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                    <title>Phys.org - latest science and technology news stories</title>
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            <description>Phys.org internet news portal provides the latest news on science including: Physics, Nanotechnology, Life Sciences, Space Science, Earth Science, Environment, Health and Medicine.</description>

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                    <title>Scientists unlock new way to engineer next-generation glass</title>
                    <description>Scientists have adapted a centuries-old principle of chemistry to fine-tune a new type of glass made from metal–organic frameworks (MOFs)—metal atoms connected by organic molecules—that efficiently trap gases like CO₂ and hydrogen and even capture water.</description>
                    <link>https://phys.org/news/2026-05-scientists-generation-glass.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Mon, 04 May 2026 13:40:02 EDT</pubDate>
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                    <title>Carefully controlled atoms make renewables more viable for plastics and fuels production</title>
                    <description>A catalyst developed by a Washington State University research team efficiently converts abundant, renewable ethanol into valuable molecules needed for production of plastics, fuels, and everyday products. The advance could someday make it easier to use renewables rather than petrochemicals to make common products. Led by Regents Professor Yong Wang, the researchers, including from Pacific Northwest National Laboratory (PNNL), report on their work in the journal, Chem Catalysis.</description>
                    <link>https://phys.org/news/2026-03-atoms-renewables-viable-plastics-fuels.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Thu, 19 Mar 2026 11:20:01 EDT</pubDate>
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                    <title>Using generative AI to help scientists synthesize complex materials</title>
                    <description>Generative AI models have been used to create enormous libraries of theoretical materials that could help solve all kinds of problems. Now, scientists just have to figure out how to make them. In many cases, materials synthesis is not as simple as following a recipe in the kitchen. Factors like the temperature and length of processing can yield huge changes in a material&#039;s properties that make or break its performance. That has limited researchers&#039; ability to test millions of promising model-generated materials.</description>
                    <link>https://phys.org/news/2026-01-generative-ai-scientists-complex-materials.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Mon, 02 Feb 2026 05:00:03 EST</pubDate>
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                    <title>Kinetic decoupling-recoupling strategy enables 79% yield of ethylene and propylene from polyethylene</title>
                    <description>In a study published in Nature Chemical Engineering, a team has developed a kinetic decoupling-recoupling (KDRC) strategy that enables the conversion of polyethylene (PE) to ethylene and propylene with a yield of 79%.</description>
                    <link>https://phys.org/news/2025-12-kinetic-decoupling-recoupling-strategy-enables.html</link>
                    <category>Polymers</category>                    <pubDate>Wed, 03 Dec 2025 11:38:28 EST</pubDate>
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                    <title>Silver-infused zeolite efficiently separates xenon from krypton for industrial use</title>
                    <description>An international team of researchers have found a better way to separate two rare and important gases—xenon and krypton—that are often combined in chemical, petrochemical, metallurgical, and environmental processes.</description>
                    <link>https://phys.org/news/2025-12-silver-infused-zeolite-efficiently-xenon.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Mon, 01 Dec 2025 12:51:22 EST</pubDate>
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                    <title>Self-driving system makes key plastic ingredient using in-house generated H₂O₂</title>
                    <description>An eco-friendly system capable of producing propylene oxide (PO) without external electricity or sunlight has been developed. PO is a vital raw material used in manufacturing household items such as polyurethane for sofas and mattresses, as well as polyester for textiles and water bottles.</description>
                    <link>https://phys.org/news/2025-11-key-plastic-ingredient-house-generated.html</link>
                    <category>Polymers</category>                    <pubDate>Fri, 07 Nov 2025 11:45:21 EST</pubDate>
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                    <title>Microwave technique allows energy-efficient chemical reactions</title>
                    <description>Some industrial processes used to create useful chemicals require heat, but heating methods are often inefficient, partly because they heat a greater volume of space than they really need to. Researchers, including those from the University of Tokyo, devised a way to limit heating to the specific areas required in such situations. Their technique uses microwaves, not unlike those used in home microwave ovens, to excite specific elements dispersed in the materials to be heated. Their system proved to be around 4.5 times more efficient than current methods.</description>
