Add BrightSurf on Google Email

Rice University


Rice's Yingyan Lin receives NSF CAREER Award

Yingyan Lin, an assistant professor at Rice University, has received a $400,000 NSF CAREER Award to develop more efficient deep learning hardware accelerators. Her goal is to push forward ubiquitous intelligent devices and green artificial intelligence, addressing the gap between complex algorithms and limited resources.

Haotian Wang named Sloan Research Fellow

Haotian Wang, a chemical and biomolecular engineer at Rice University, has been selected as a 2021 Alfred P. Sloan Research Fellow for his outstanding contributions to the field of electrochemistry. He will receive a two-year grant of $75,000 to advance his research on electrocatalysis and sustainable chemicals production.

Collagen structures get the royal reveal

Researchers have created an algorithm called SCEPTTr that predicts the stability of collagen triple helices, a critical structure in skin, bones, muscles, tendons, and ligaments. The program expands on previous work to understand natural amino acids and provides detailed melting temperatures for each possible combination of sequences.

SourceRice University·JournalNature Chemistry·DateFeb 15, 2021

New CRISPR tech targets human genome's complex code

Researchers have developed a new genome editing tool that targets histone proteins in the nucleus, regulating DNA expression. The programmable CRISPR/Cas9-based kinase offers insights into controlling regulatory histone proteins and has potential applications in treating cancer and other diseases.

SourceRice University·JournalNature Communications·DateFeb 9, 2021

Research could dramatically lower cost of electron sources

Researchers at Rice University and Los Alamos National Laboratory have discovered a technology to make electron sources from halide perovskite thin films, efficiently converting light into free electrons. The cost savings come from abundant and inexpensive raw materials and a simpler manufacturing process.

SourceRice University·JournalNature Communications·DateFeb 1, 2021

What's in a name? A new class of superconductors

Physicists Qimiao Si and Emilian Nica propose a new theory that explains how electrons form pairs in unconventional superconductors. Their work reveals a general phenomenon called multiorbital singlet pairing, which is crucial for understanding the behavior of iron-based and heavy-fermion materials.

SourceRice University·Journalnpj Quantum Materials·DateJan 25, 2021

Much of Earth's nitrogen was locally sourced

Researchers found distinct nitrogen isotopic signatures in iron meteorites, suggesting the protoplanetary disk divided into two reservoirs within 300,000 years of its formation. This discovery challenges current understanding of volatile elements' origin and habitability of exoplanets.

SourceRice University·JournalNature Astronomy·DateJan 21, 2021

Flashing plastic ash completes recycling

Researchers at Rice University have developed a technique to convert pyrolyzed plastic ash into turbostratic graphene flakes, which can be added to materials like polyvinyl alcohol films and Portland cement to improve their compressive strength and resistance to water. The process has the potential to reduce energy use and cut pollutan...

SourceRice University·JournalCarbon·DateJan 13, 2021

2D compound shows unique versatility

A new 2D compound made of antimony and indium selenide exhibits unique properties depending on its polarization by an external electric field. This allows for potential applications in solar energy and quantum computing, with the material being relatively simple to make.

SourceRice University·JournalNano Letters·DateJan 11, 2021

Rice 'flashes' new 2D materials

Researchers at Rice University have successfully created metastable metallic nanoparticles from dichalcogenides, which can be used in electronics and optics. The process involves applying a high electrical charge to rapidly raise the material's temperature, producing a new class of highly valued materials.

SourceRice University·JournalACS Nano·DateJan 11, 2021

Carbon monoxide reduced to valuable liquid fuels

Rice University engineers have created a process that converts carbon monoxide directly into acetic acid, a widely used chemical agent. The electrochemical process uses nanoscale copper cubes and solid-state electrolytes to produce highly purified acetic acid with up to 98% purity.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateJan 11, 2021

Rice model offers help for new hips

The study incorporates fluid dynamics and roughness of joint surfaces to evaluate artificial hips, aiming to advance the design of more robust prostheses. The model could help clinicians personalize hip joints for patients depending on gender, weight, age, and gait variations.

SourceRice University·JournalBiotribology·DateJan 11, 2021

Simple bioreactor makes 'gut check' more practical

Researchers at Rice University have created a lab tool that simplifies simulations of the human intestine, allowing for more practical studies on diseases like infectious diarrhea. The device enables the real-time growth of bacterial infections and provides a mechanical model for studying how invading bacteria cause disease.

SourceRice University·JournalAnnals of Biomedical Engineering·DateJan 7, 2021

Weak force has strong impact on nanosheets

Rice University scientists found that van der Waals force can indent rigid nanosheets, changing their electromagnetic properties. The researchers discovered that the force is sufficient to deform 8-nanometer-thick silver sheets into curvilinear structures with potential applications in nanophotonic research and catalytic systems.

