Scientists at Rice University have developed a new method to create porous envelopes around light-powered aluminum nanocatalysts using pseudomorphic replacement. This process enables the creation of greener catalysts that use solar energy and are made from abundant metals, reducing energy burden and environmental impact. The study demo...
Rice University scientists have developed a novel method to incorporate nitrogen into molecules, bypassing traditional multi-step processes. This breakthrough enables the quick and efficient production of valuable alpha-aminoketones, which are crucial for drug design and synthesis.
Researchers at Rice University have discovered a direct connection between gene regulation and metabolic pathways in cancer cells, enabling them to adapt to hostile environments. The study's findings reveal three stable metabolic states that cancer cells can adopt to evade therapies.
Rice University researchers have developed a nano-infused ceramic that can act as a sensor for structures, monitoring their health and reporting damage. The ceramic's unique electrical properties make it suitable for self-sensing applications in buildings, bridges, and aircraft.
A Rice University study of home-schooled children aged 10-17 found that many fall short of daily exercise goals despite participating in organized activities. The researchers recommend increasing unstructured physical activity time to ensure children meet their fitness needs. Parents are encouraged to provide more opportunities for out...
Researchers at Rice University have fine-tuned a pyrolysis technique to remove petroleum contaminants from soil, restoring its fertility. The method uses gentle heat to preserve the soil's essential clays, eliminating 99.9% of total petroleum hydrocarbons and 94.5% of polycyclic aromatic hydrocarbons.
Researchers at Rice University found that arclogites, leftover dross from volcanic activity, are responsible for the missing niobium in continental crust. This discovery provides crucial information about how continents form and grow, shedding light on Earth's history and making it more livable.
Researchers at Rice University argue that photoluminescence, not Raman scattering, is responsible for the remarkable light-emitting properties of metal nanoparticles. This breakthrough could lead to improvements in solar-cell efficiency and the development of new biosensors.
A study by Rice University suggests that a planetary collision formed the moon and delivered life-essential elements to Earth. The research found that Earth's carbon and nitrogen content is consistent with a moon-forming impact involving a volatile-bearing, Mars-sized planet with a sulfur-rich core.
A study by researchers at Rice University shows that well-designed policy can support the use of biochar to enhance agricultural productivity, sequester carbon, and preserve valuable soil. The federal government has existing programs that promote biochar adoption, but more investment is needed in large-scale production.
Researchers at Rice University and the Duke University School of Medicine have identified JAG1 as a key player in tumor mechanics. The study shows how cancer stem cells differentiate within tumors and spread through the interaction of JAG1 with a signaling pathway, enabling metastasis.
Physicists at Rice University have successfully cooled a neutral plasma using lasers, a technique that could lead to new insights into exotic states of matter and potentially even breakthroughs in quantum computing. The achievement sets the stage for simulators of super-dense stars like Jupiter and white dwarf stars.
Researchers create a rubbery, shape-shifting material that can morph into complex shapes at room temperature and change back when heated. The material shows promise for soft robots and biomedical applications requiring pre-programmed shapes at body temperature.
A new study by Rice University and other institutions reveals that UK scientists are significantly less religious than the general population. Elite scientists, particularly biologists, are more likely to never attend religious services.
Rice University scientists develop synthetic protein switches to control electron flow, enabled by chemical triggers. The discovery enables custom-designed switches for applications such as living sensors and electronically controlled metabolic pathways.
Rice University engineers have developed a microfluidic device that can produce customizable, 'wet' foams in small amounts for various applications. The device creates large bubbles in the middle and two ranks of identical smaller bubbles along the edges, with the ability to control size distribution.
Researchers at Rice University have developed a method to transfer entire 2D circuits to any smooth surface, enabling the creation of atom-flat sensors that seamlessly integrate with devices. This breakthrough allows for the monitoring of performance without adding weight or hindering signal flow in optical fibers.
Researchers at Rice University have discovered a way to control the output of gold nanoparticles using circularly polarized light. By changing the handedness of the light input, they found they could change the intensity of the scattered light by up to 50%, opening up new possibilities for ultrasmall optical components and antennas.
Researchers discovered a two-dimensional material that can become a magnetic topological insulator even without an external magnetic field. The material, chromium triiodide (CrI3), exhibits collective spin excitations called magnons, which behave similarly to photon waves.
Researchers propose that changes in Earth's spin axis, known as true polar wander, triggered the latest ice age about 12 million years ago. By analyzing fossil signatures and magnetic data from ocean sediments, they found evidence of a 3-degree shift in the planet's rotation axis, which may have led to the formation of thick ice sheets.
The 'smart skin' technology uses fluorescing carbon nanotubes to reveal stress in aircraft, bridges, or pipelines over entire surfaces or microscopic levels. It enables two-dimensional mapping of accumulated strain that can't be achieved by other non-contact methods.
Rice University scientists have developed a new epoxy compound that combines graphene foam for improved conductivity and strength. The composite material is substantially tougher than pure epoxy and far more conductive, while retaining its low density.
Researchers at Rice University have developed a new technology that uses a moth-infecting virus and nanomagnets to deliver CRISPR/Cas9 payloads for gene editing. The therapy has the potential to treat genetic diseases such as sickle cell, muscular dystrophy, and cystic fibrosis.
Rice University engineers have developed flexible organic photovoltaics with improved mechanical properties, enabling them to withstand strains of up to 20%. The new material retains its efficiency and gains flexibility by incorporating a network of elastic additives.
A study published in Psychosomatic Medicine found that recent bereavement is associated with increased levels of inflammation and cardiovascular illness risk. Sleep disturbances exacerbated the negative effects of grief, highlighting the importance of addressing sleep issues in post-loss health interventions.