                    <link>https://phys.org/news/2025-10-microwave-technique-energy-efficient-chemical.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Fri, 10 Oct 2025 14:00:01 EDT</pubDate>
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                    <title>Ice mixed with amino acids stores methane in minutes</title>
                    <description>If you have ever cooked on a gas stove or seen a flame flicker to life with the turn of a knob, you have seen natural gas in action. Supplying that energy at scale, however, is far more complicated. Today, natural gas is mostly stored under high pressure or cooled into liquid at -162°C—both methods that are energy-intensive and costly.</description>
                    <link>https://phys.org/news/2025-10-ice-amino-acids-methane-minutes.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Thu, 02 Oct 2025 09:06:05 EDT</pubDate>
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                    <title>Circuits invisible to the naked eye: New technique shrinks microchips beyond current size limits</title>
                    <description>Johns Hopkins researchers have discovered new materials and a new process that could advance the ever-escalating quest to make smaller, faster and affordable microchips used across modern electronics—in everything from cellphones to cars, appliances to airplanes.</description>
                    <link>https://phys.org/news/2025-09-circuits-invisible-naked-eye-technique.html</link>
                    <category>Nanomaterials</category>                    <pubDate>Thu, 11 Sep 2025 05:00:01 EDT</pubDate>
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                    <title>Circular chemistry approach can turn carbon dioxide into valuable fuels and chemicals</title>
                    <description>Researchers at Texas A&amp;M University have uncovered how to more efficiently convert carbon dioxide (CO2) into useful fuels and chemicals, offering a potential boost to both environmental sustainability and local economies.</description>
                    <link>https://phys.org/news/2025-08-circular-chemistry-approach-carbon-dioxide.html</link>
                    <category>Materials Science</category>                    <pubDate>Mon, 04 Aug 2025 12:38:50 EDT</pubDate>
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                    <title>&#039;Biochar&#039; can naturally clean the pollution that rain washes off Georgia&#039;s roads</title>
                    <description>A charcoal-like material made from leaves and branches that collect on forest floors could be a cheap, sustainable way to keep pollution from washing off roadways and into Georgia&#039;s lakes and rivers.</description>
                    <link>https://phys.org/news/2025-07-biochar-naturally-pollution-georgia-roads.html</link>
                    <category>Environment</category>                    <pubDate>Thu, 10 Jul 2025 15:50:07 EDT</pubDate>
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                    <title>Water activates hidden aluminum sites to enhance zeolite catalysis</title>
                    <description>Researchers from the Innovation Academy for Precision Measurement Science and Technology (APM) of the Chinese Academy of Sciences have found that water can activate previously &quot;NMR-invisible&quot; aluminum in ultra-stable Y (USY) zeolite, a critical material in catalysis.</description>
                    <link>https://phys.org/news/2025-07-hidden-aluminum-sites-zeolite-catalysis.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Thu, 03 Jul 2025 08:37:03 EDT</pubDate>
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                    <title>Clay-based nanomaterials offer solution to capture carbon dioxide and combat climate change</title>
                    <description>One of Earth&#039;s most common nanomaterials is facilitating breakthroughs in tackling climate change: clay. In a new study, researchers at Purdue University, in collaboration with experts from Sandia National Laboratories, have potentially uncovered a game-changing method for using clay to capture carbon dioxide (CO2) directly from the air to help mitigate climate change.</description>
                    <link>https://phys.org/news/2025-06-clay-based-nanomaterials-solution-capture.html</link>
                    <category>Nanomaterials</category>                    <pubDate>Wed, 04 Jun 2025 14:06:04 EDT</pubDate>
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                    <title>Zeolite nanopore model links crystal size to metal cluster migration and catalyst performance</title>
                    <description>Extensive industrial catalytic applications have shown that the confined nano-channels of zeolites can precisely regulate molecular diffusion and metal cluster migration, effectively enhancing catalyst activity, selectivity, and stability.</description>
                    <link>https://phys.org/news/2025-05-zeolite-nanopore-links-crystal-size.html</link>
                    <category>Nanomaterials</category>                    <pubDate>Wed, 28 May 2025 14:38:03 EDT</pubDate>
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                    <title>Chemists identify active sites enabling direct syngas conversion to light olefins</title>
                    <description>Zinc chromite (ZnCrOx) oxides coupled with zeolites (OXZEO) have shown great promise as the catalyst for the direct conversion of syngas into light olefins. However, identifying the specific active sites for this reaction remains elusive due to the structural complexity of the ZnCrOx composite oxides.</description>
