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Number of items: 5.

Li, J., Baxani Kamal, Divesh, Jamieson, W. D., Xu, W., Rocha, V. G., Barrow, D. A. and Castell, O. K. 2019. Formation of polarised, functional artificial cells from compartmentalised droplet networks and nanomaterials, using one-step, dual-material 3D-printed microfluidics. Advanced Science , 1901719. 10.1002/advs.201901719
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Baxani Kamal, Divesh 2017. Hydrogel encapsulated droplet interface bilayer networks as a chassis for artificial cells and a platform for membrane studies. PhD Thesis, Cardiff University.
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Baxani Kamal, Divesh, Morgan, A. J., Li, J., Barrow, D. A. and Castell, Oliver 2017. The microfluidic manufacture of encapsulated droplet interface bilayers using a hybrid 3D-printed coaxial device. Presented at: 20th International Conference on Miniaturized Systems for Chemistry and Life Sciences (MicroTAS 2016), Dublin, Ireland, 9-13 October 2016. Proceedings of the 20th International Conference on Miniaturized Systems for Chemistry and Life Sciences (MicroTAS 2016). Red Hook, New York: Curran Associates, Inc.,

Li, J., Baxani Kamal, Divesh, Castell, Oliver and Barrow, David 2017. Formation of chemically responsive multisomes using droplet microfluidics. Presented at: 20th International Conference on Miniaturized Systems for Chemistry and Life Sciences (MicroTAS 2016), Dublin, Ireland, 9-13 October 2016. Proceedings of the 20th International Conference on Miniaturized Systems for Chemistry and Life Sciences (MicroTAS 2016). Red Hook, NY: Curran Associates, Inc.,

Baxani Kamal, Divesh, Morgan, Alexander, Jamieson, William, Allender, Christopher, Barrow, David and Castell, Oliver 2016. Bilayer networks within a hydrogel shell: A robust chassis for artificial cells and a platform for membrane studies. Angewandte Chemie - International Edition 55 (46) , pp. 14240-14245. 10.1002/anie.201607571
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This list was generated on Sat Dec 14 05:55:13 2019 GMT.