Rice University scientists have developed a simple and efficient method to attach drugs or substances to antibodies, which are central to the body's immune system. The technique, called pClick, uses non-canonical amino acids to bind to specific sites on antibodies without the need for re-engineering or harsh chemicals.
Researchers at Rice University have discovered the structure of the condensin protein complex, a ring-shaped protein that helps condense chromosomes. The finding settles a long-standing controversy over the mechanism by which the complex wrangles DNA, and provides insight into its activity during mitosis and cell life cycles.
A recent study published in Genome Biology found that the rapid growth of genomic databases is affecting the accuracy of bacterial species identification. The research, led by Rice University scientist Todd Treangen, reveals that the imbalance in database coverage hinders the ability to quickly identify pathogens.
A study by Rice University researchers found that Texas would be healthier with stronger limits on sulfur dioxide emissions from coal plants. The study analyzed 13 coal plants and concluded that particulate matter is the deadliest air pollutant, causing respiratory diseases, heart attacks, and strokes.
Researchers at Rice University have discovered a link between tiny tremors on the Cascadia margin and fluid activity deep within the Earth's crust. The study reveals that these small quakes are related to slippage in the subducting plate, which releases fluids into sediments trapped beneath the overriding plate.
Researchers at Rice University have created high-powered, fast-charging lithium metal batteries using carbon nanotube films. The films effectively quench dendrite growth, allowing the batteries to retain 99.8% of their coulombic efficiency over 580 charge/discharge cycles.
Researchers at Rice University have found a correlation between digital device use and the quality of first impressions. People who reported frequent media multitasking were more likely to be distracted by irrelevant information when making first impressions about someone they had never met.
A new computational model, PRYSM, has been developed to interpret climate data from lake sediments, revealing that lake temperature proxies underestimated air temperature changes. The model is designed to compare paleoclimate data with climate model simulations, aiming to improve interpretations of past climate changes.
A study from Rice University found that grief can cause inflammation leading to negative health outcomes such as cardiovascular problems and premature mortality. Researchers discovered that widows and widowers with elevated grief symptoms suffered higher levels of bodily inflammation.
Matt Jones will use the grant to develop techniques in liquid cell transmission electron microscopy (TEM) to view chemical processes in real time at the atomic scale. He aims to capture video of nanocrystal synthesis, protein biofouling and catalysis itself.
Rice University researchers are working to develop cell implants that can sense blood glucose levels and produce insulin on demand for Type 1 diabetes patients. The project aims to eliminate the need for patients to monitor their blood glucose and administer insulin shots, potentially leading to a cure for this autoimmune disease.
Rice University scientists develop micron-sized spheres that trap and destroy bisphenol A (BPA), a synthetic chemical used in plastics. The spheres utilize reactive oxygen species (ROS) to degrade BPA into harmless chemicals, showing 90% efficacy after just one hour.
Rice University researchers have created a new catalyst that can convert ammonia into hydrogen fuel at ambient pressure using light energy, significantly lowering the activation barrier. The catalyst, made of copper with trace amounts of ruthenium, uses plasmonic effects to enhance its efficiency.
Researchers create spheres that can be made at low cost and promise to mitigate the energy-intensive techniques now used to make cement. The spheres are suitable for various applications, including bone-tissue engineering, insulation, ceramic, and composite materials.
According to a study by Rice University data scientists, the number of groups and organizations an individual joins is crucial in forming online friendships. The researchers found that individuals who are active in multiple communities have a higher chance of meeting people with similar interests.
Scientists created a comprehensive guide to the optical properties of 2D materials, enabling the design of smaller devices and polarizing filters. The research revealed surprising optical signatures in each material, with some absorbing or reflecting specific wavelengths of light.
A cross-disciplinary team led by Rice University will investigate the formation of life-essential elements in rocky planets during their early evolution. The CLEVER Planets project aims to understand how these elements survive turbulent periods and ultimately lead to habitability, with a focus on rocky worlds beyond our solar system.
Researchers from Rice University's Laboratory for Nanophotonics studied plasmons in polycyclic aromatic hydrocarbons (PAHs) with fewer than 50 atoms. They found that these molecules can support molecular plasmons in the visible spectrum, offering a new area of research at the intersection of plasmonics and molecular chemistry.
Researchers used ultracold lithium atoms to verify a theory predicting collective behavior in one-dimensional wires. The study confirmed the predicted speed of charge waves and spin waves as a function of interaction strength, setting the stage for further investigation into strongly correlated electron physics.
The Rice University graduate-level bioelectronics program aims to develop technologies at the cell/material interface, focusing on light-harvesting systems and implantable devices. The five-year program will train students from various departments to tackle bioelectronics challenges collaboratively.
Rice University researchers have developed a fleet of autonomous aerial drones that can coordinate to detect and track airborne pollutants. The system, called ASTRO, will use real-time data to alert neighborhoods of hazardous conditions following extreme weather events.
Rice University engineers discovered that weak van der Waals forces between nanotubes and water molecules can align into a square rod. The research provides valuable insight on ways to leverage atomic interactions for fabricating nanochannels and energy-storing nanocapacitors.
Researchers at Rice University have discovered the first example of Dicke cooperativity in a matter-matter system, which could lead to faster information processing and lower power consumption. The discovery uses a magnetic field to prompt cooperativity among spins within a crystalline compound made primarily of iron and erbium.
Rice University scientists create iron-based TI contrast agent that outperforms gadolinium chelates, improving T1 MRI contrast performance by two-fold. The study demonstrates a method to load iron into nanoparticles, offering a safer and more effective alternative for radiologists.
A Rice University scientist has developed a new method to diagnose quantum computers, reducing the need for expensive measurements. This approach uses compressed sensing to minimize data while ensuring accurate results, making it possible to validate even large-scale systems.