Strategic Communications and Marketing News Bureau

Researchers gain control over soft-molecule synthesis

CHAMPAIGN, Ill. — By gaining control over shape, size and composition during synthetic molecule assembly, researchers can begin to probe how these factors influence the function of soft materials. Finding these answers could help advance virology, drug delivery development and the creation of new materials. 

“We approached this new research concept not by trying to fix a problem, but by asking what is possible when it comes to soft-molecule synthesis,” said Damien Guironnet, a chemical and biomolecular engineering professor at the University of Illinois at Urbana-Champaign and lead author of a new study. “What if we can gain control over things like shape, size and composition during molecular synthesis – what does that mean?”

The findings are reported in the Proceedings of the National Academy of Science.

For years, scientists have struggled to clarify how nanoparticle shape and size influence their behavior within living tissue, the researchers said. “The size of the synthetic molecules we are creating correspond to the size of viruses,” said Dylan Walsh, a chemical and biomolecular engineering graduate student and study co-author. “Observations made from controlling these factors will allow researchers to probe these types of questions.”

The team combined classic chemical synthesis techniques and basic chemical engineering principles. They introduced precise control over the polymer formation sequence via the flow rate of the building blocks used. By altering flow rate, the new process can yield soft matter with unique architectures, the researchers said.

“We use mathematical modeling to predict the shape, size and composition of molecules we create and use computer-guided synthesis in the lab to adjust the flow rate of the mixtures that control the architecture of the polymer,” Guironnet said.

The researchers felt it was not enough to simply state that they can do this – they needed to prove it.

“Our mathematical modeling does not include any assumptions so there is really nothing else that can be formed other than what we model, but math is not something you can see,” Guironnet said. “Shape is something we can see, and we were able to verify with microscopic imaging that we formed polymers consistent with what we predicted.”

The team achieved this with synthetic molecules that are soluble in organic solvents, but the next step will be to move onto water-soluble molecules. “If we truly want to better understand our immune response and improve drug-delivery specificity, we need these to be water-soluble so that they can work in our bodies,” Guironnet said.

The researchers view this work as a big step forward in advancement of soft-material synthetic polymer science.

“We have access to new building blocks, and now we can work on figuring out how we can use these blocks to assemble new materials at the molecular level,” Walsh said. “We think of it as playing with Legos to see how the shape of the individual building blocks influences the final product.”

The National Science Foundation supported this study.

To reach Damien Guironnet, call 217-265-0233; guironne@illinois.edu.

The paper “Macromolecules with programmable shape, size and chemistry” is available online and from the U. of I. News Bureau.

Read Next

Health and medicine Dr. Timothy Fan, left, sits in a consulting room with the pet owner. Between them stands the dog, who is looking off toward Fan.

How are veterinarians advancing cancer research in dogs, people?

CHAMPAIGN, Ill. — People are beginning to realize that dogs share a lot more with humans than just their homes and habits. Some spontaneously occurring cancers in dogs are genetically very similar to those in people and respond to treatment in similar ways. This means inventive new treatments in dogs, when effective, may also be […]

Honors From left, individuals awarded the 2025 Campus Awards for Excellence in Public Engagement are Antoinette Burton, director of the Humanities Research Institute; Ariana Mizan, undergraduate student in strategy, innovation and entrepreneurship; Lee Ragsdale, the reentry resource program director for the Education Justice Project; and Ananya Yammanuru, a graduate student in computer science. Photos provided.

Awards recognize excellence in public engagement

The 2025 Campus Awards for Excellence in Public Engagement were recently awarded to faculty, staff and community members who address critical societal issues.

Uncategorized Portrait of the researchers standing outside in front of a grove of trees.

Study links influenza A viral infection to microbiome, brain gene expression changes

CHAMPAIGN, Ill. — In a study of newborn piglets, infection with influenza A was associated with disruptions in the piglets’ nasal and gut microbiomes and with potentially detrimental changes in gene activity in the hippocampus, a brain structure that plays a central role in learning and memory. Maternal vaccination against the virus during pregnancy appeared […]

Strategic Communications and Marketing News Bureau

507 E. Green St
MC-426
Champaign, IL 61820

Email: stratcom@illinois.edu

Phone (217) 333-5010