Preparation of DNA nanoflower-modified capillary silica monoliths for chiral separation
Author:
Funder
National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s00604-024-06663-z.pdf
Reference48 articles.
1. Hefnawy M, El-Gendy M, Al-Salem H, Marenga H, El-Azab A, Abdel-Aziz A, Gamal AE, Alanazi M, Obaidullah A, Al-Hossaini A, Hefnawy A (2023) Trends in monoliths: packings, stationary phases and nanoparticles. J Chromatogr A 1691:463819
2. Wong XY, Sena-Torralba A, Álvarez-Diduk RÁ, Muthoosamy K, Merkoci A (2020) Nanomaterials for nanotheranostics: tuning their properties according to disease needs. ACS Nano 14:2585–2627
3. Bilal M, Asgher M, Shah SZH, Iqbal HMN (2019) Engineering enzyme-coupled hybrid nanoflowers: the quest for optimum performance to meet biocatalytic challenges and opportunities. Int J Biol Macromol 135:677–690
4. Zhao B, Liang J, Zou X, Zhang B, Zhang Y, Niu L (2023) Crystallization regulation engineering in the carbon nitride nanoflower for strong and stable electrochemiluminescence. ACS Appl Mater Interfaces 15:16723–16731
5. Perwez M, Lau SY, Hussain D, Anboo S, Arshad M, Thakur P (2023) Nanozymes and nanoflower: physiochemical properties, mechanism and biomedical applications. Colloid Surface B 225:113241
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