Dr.Tyukodi Botond gets featured in phys.org for their work on exploiting symmetry principles to reduce the cost for high fidelity assembly ! Check it out :
lnkd.in/g6VQm4PD #SelfAssembly #BrandeisMRSEC
⭐️Featured⭐️: [Pub PRX Dec2024] : Dr. Anthony Trubiano presents a Markov State Model approach to doing long duration simulations to make more accurate predictions of assembly thermodynamics while addressing kinetics. Check it out : doi.org/10.1103/Phys... #MultiMSM #SelfAssembly #BrandeisMRSEC
🚨 Publication🚨: ACS Nano: @laynefrechette.bsky.social
and @n4rens.bsky.social use Langevin dynamics simulations to demonstrate how self-assembly of empty #ViralCapsidAssembly is modulated by liquid compartments formed by #PhaseSeparation. Check it out: pubs.acs.org/doi/10.1021/... #BrandeisMRSEC
Thank you to MRSEC member Annemarie Winters for her science outreach pizza talk at our local Waltham High School. She presented her research journey spanning soft matter physics, material science and tissue biophysics! #BrandeisMRSEC #Waltham
Applications are now open for Brandeis MRSEC's Introduction to Microfluidics Technology from June 9-13, 2025! This course will introduce you to the microfabrication technologies used to build microfluidic devices. Sign up here www.brandeis.edu/mrsec/events...
#BrandeisMRSEC
New Publication 🚨 : Tyukodi Botond explores how to choose design principles for synthesizing closed assemblies with the lowest complexity and highest degree of symmetry to enable high yielding but fast assembly of target structures. Check it out: arxiv.org/abs/2411.03720 #BrandeisMRSEC #SelfAssembly
New Publication 🚨 : Layne Frechette shows how active matter, which consumes energy to create persistent and directed motion, can be harnessed to create dynamic assemblies with tunable sizes, shapes, and motion. Check it out : arxiv.org/abs/2410.05555 #ActiveMatter #SelfAssembly #BrandeisMRSEC