Generation and characterization of air micro-bubbles in highly hydrophobic capillaries.
Apparent charge
Electrophoretic mobility
Micro-bubbles generation
Superhydrophobic coatings
Journal
Electrophoresis
ISSN: 1522-2683
Titre abrégé: Electrophoresis
Pays: Germany
ID NLM: 8204476
Informations de publication
Date de publication:
03 2022
03 2022
Historique:
revised:
07
08
2021
received:
09
06
2021
accepted:
04
10
2021
pubmed:
10
11
2021
medline:
12
4
2022
entrez:
9
11
2021
Statut:
ppublish
Résumé
The generation of air microbubbles in microfluidic systems or in capillaries could be of great interest for transportation (single cell analysis, organite transportation) or for liquid compartmentation. The physicochemical characterization of air bubbles and a better understanding of the process leading to bubble generation during electrophoresis is also interesting in a theoretical point of view. In this work, the generation of microbubbles on hydrophobic Glaco™ coated capillaries has been studied in water-based electrolyte. Air bubbles were generated at the detection window and the required experimental parameters for microbubbles generation have been identified. Generated bubbles migrated against the electroosmotic flow, as would do strongly negatively charged solutes, under constant electric field. They have been characterized in terms of dimensions, electrophoretic mobility, and apparent charge.
Identifiants
pubmed: 34752637
doi: 10.1002/elps.202100171
doi:
Substances chimiques
Water
059QF0KO0R
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
767-775Informations de copyright
© 2021 Wiley-VCH GmbH.
Références
Hettiarachchi K., Talu E., Longo M. L., Dayton P. A., Lee A. P., Lab Chip 2007, 7, 463-468.
Tian, J., Yang, F., Cui, H., Zhou, Y., Ruan, X., Gu, N., ACS Appl. Mater. Interfaces 2015, 7, 26579-26584.
Yin, T., Wang, P., Zheng, R., Zheng, B., Cheng, D., Zhang, X., Shuai, X., Int. J. Nanomed. 2012, 7, 895-904.
Wang, Y., Li, X., Zhou, Y., Huang, P., Xu, Y., Int. J. Pharm. 2010, 384, 148-153.
Misra, S.K., Ghoshal, G., Gartia, M.R., Wu, Z., De, A.K., Ye, M., Bromfield, C.R., Williams, E.M., Singh, K., Tangella, K.V., Rund, L., Schulten, K., Schook, L.B., Ray, P.S., Burdette, E.C., Pan, D., ACS Nano 2015, 9, 10695-10718.
Meng, M., Gao, J., Wu, C., Zhou, X., Zang, X., Lin, X., Liu, H., Wang, C., Su, H., Liu, K., Wang, Y., Xue, X., Wu, J., Tumor Biol. 2016, 37, 8673-8680.
Agarwal, A., Ng, W.J., Liu, Y., Chemosphere 2011, 84, 1175-1180.
Zhu, J., An, H., Alheshibri, M., Liu, L., Terpstra, P.M.J., Liu, G., Craig, V.S.J., Langmuir 2016, 32, 11203-11211.
Ushida, A., Hasegawa, T., Takahashi, N., Nakajima, T., Murao, S., Narumi, T., Uchiyama, H., J. Surfactants Deterg. 2012, 15, 695-702.
Calgaroto, S., Wilberg, K.Q., Rubio, J., Miner. Eng. 2014, 60, 33-40.
Fan, M., Tao, D., Honaker, R., Luo, Z., Min. Sci. Technol. 2010, 20, 159-177.
Sobhy, A., Tao, D., Int. J. Miner. Process. 2013, 124, 109-116.
Kawara, F., Inoue, J., Takenaka, M., Hoshi, N., Masuda, A., Nishiumi, S., Kutsumi, H., Azuma, T., Ohdaira, T., Digestion 2014, 90, 10-17.
Liu, S., Oshita, S., Makino, Y., Wang, Q., Kawagoe, Y., Uchida, T., ACS Sustainable Chem. Eng. 2016, 4, 1347-1353.
Liu, S., Kawagoe, Y., Makino, Y., Oshita, S., Chem. Eng. Sci. 2013, 93, 250-256.
Matsuki, N., Ishikawa, T., Ichiba, S., Shiba, N., Ujike, Y., Yamaguchi, T., Int. J. Nanomed. 2014, 9, 4495-4505.
Ferrara, K.W., Borden, M.A., Zhang, H., Acc. Chem. Res. 2009, 42, 881-892.
Nirmalkar, N., Pacek, A.W., Barigou, M., Langmuir 2018, 34, 10964-10973.
Najafi, A.S., Drelich, J., Yeung, A., Xu, Z., Masliyah, J., J. Colloid Interface Sci. 2007, 308, 344-350.
Okada, K., Akagi, Y., J. Chem. Eng. Japan 1987, 20, 11-15.
Kubota, K., Hayashi, S., Inaoka, M., J. Colloid Interface Sci. 1983, 95, 362-369.
Lou, S.-T., Ouyang, Z.-Q., Zhang, Y., Li, X.-J., Hu, J., Li, M.-Q., Yang, F.-J., J. Vac. Sci. Technol. B Microelectron. Nanom. Struct. 2000, 18, 2573-2575.
Guo, W., Shan, H., Guan, M., Gao, L., Liu, M., Dong, Y., Surf. Sci. 2012, 606, 1462-1466.
Bouwhuis, W., Van Der Veen, R.C.A., Tran, T., Keij, D.L., Winkels, K.G., Peters, I.R., Van Der Meer, D., Sun, C., Snoeijer, J.H., Lohse, D., Phys. Rev. Lett. 2012, 109, 2-5.
Choi, M., Na, Y., Kim, S., Electrophoresis 2015, 36, 2896-2901.
Meng, L., Cai, F., Zhang, Z., Niu, L., Jin, Q., Yan, F., Wu, J., Wang, Z., Zheng, H., Biomicrofluidics 2011, 5, 044104.
Berthod, A., Rodriguez, M.A., Girod, M., Armstrong, D.W., J. Sep. Sci. 2002, 25, 988-995.
Baroud, C.N., Gallaire, F., Dangla, R., Lab Chip 2010, 10, 2032-2045.
Baygentst, J.C., Saville, D.A., J. Chem. Soc., Faraday Trans. 1991, 87, 1883-1898.
Leroy, P., Jougnot, D., Revil, A., Lassin, A., Azaroual, M., J. Colloid Interface Sci. 2012, 388, 243-256.
Graciaa, A., Morel, G., Saulner, P., Lachaise, J., Schechter, R.S., J. Colloid Interface Sci. 1995, 172, 131-136.
Jia, W., Ren, S., Hu, B., Int. J. Electrochem. Sci. 2013, 8, 5828-5837.
McTaggart, H.A., Philos. Mag. 1922, 44, 386-395.
Beattie, J.K., Djerdjev, A.M., Warr, G.G., Faraday Discuss. 2009, 141, 31-39.
Vacha, R., Rick, S.W., Jungwirth, P., De Beer, A.G.F., De Aguiar, H.B., Samson, J., Roke, S., J. Am. Chem. Soc. 2011, 133, 10204-10210.
Renard, C., Leclercq, L., Stocco, A., Cottet, H., J. Chromatogr. A 2019, 1603, 361-370.
Quéré, D., Annu. Rev. Fluid Mech. 1999, 31, 347-384.
Bhushan, B., Pan, Y., Daniels, S., J. Colloid Interface Sci. 2013, 392, 105-116.