                    <link>https://phys.org/news/2025-05-chemists-sites-enabling-syngas-conversion.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Tue, 27 May 2025 15:13:03 EDT</pubDate>
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                    <title>Cobalt catalyst rivals platinum in key industrial reaction</title>
                    <description>Propane dehydrogenation is a key industrial route to producing propylene without relying on oil. However, its current production processes rely heavily on precious-metal catalysts such as Pt-based materials. Developing efficient alternatives using Earth-abundant metals has remained a challenge.</description>
                    <link>https://phys.org/news/2025-05-cobalt-catalyst-rivals-platinum-key.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Tue, 20 May 2025 15:29:03 EDT</pubDate>
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                    <title>Understanding carbon traps: Physical probing of a promising material shows exactly how it locks CO₂ into place</title>
                    <description>As industries seek innovative solutions for carbon capture, scientists have turned to advanced materials that efficiently trap and store carbon dioxide (CO₂) from industrial emissions.</description>
                    <link>https://phys.org/news/2025-05-carbon-physical-probing-material.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Tue, 13 May 2025 11:20:04 EDT</pubDate>
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                    <title>AI-powered advances unlock copper-zeolite catalysts for combating nitrogen oxide emissions</title>
                    <description>Increasingly stricter regulations on emissions from lean-burn engines, such as the Euro 7 standard, are approaching. This requires the development of catalytic materials that can reduce the toxic nitrogen oxides efficiently at low temperatures. Researchers at the Department of Physics at Chalmers University of Technology, together with industrial partner Umicore, now present a study showing how machine learning could help engines run cleaner.</description>
                    <link>https://phys.org/news/2025-04-ai-powered-advances-copper-zeolite.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Wed, 30 Apr 2025 11:56:04 EDT</pubDate>
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                    <title>Data-driven algorithm yields three unique ZIFs with high selectivity for greenhouse gas separation</title>
                    <description>A collaborative research effort between UNIST and the Korea Institute of Science and Technology (KIST) has led to the successful synthesis of three novel porous materials by leveraging a data-driven structure prediction algorithm. These newly developed materials, modeled after zeolites, represent metal-organic frameworks (MOFs) with exceptional selectivity in gas separation, particularly for carbon dioxide (CO₂).</description>
                    <link>https://phys.org/news/2025-04-driven-algorithm-yields-unique-zifs.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Tue, 29 Apr 2025 10:26:02 EDT</pubDate>
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                    <title>Cleaner fuels, greener industries: New approach synthesizes zeolites with diverse aluminum contents</title>
                    <description>A novel &quot;zeolite blending&quot; method has successfully produced CON-type zeolites with unprecedentedly high aluminum content, report researchers from the Institute of Science Tokyo. By combining multiple zeolite precursors to guide the synthesis process, this innovative strategy overcomes long-standing limitations in controlling aluminum content in zeolite frameworks. The proposed approach will open new possibilities for catalyst development across various industrial applications, including petrochemical processing, fine chemicals production, and environmental remediation.</description>
                    <link>https://phys.org/news/2025-03-cleaner-fuels-greener-industries-approach.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Thu, 27 Mar 2025 11:45:04 EDT</pubDate>
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                    <title>Novel porous material separates deuterium at elevated temperatures efficiently</title>
                    <description>A novel porous material capable of separating deuterium (D2) from hydrogen (H2) at a temperature of 120 K (-153°C) has been introduced. Notably, this temperature exceeds the liquefaction point of natural gas, which is 111 K (-162°C), by more than 10°C, thus facilitating large-scale industrial applications. This advancement presents an attractive pathway for the economical production of D2 by leveraging the existing infrastructure of liquefied natural gas (LNG) production pipelines.</description>
                    <link>https://phys.org/news/2025-03-porous-material-deuterium-elevated-temperatures.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Wed, 19 Mar 2025 11:49:31 EDT</pubDate>
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                    <title>Vulture fossil discovery reveals how volcanic deposits can preserve the microscopic details of animal tissues</title>
                    <description>An analysis of a 30,000-year-old fossil vulture from Central Italy has revealed for the first time that volcanic rock can preserve microscopic details in feathers—the first ever record of such a preservation.</description>
                    <link>https://phys.org/news/2025-03-vulture-fossil-discovery-reveals-volcanic.html</link>
                    <category>Paleontology &amp; Fossils</category>                    <pubDate>Tue, 18 Mar 2025 13:00:02 EDT</pubDate>
