Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Evangelio, A.
Campo-Cortés, F.
and
Gordillo, J. M.
2016.
Simple and double microemulsions via the capillary breakup of highly stretched liquid jets.
Journal of Fluid Mechanics,
Vol. 804,
Issue. ,
p.
550.
Campo-Cortés, Francisco
Riboux, Guillaume
and
Gordillo, José Manuel
2016.
The effect of contact line pinning favors the mass production of monodisperse microbubbles.
Microfluidics and Nanofluidics,
Vol. 20,
Issue. 1,
Zhu, Pingan
and
Wang, Liqiu
2017.
Passive and active droplet generation with microfluidics: a review.
Lab on a Chip,
Vol. 17,
Issue. 1,
p.
34.
Quintero, Enrique S.
Evangelio, A.
and
Gordillo, J. M.
2018.
Production of monodisperse microbubbles avoiding microfluidics.
Journal of Fluid Mechanics,
Vol. 846,
Issue. ,
He, Kunyun
Campo-Cortés, Francisco
Goral, Martyna
López-León, Teresa
and
Gordillo, José Manuel
2019.
Micron-sized double emulsions and nematic shells generated via tip streaming.
Physical Review Fluids,
Vol. 4,
Issue. 12,
Liu, Zhaomiao
Wang, Ju
Pang, Yan
Zhou, Qiang
and
Li, Mengqi
2020.
Role of periodic inner dripping on compound jets in a capillary device.
International Journal of Multiphase Flow,
Vol. 123,
Issue. ,
p.
103180.
Azadi, Reza
Wong, Jaime
and
Nobes, David. S.
2020.
Experimental and analytical investigation of meso-scale slug bubble dynamics in a square capillary channel.
Physics of Fluids,
Vol. 32,
Issue. 8,
Montanero, J M
and
Gañán-Calvo, A M
2020.
Dripping, jetting and tip streaming.
Reports on Progress in Physics,
Vol. 83,
Issue. 9,
p.
097001.
Han, Yu
Xu, Xiaofei
Liu, Fengxia
Wei, Wei
and
Liu, Zhijun
2020.
Study of the theory of microbubble bursting to obtain bio-inspired alginate nanoparticles.
Colloids and Surfaces A: Physicochemical and Engineering Aspects,
Vol. 591,
Issue. ,
p.
124494.
Sánchez Quintero, Enrique
and
Gordillo, Jose M.
2020.
Method of mass production of monodisperse microbubbles aided by intense pressure gradients.
AIChE Journal,
Vol. 66,
Issue. 10,
Wang, Xinyan
Shuai, Yun
Yang, Yao
Huang, Zhengliang
Jiang, Binbo
Wang, Jingdai
and
Yang, Yongrong
2022.
Bubble Formation in a Swirl-Venturi Microbubble Generator.
Industrial & Engineering Chemistry Research,
López, M.
Cabezas, M.G.
Montanero, J.M.
and
Herrada, M.A.
2022.
On the hydrodynamic focusing for producing microemulsions via tip streaming.
Journal of Fluid Mechanics,
Vol. 934,
Issue. ,
Cleve, Sarah
Lassus, Anne
Diddens, Christian
van Elburg, Benjamin
Gaud, Emmanuel
Cherkaoui, Samir
Versluis, Michel
Segers, Tim
and
Lajoinie, Guillaume
2023.
Microbubble formation by flow focusing: role of gas and liquid properties, and channel geometry.
Journal of Fluid Mechanics,
Vol. 972,
Issue. ,
Yang, Bo
Jafarian, Mehdi
Freidoonimehr, Navid
and
Arjomandi, Maziar
2023.
Controlled Bubble Formation From a Microelectrode Single Bubble Generator.
Journal of Fluids Engineering,
Vol. 145,
Issue. 11,
Han, Yu
2023.
Bubble formation by shearing-to-squeezing transition in a T-junction.
Journal of Physics: Conference Series,
Vol. 2441,
Issue. 1,
p.
012068.
Montanero, José María
2024.
Tip Streaming of Simple and Complex Fluids.
Vol. 137,
Issue. ,
p.
125.
Montanero, José María
2024.
Tip Streaming of Simple and Complex Fluids.
Vol. 137,
Issue. ,
p.
201.