Advertisements


Photoenzymatic synthesis achieves efficient oxidation of fatty acids

A research team designed and built a photoenzymatic cascade by combining photochemical water oxidation/O2 reduction with P450 peroxygenase catalysis to achieve efficient visible-light-driven oxidation of a range of fatty acids (C12-C20), leading to p.....»»

Category: topSource:  informationweekJul 8th, 2024

Advances in hydrogen research: More efficient isotope separation in sight

The lightest of all elements, hydrogen, is in great demand due to its promising role as a sustainable resource in the energy transition. A team from Leipzig University and TU Dresden, as part of the Hydrogen Isotopes 1,2,3H Research Training Group, h.....»»

Category: topSource:  physorgRelated News9 hr. 44 min. ago

Photoacoustic sensor achieves high-sensitivity detection of multiple greenhouse gases

Recently, Prof. Gao Xiaoming's team from the Hefei Institutes of Physical Science of the Chinese Academy of Sciences, developed a novel photoacoustic spectroscopy (PAS)-based sensor that enabled simultaneous, high-sensitive detection of CO2, CH4, and.....»»

Category: topSource:  physorgRelated News10 hr. 16 min. ago

Landmark AI deal sees Hollywood giant Lionsgate provide library for AI training

Runway deal will create a Lionsgate AI video generator, but not everyone is happy. Enlarge (credit: Benj Edwards / Malte Mueller via Getty Images) On Wednesday, AI video synthesis firm Runway and entertainment company Li.....»»

Category: topSource:  arstechnicaRelated NewsSep 18th, 2024

Template synthesis creates multilayered perovskites with unique ferroelectric behavior

A group of Nagoya University researchers in Japan has synthesized 4- and 5-layered versions of the important electrical material perovskite. Analyzing the mechanism of ferroelectricity in the material, they found it has a unique function: the materia.....»»

Category: topSource:  physorgRelated NewsSep 18th, 2024

Study sheds light on trade-off between noise and power in nanoscale heat engines

Thanks to nanoscale devices as small as human cells, researchers can create groundbreaking material properties, leading to smaller, faster, and more energy-efficient electronics. However, to fully unlock the potential of nanotechnology, addressing no.....»»

Category: topSource:  pcmagRelated NewsSep 17th, 2024

CRISPR/Cas9 modifies Euglena to create potential biofuel source

News about biofuels sometimes mentions used cooking oil as a feedstock, but if these substances contain animal fat, they can solidify in colder temperatures. This happens because, chemically, the fatty acids of these and many other saturated fats hav.....»»

Category: topSource:  physorgRelated NewsSep 13th, 2024

Researchers achieve efficient electro-oxidation of glycerol to formate under room temperature

Glycerol is a key byproduct of biodiesel fabrication, and its production has increased proportionally with the growth of biodiesel production. Glycerol electrooxidation is considered as an innovative strategy due to its low theoretical potential and.....»»

Category: topSource:  physorgRelated NewsSep 12th, 2024

Dual-feedback mechanism can enhance anti-oxidation coatings in fiber composites

Fiber-reinforced ceramic matrix composites (CMCs) have been the primary choice for radome materials in hypersonic vehicles due to their high toughness, strength, and other advantageous properties. However, oxidation by oxygen in the atmospheric envir.....»»

Category: topSource:  physorgRelated NewsSep 12th, 2024

Enzyme-inspired catalyst puts chemicals in right position to make ethers

Taking inspiration from enzymes, chemists at the University of Illinois Urbana-Champaign developed a catalyst to simplify the synthesis of ethers, key functional components of many drugs, foods, personal care items and other consumer goods. The catal.....»»

Category: topSource:  physorgRelated NewsSep 12th, 2024

Catalyzing environmental cleanup: A highly active and selective molecular catalyst and electrified membrane

Some chemicals create environmental problems; others, fortunately, can help clean them up. Chemists from Yale University and their colleagues have developed an electrochemical catalyst and membrane that offers an efficient and sustainable way to trea.....»»

Category: topSource:  physorgRelated NewsSep 12th, 2024

GM, Hyundai team up to slash costs of new vehicles and clean tech

The hope is for better products and more efficient companies. Enlarge / GM CEO Mary Barra (left) and Hyundai executive chair Euisun Chung (right) have agreed to have their companies collaborate. (credit: Hyundai Motor Group).....»»

Category: topSource:  arstechnicaRelated NewsSep 12th, 2024

New findings in a decade-long study of enzyme catalysis

Synthetic chemistry provides an essential material basis for our clothing, food, housing, transportation, and medicine and is an important driving force for economic development. However, traditional chemical synthesis has bottleneck problems such as.....»»

Category: topSource:  physorgRelated NewsSep 11th, 2024

Steering molecular twisting for hydrogen generation

Researchers from the Faculty of S&T at the University of Twente have developed a novel approach for the design of efficient solar fuel devices. Research performed by graduated Ph.D. student Kaijian Zhu shows that reducing the light-induced twisting o.....»»

Category: topSource:  theglobeandmailRelated NewsSep 10th, 2024

Tufin improves security automation on Azure, GCP, and VMware clouds

Tufin Orchestration Suite (TOS) R24-2 ensures organizations’ network operations are efficient, secure, and always audit-ready by automating complex tasks, enhancing security visibility, and driving compliance. The key benefits TOS R24-2 deliver.....»»

Category: securitySource:  netsecurityRelated NewsSep 10th, 2024

Uncovering the unique roles of Exportin-5 in RNA export within Drosophila cells

Eukaryotic cells are complex biological units, each with multiple membrane-bound compartments. These cells use specialized mechanisms to export biomolecules from their synthesis site to where they function......»»

Category: topSource:  physorgRelated NewsSep 9th, 2024

Scalable, multi-functional device lays groundwork for advanced quantum applications

Researchers have demonstrated a new multi-functional device that could help advance the scalability of solid-state color centers, enabling them to be used in larger and more complex quantum computers and networks. As efficient photon-spin interfaces,.....»»

Category: topSource:  theglobeandmailRelated NewsSep 9th, 2024

Plot twist: How giving old graveyards new life as parks can improve our cities

Old graveyards are a forgotten land asset that can find new life as urban parks in crowded cities. As the density of our cities increases, efficient use of urban land becomes paramount. In particular, land for urban parks becomes more important and h.....»»

Category: topSource:  theglobeandmailRelated NewsSep 9th, 2024

Research team achieves high-resolution 2D imaging for graphene devices under high pressure

A research team led by Prof Zhang Zengming from the University of Science and Technology of China (USTC) of the Chinese Academy of Sciences (CAS) has combined nitrogen-vacancy (NV) centers in diamond with a diamond anvil cell (DAC) to achieve non-inv.....»»

Category: topSource:  theglobeandmailRelated NewsSep 9th, 2024

Glitch in protein synthesis could affect tumor growth

During protein synthesis, or translation, genetic information transcribed in the cell's mRNA directs the stringing together of amino acids—the building blocks of proteins. As the translation machinery carouses along the string of nucleotides that m.....»»

Category: topSource:  theglobeandmailRelated NewsSep 9th, 2024

Novel design strategy advances discovery of metal-organic frameworks

An innovative strategy, known as the "Up-Down Approach," has the potential to dramatically accelerate the creation of metal-organic frameworks (MOFs). The paper is published in the journal Nature Synthesis......»»

Category: topSource:  physorgRelated NewsSep 5th, 2024