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                    <title>Aluminum atom mapping in zeolites promises better catalysts</title>
                    <description>Zeolites, crystalline materials widely used in the petrochemical industry, serve as pivotal catalysts in the production of fine chemicals, with aluminum being the source of active sites within zeolite structures. A research team from The Hong Kong Polytechnic University (PolyU) has revealed the precise location of aluminum atoms in the zeolite framework.</description>
                    <link>https://phys.org/news/2025-03-aluminum-atom-zeolites-catalysts.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Mon, 10 Mar 2025 12:18:04 EDT</pubDate>
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                    <title>High-entropy MOF enables efficient deuterium separation for clean energy</title>
                    <description>A research team affiliated with UNIST has successfully developed a new porous material for the efficient separation of deuterium, a primary fuel for nuclear fusion. The team, jointly led by Professors Wonyoung Cho and Hyunchul Oh in the Department of Chemistry at UNIST, published the results in Angewandte Chemie International Edition.</description>
                    <link>https://phys.org/news/2025-02-high-entropy-mof-enables-efficient.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Tue, 18 Feb 2025 11:47:02 EST</pubDate>
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                    <title>Water boosts catalytic recycling efficiency for plastic waste</title>
                    <description>Plastics are undeniably useful materials that have found their way into virtually all human activities. However, with yearly global plastic production exceeding 400 million tons, the environmental threat posed by increased plastic consumption and disposal, contributing to its pollution, is also bigger than ever. Considering that only one-tenth of all plastic waste is recycled, new technologies that can help tackle this growing problem are urgently required.</description>
                    <link>https://phys.org/news/2025-01-boosts-catalytic-recycling-efficiency-plastic.html</link>
                    <category>Polymers</category>                    <pubDate>Tue, 21 Jan 2025 11:41:04 EST</pubDate>
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                    <title>Foldable molecular paths mimic paper folding at nanoscale</title>
                    <description>The elegant simplicity of folding paper has inspired researchers to explore the possibility of replicating this flexibility at the molecular level. After extensive experimentation, they uncovered foldable molecular paths capable of reacting dynamically to their environment.</description>
                    <link>https://phys.org/news/2025-01-foldable-molecular-paths-mimic-paper.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Mon, 06 Jan 2025 12:31:22 EST</pubDate>
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                    <title>Novel MOF combines adsorption and dissolution for energy-efficient oxygen separation from argon</title>
                    <description>Efficient gas separation is vital in various industries, from medical applications to energy production. However, isolating oxygen from mixtures presents a significant technological challenge. Because many gases, including argon and oxygen, share similar physical properties, separating them is difficult.</description>
                    <link>https://phys.org/news/2024-12-mof-combines-adsorption-dissolution-energy.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Thu, 19 Dec 2024 07:59:03 EST</pubDate>
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                    <title>Novel zeolite structure demonstrates superior heavy oil cracking efficiency</title>
                    <description>Researchers have developed a new aluminosilicate zeolite, ZMQ-1, which features a unique intersecting meso-microporous channel system that is expected to enhance catalytic processes in the petrochemical industry.</description>
                    <link>https://phys.org/news/2024-12-zeolite-superior-heavy-oil-efficiency.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Thu, 12 Dec 2024 09:53:20 EST</pubDate>
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                    <title>New catalyst can convert methane into useful polymers</title>
                    <description>Although it is less abundant than carbon dioxide, methane gas contributes disproportionately to global warming because it traps more heat in the atmosphere than carbon dioxide, due to its molecular structure.</description>
                    <link>https://phys.org/news/2024-12-catalyst-methane-polymers.html</link>
                    <category>Polymers</category>                    <pubDate>Wed, 04 Dec 2024 05:00:01 EST</pubDate>
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                    <title>New hybrid catalyst developed for clean oxygen production</title>
                    <description>A research team at the Institute of Materials Chemistry at TU Wien, led by Professor Dominik Eder, has developed a new synthetic approach to create durable, conductive and catalytically active hybrid framework materials for (photo)electrocatalytic water splitting. The study is published in Nature Communications.</description>
                    <link>https://phys.org/news/2024-11-hybrid-catalyst-oxygen-production.html</link>
                    <category>Analytical Chemistry</category>                    <pubDate>Fri, 29 Nov 2024 12:15:36 EST</pubDate>
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