applications in Intelligent Business Operation Platforms”, Financial Economics Insights, vol. 2, no. 1, pp. 144–151, 2025, doi: 10.70088/m66tbm53.
20. K. Xu, X. Xu, H. Wu, R. Sun, and Y. Hong, "Ozonation and filtration system for sustainable treatment of aquaculture wastewater in Taizhou City," Innovations in Applied Engineering and Technology, pp. 1-7, 2023.
21. G. Wang, “Performance evaluation and optimization of photovoltaic systems in urban environments,” Int. J. New Dev. Eng. Soc., vol. 9, pp. 42–49, 2025, doi: 10.25236/IJNDES.2025.090106.
22. Y. He, S. Liu, C. Priest, Q. Shi, and G. Wu, "Atomically dispersed metal-nitrogen-carbon catalysts for fuel cells: Advances in catalyst design, electrode performance, and durability improvement," Chemical Society Reviews, vol. 49, no. 11, pp. 3484-3524, 2020. doi: 10.1039/c9cs00903e