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Rice University


Rice de-icer gains anti-icing properties

Researchers at Rice University have developed a graphene-based de-icer that can prevent ice formation above 7 degrees Fahrenheit, making it suitable for large applications like aircraft and power lines. The material is also conductive and can be heated with electricity to melt ice and snow in colder conditions.

SourceRice University·JournalACS Applied Materials & Interfaces·DateMay 23, 2016

Nanotubes are beacons in cancer-imaging technique

Researchers at Rice University have developed a new cancer-imaging technique that uses carbon nanotubes tagged with antibodies to pinpoint the location of tumors. The technique, known as spectral triangulation, uses non-invasive optical measurements to determine the depth and coordinates of the nanotube beacons in tissue.

SourceRice University·JournalNanoscale·DateMay 20, 2016

Microwaved nanoribbons may bolster oil and gas wells

Researchers at Rice University developed a method to treat composite materials with microwaves, increasing their stability and strength in wellbores for oil and gas production. The treatment involved combining graphene nanoribbons with thermoset polymers and heating them with low-power microwaves.

SourceRice University·JournalACS Applied Materials & Interfaces·DateMay 12, 2016

Study probes heart of synthetic heart valves

Researchers create natural polymer-based scaffolds to grow spongiosa tissue, mimicking the middle layer of heart valve leaflets. The study finds that these scaffolds can be tuned to match the stiffness of natural tissue and may offer a promising alternative to existing mesh-based polymers.

SourceRice University·JournalBiomacromolecules·DateMay 11, 2016

Rice experts unveil submicroscopic tunable, optical amplifier

Rice experts unveil a submicroscopic tunable, optical amplifier that generates infrared light and boosts the output of one light by capturing energy from a second light. The innovation is a single nanoparticle serving as an optical parametric amplifier, with potential applications in chemical sensing and molecular imaging.

SourceRice University·JournalNano Letters·DateMay 9, 2016

Thanks, actin, for the memories

Researchers at Rice University suggest that actin filaments play a key role in forming and storing long-term memories by stabilizing soluble cytoplasmic polyadenylation element binding proteins (CPEB) into longer, insoluble prion-like fibers. This process is thought to aggregate and encode memories in neurons' synaptic regions.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateApr 18, 2016

Nanotubes assemble! Rice introduces 'Teslaphoresis'

Researchers at Rice University have discovered 'Teslaphoresis', a phenomenon where carbon nanotubes self-assemble into long wires using a Tesla coil's force field. The team, led by Paul Cherukuri, reported their results in ACS Nano and demonstrated the ability to assemble and power circuits using the force field.

SourceRice University·JournalACS Nano·DateApr 14, 2016

Battery components can take the heat

Researchers at Rice University have developed a combined electrolyte and separator for rechargeable lithium-ion batteries that can operate at high temperatures, including 150 degrees Celsius, with negligible loss of efficiency. The 'white graphene' composite eliminates the need for conventional plastic or polymer separators and is desi...

SourceRice University·JournalAdvanced Energy Materials·DateApr 11, 2016

Brittle is better for making cement

Rice University scientists have discovered that certain types of tricalcium silicates are more efficient to produce cement due to their structural properties. These findings could lead to lower energy consumption and reduced greenhouse gas emissions associated with concrete production, a major contributor to climate change.

SourceRice University·JournalJournal of the American Ceramic Society·DateApr 11, 2016

Nanotubes line up to form films

Researchers at Rice University have discovered a way to make highly aligned, wafer-scale films of densely packed single-walled carbon nanotubes. The thin films offer possibilities for making flexible electronic and photonic devices, such as bendable computer chips.

SourceRice University·JournalNature Nanotechnology·DateApr 4, 2016

Flat boron is a superconductor

Researchers at Rice University have determined that 2D boron is metallic and can transmit electrons with no resistance, making it a promising material for superconductivity. The discovery may lead to breakthroughs in small-scale superconducting circuits.

SourceRice University·JournalNano Letters·DateMar 31, 2016

Sterile Box offers safer surgeries

The Sterile Box, a mobile container, sterilizes surgical instruments to minimize risk of infections in patients. The system's performance was nearly perfect in trials, and it addresses issues with unreliable power and inadequate quality control in developing countries.

SourceRice University·JournalPLOS ONE·DateMar 23, 2016

Rice scientists synthesize anti-cancer agent

Researchers at Rice University have developed a new method for synthesizing the potent anti-cancer agent trioxacarcin, which damages DNA and disrupts cancer cell replication. This breakthrough allows for more efficient production of these valuable molecules, enabling their study as potential new medications.

