My group at the School of Chemical and Materials Science, IIT Goa, is looking for Ph.D. students. Interested candidates in working on biopolymers, organic small molecules synthesis, polymer synthesis, soft materials projects can reach out to me via email: [email protected]
Transient transition from Stable to Dissipative Assemblies in Response to the Spatiotemporal Availability of a Chemical Fuel (Leonard J. Prins and co-workers) @leonard_prins @kar_hari@iamKDchem@RuiChen_chem @DISC_UniPD #AngewandteVIP#openaccess https://t.co/2Rq2gAXseU
📣2x PhD positions availible as part of MSCA doctoral network https://t.co/legXJ6JQEj for nanocarrier RNA delivery! (with visits and training across EU).
- DC5, Polymeric lipid formulations (@AlexCook222)
https://t.co/AIf1Pjz02l
- DC8, Active nanoparticle delivery
RT appreciated:
My lab is recruiting several Ph.D.s and Postdocs excited to build synthetic cells that undergo Darwinian evolution.
The backgrounds that we need for include biochemistry, synthetic biology, and systems chemistry.
Details: https://t.co/wnL58oCjol
The size control works because, in our active droplets, influx of droplet materials scales with the droplet's surface area. In contrast, the droplet material efflux scales with volume.
That's why there is only one stable droplet size—small droplets shrink, and large ones grow.
Our work on a biophysical assay development at Boxer Lab is out in Analytical Chemistry:
https://t.co/flMwO8lQFI
Here we developed a cell-free method to measure viral infectivity and the efficiency of endosomal escape of viral contents.
@Stanford@StanfordCIGH@ACSPublications
Do you use hydrogels to generate chemical gradients? Beware of density-driven flows!
A Cautionary Perspective on Hydrogel-Induced Concentration Gradient Generation for Studying Chemotaxis | ACS Applied Materials & Interfaces https://t.co/LIVckVnvMR
Local #SelfAssembly of Dissipative Structures Sustained by Substrate Diffusion (Leonard J. Prins and co-workers) @leonard_prins @kar_hari@discunipd https://t.co/fyGsYUtOrl
Finally ending the day, @leonard_prins shows how the concepts introduced together with @giuliosflask have lead to design and operation of out of equilibrium systems. Inspiring stuff!
A Minimalistic Covalent Bond-Forming Chemical Reaction Cycle that Consumes Adenosine Diphosphate (Leonard J. Prins and co-workers) @leonard_prins @RealTommyMarch@benjamino_acid @DiSC_UniPD https://t.co/1JUffS56fr