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NTU Singapore scientists develop a sustainable way to convert kale waste into products for health and personal care

A new technique converts kale waste into phytochemicals for use in health and personal care products, preserving potency and using non-toxic solvents. The method reduces energy consumption and emissions, making it attractive for industry adoption and supporting a circular economy.

SourceNanyang Technological University·JournalSeparation and Purification Technology·TypeExperimental study·DateAug 16, 2023

Making plant-based meat alternatives more palatable

Researchers at the University of Leeds have created plant protein microgels that transform dry plant proteins into hydrated ones, mimicking the sensation of fat. The breakthrough could lead to the development of healthier, palatable, and sustainable plant-based foods.

SourceUniversity of Leeds·JournalNature Communications·TypeExperimental study·DateAug 14, 2023

TNMSC researchers create high-performance aluminum matrix composites with asymmetric cryocooling

Scientists have developed a new method to manufacture high-performance aluminum matrix composites using asymmetric cryorolling, resulting in improved mechanical properties and increased ductility. The technique produces sheets with fewer microvoids, finer grain size, and higher density of dislocations.

SourceCactus Communications·JournalTransactions of Nonferrous Metals Society of China·TypeExperimental study·DateAug 8, 2023

Advancing the commercialization of two-dimensional materials: achieving the goal with UV-assisted atomic layer deposition”

A team of researchers has successfully created a high-performance graphene-dielectric interface using a novel technique called UV-assisted atomic layer deposition. This breakthrough results in uniform atomic layer deposition without compromising graphene's properties, leading to improved electrical performance and reduced defects.

SourcePohang University of Science & Technology (POSTECH)·JournalAdvanced Electronic Materials·DateAug 7, 2023

Scientists develop novel method to synthesize azide compounds for wider industrial applications

Researchers from Tokyo University of Science have developed an innovative method to synthesize azide compounds with a protected azido group, facilitating the efficient synthesis of organonitrogen compounds. This novel approach enables the creation of a wide range of azides through transformations with various electrophiles.

SourceTokyo University of Science·JournalFrontiers in Chemistry·TypeExperimental study·DateAug 4, 2023

Unique Mexican black and pinto bean varieties are high in healthy compounds

A University of Illinois study found unique Mexican black and pinto bean varieties to be high in phenolic compounds and anthocyanins, which have antioxidant and anti-inflammatory properties. The research also identified potential applications for the seed coat extracts in the food industry and cosmetics.

SourceUniversity of Illinois College of Agricultural, Consumer and Environmental Sciences·JournalFood Research International·TypeComputational simulation/modeling·DateJul 28, 2023

Unlocking a mystery of fetal development

Researchers at Rutgers University analyzed urine samples from pregnant women to understand how the placenta regulates cadmium exposure. They found that as cadmium levels increased, free testosterone levels decreased, suggesting a link between cadmium and fetal brain development.

SourceRutgers University·JournalToxics·TypeSurvey·DateJul 28, 2023

University College Dublin researcher receives award to explore the disruptive power of macromolecular crowding in cell culture systems

A University College Dublin researcher has received a European Research Council Proof of Concept grant to investigate the disruptive power of macromolecular crowding in cell culture systems. The project aims to develop novel approaches for regenerative medicine by accelerating tissue development and improving therapeutic potential.

Enhanced light absorption in thin silicon photodetectors with photon-trapping structures

A new approach boosts light absorption in thin silicon photodetectors with photon-trapping structures, increasing the absorption efficiency over a wide band in the NIR spectrum. The findings demonstrate a promising strategy to enhance the performance of Si-based photodetectors for emerging photonics applications.

SourceSPIE--International Society for Optics and Photonics·JournalAdvanced Photonics Nexus·DateJul 26, 2023

IT peer advice may diminish the management labor pool

A study by Rensselaer Polytechnic Institute found that IT peers may deter business students from entering the field. However, women without IT experience are more likely to receive positive messages and pursue careers in IT. Firms should consider the potential negative impact of peer advice when recruiting and developing IT talent.

SourceRensselaer Polytechnic Institute·JournalInformation Systems Research·TypeData/statistical analysis·DateJul 25, 2023

New robot boosts solar energy research

Researchers at North Carolina State University have developed a new robot called RoboMapper that can conduct experiments more efficiently and sustainably to develop new semiconductor materials. The robot automates the process of testing multiple samples simultaneously, reducing time and energy consumption by nearly 10 times.

SourceNorth Carolina State University·JournalMatter·TypeExperimental study·DateJul 25, 2023

Staying sharp: Researchers turn to an everyday shop tool to study how materials behave

A team of researchers at Texas A&M University is developing a new method for understanding metal behavior under extreme conditions using metal cutting, a traditional manufacturing tool. The process involves shearing or deforming the metal to extreme levels under high rates and can provide fundamental information on material strength an...

SourceTexas A&M University·JournalProceedings of the Royal Society A Mathematical Physical and Engineering Sciences·DateJul 18, 2023

NIH spent $8.1B for phased clinical trials of drugs approved 2010-19, ~10% of reported industry spending

A new study by Bentley University reveals the NIH's significant investment in pharmaceutical innovation, with $8.1 billion spent on phased clinical trials between 2010-19. The funding represents only ~10% of reported industry costs for these trials, highlighting the public sector's limited contribution to drug development.

SourceBentley University·JournalJAMA Health Forum·TypeObservational study·DateJul 14, 2023

A ferroelectric transistor that stores and computes at scale

A new FE-FET design demonstrates record-breaking performances in computing and memory, achieving large memory window with impressively small device dimensions. The combination of molybdenum disulfide and aluminum scandium nitride materials enables energy-efficient devices for both computing and non-volatile memory applications.

Mystery of microgels solved

Soft particles called microgels can shrink abruptly when their concentration in a solvent is increased above a certain threshold, even without physical contact. Researchers have provided experimental proof of this phenomenon using neutrons from the Paul Scherrer Institute's SINQ spallation source.

SourcePaul Scherrer Institute·JournalNature Communications·TypeExperimental study·DateJul 10, 2023