'Big data' drills down into metabolic details

A new computational method, CORDA, models tissue-specific metabolic pathways by assigning a cost to reactions without experimental data. Researchers found key differences in metabolic similarities between healthy and cancerous tissues, including up-regulation of folate metabolism.

SourceRice University·JournalPLOS Computational Biology·DateMar 9, 2016

Study: Cancer cells eat their neighbors' 'words'

Researchers at Rice University discovered that cancer cells can consume amino acids directly from exosomes, tiny packets of proteins and nucleic acids, to fuel tumor growth. This finding contradicts the long-held Warburg effect theory, suggesting each type of cancer has a unique metabolic profile.

Cancer cells' evasive action revealed

Researchers have discovered a trick used by lung cancer cells to hide from the immune system, specifically suppressing immunoproteasomes that signal T-cells to attack diseased cells. The study suggests it may be possible to enhance production of these proteins to override the cells' escape mechanism.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateMar 2, 2016

New theorem helps reveal tuberculosis' secret

A new methodology developed at Rice and Rutgers universities helps scientists understand how biochemical networks control biological responses. The approach predicted novel interactions in bacteria that cause tuberculosis, revealing a potential mechanism for the disease's survival.

SourceRice University·JournalPLOS Computational Biology·DateFeb 22, 2016

Marine virus outbreaks linked to coral bleaching

A study by Rice University and Oregon State University found that significant marine virus outbreaks may be associated with coral bleaching events, especially due to multiple environmental stresses. Viral groups, including a herpes-like virus, were detected in corals undergoing bleaching on the Great Barrier Reef.

SourceRice University·JournalFrontiers in Microbiology·DateFeb 17, 2016

Proto-planet has 2 masters

New Atacama Large Millimeter/submillimeter Array (ALMA) images provide detail on the binary star system HD 142527, revealing a broad ring of dust and ice. The system's formation is expected to yield insights into planetary systems around binary stars.

Too-few proteins prompt nanoparticles to clump

Rice scientists observed that blood serum proteins irreversibly attach, unfold, and bring gold nanoparticles together in low concentrations. This counterintuitive behavior has significant implications for diseases caused by aggregation, such as Alzheimer's, and nanoparticle toxicity issues.

SourceRice University·JournalACS Nano·DateJan 28, 2016

Heavy fermions get nuclear boost on way to superconductivity

Physicists have discovered that nuclear effects help bring about superconductivity in YRS, a composite material of ytterbium and rare earth elements. This finding provides further evidence that unconventional superconductivity arises from quantum criticality and exposes the role of nuclear spins in exposing electronic quantum criticality.

SourceRice University·JournalScience·DateJan 28, 2016

Nano-coating makes coaxial cables lighter

Researchers create flexible, high-performance coating that replaces metal braid with carbon nanotubes, benefiting airplanes and spacecraft. The new cable reduces weight by 97%, meeting military-grade standards for shielding and strength.

SourceRice University·JournalACS Applied Materials & Interfaces·DateJan 27, 2016

Feds back new heart patch for infants

Researchers at Rice University have won a National Institutes of Health grant to develop new patches that encourage the growth of the child's own heart tissue. The new patches are designed to blend in with the surrounding tissue, reducing the risk of rejection and improving survival rates for infants born with congenital heart defects.

Graphene composite may keep wings ice-free

A thin coating of graphene nanoribbons in epoxy has been proven effective at melting ice on a helicopter blade. The coating, developed by Rice University, may be an effective real-time de-icer for aircraft and other surfaces exposed to winter weather, reducing the need for glycol-based chemicals.

SourceRice University·JournalACS Applied Materials & Interfaces·DateJan 25, 2016

Microwaved nanotubes come up clean

Researchers at Rice University and Swansea University have developed a two-step process using microwaves and chlorine to remove iron catalyst residues from carbon nanotubes. This method makes the nanotubes more pristine and suitable for applications such as drug delivery and solar panels.

SourceRice University·JournalRSC Advances·DateJan 22, 2016

Graphene oxide 'paper' changes with strain

Rice researchers found that graphene oxide layers change their mechanical properties depending on the strain rate, making it brittle when pulled fast but more pliable under slow stress. This discovery can help build three-dimensional structures from two-dimensional materials for various applications.

SourceRice University·JournalNano Letters·DateJan 19, 2016

New tool puts accurate DNA analysis in fast lane

Researchers at Rice University have created a new tool to analyze DNA in its native conditions, reducing analysis time from months to hours. The method generates more accurate results and can be used to build a comprehensive database of thermal behaviors of genetic molecules.

SourceRice University·JournalNature Communications·DateJan 19, 2016