SourceRice University·JournalNano Letters·DateDec 15, 2020

Sheets of carbon nanotubes come in a rainbow of colors

Scientists have developed a method to predict the specific colors of thin films made from combining any of the 466 varieties of single-walled carbon nanotubes. The research shows that the thinnest and most colorful tubes affect visible light more than those with larger diameters and faded colors.

SourceRice University·JournalAdvanced Materials·DateDec 14, 2020

Vitamin boosts essential synthetic chemistry

Researchers at Rice University have developed a novel method for producing olefins, or alkenes, using vitamin B12 and blue light, eliminating harsh chemicals typically needed in the process. This breakthrough could lead to more efficient and sustainable production of drugs, agrochemicals, and plastics.

SourceRice University·JournalChemical Science·DateDec 8, 2020

Chemists get peek at novel fluorescence

Rice University scientists have discovered a novel phenomenon in carbon nanotubes, where a delayed secondary fluorescence is emitted when triggered by a multistep process involving dye molecules and dissolved oxygen. The delay, only microseconds long, can be detected with specialized instrumentation.

SourceRice University·JournalJournal of the American Chemical Society·DateDec 3, 2020

Understanding frustration could lead to better drugs

A new study by Rice University scientists has developed atomic resolution protein models that show frustration is necessary for protein function and can lead to better drug specificity. The models allow for the incorporation of co-factors like drug molecules, providing insight into why ligands bind best with specific proteins.

SourceRice University·JournalNature Communications·DateNov 23, 2020

Americans' attitudes about guns influenced by owners' race and gender

A new study from Rice University found that racial and gender biases significantly impact American attitudes toward gun ownership. The research revealed that Republicans are more likely to support gun rights for white men, while Democrats are more willing to support white women's right to own firearms. These findings highlight the need...

SourceRice University·JournalJournal of Public Policy & Marketing·DateNov 17, 2020

Folding proteins feel the heat, and cold

Researchers refine theories on protein interactions with solutions, discovering new factors influencing folding, including thermal expansion and temperature. Atom-scale models reveal complex interactions between solvents and peptides, potentially changing our understanding of hydrophobic and hydrophilic effects.

SourceRice University·JournalThe Journal of Physical Chemistry Letters·DateNov 11, 2020

Industrial-strength brine, meet your kryptonite

Researchers create a thin coating of hexagonal boron nitride to improve efficiency in desalination technology. The coating allows for exponential improvements in freshwater production, making it a key ingredient in a cost-effective solution for treating hypersaline water.

SourceRice University·JournalNature Nanotechnology·DateNov 3, 2020

Malaria test as simple as a bandage

Researchers created a test device using protein biomarkers in dermal interstitial fluid, detecting malaria in 20 minutes and requiring no medical expertise or equipment. The patches could cost around $1 each and be adapted for other diseases with biomarkers in interstitial fluid.

SourceRice University·JournalMicrosystems & Nanoengineering·DateNov 2, 2020

In a hurry to develop drugs? Here's your cHAT

Rice University scientists have developed a novel 'green' method for producing pharmaceutical intermediates using the cooperative hydrogen atom transfer (cHAT) technique. This approach employs earth-abundant iron and sulfur as catalysts, reducing costs and environmental impact compared to traditional methods.

SourceRice University·JournalJournal of the American Chemical Society·DateOct 30, 2020

Flash graphene rocks strategy for plastic waste

Researchers at Rice University have created a new method to convert plastic waste into high-quality graphene, offering a potential solution to the global plastic waste crisis. The flash graphene process eliminates much of the expense associated with recycling plastic, making it an economically viable alternative.

SourceRice University·JournalACS Nano·DateOct 29, 2020

Rice finds path to nanodiamond from graphene

Researchers at Rice University have developed a new method to create nanodiamond from graphene by applying pinpoint pressure, overcoming the energetic barrier to nucleation. This breakthrough could lead to the creation of single-crystal diamond films for electronics and optical applications.

SourceRice University·JournalSmall·DateOct 29, 2020

Rice rolls out next-gen nanocars

Researchers at Rice University have designed new nanocars with permanent dipole moments to increase their speed and drivability on a gold surface. The cars, weighing 114 atoms, will be driven via the internet by teams worldwide, competing in the 2022 international Nanocar Race.

Odds are good for unique 2D compound

Researchers at Rice University have discovered a unique 2D material that enables the valleytronics phenomenon, touted as a possible platform for information processing and storage. The material has been found to be scalable and less susceptible to environmental degradation.

SourceRice University·JournalAdvanced Materials·DateOct 26, 2020