⚛️ Nano Research The development of electrolyte system paves way on advancing ZMBs. The fundamentals need to be addressed: (1) the universal relationship between the optimal concentration of additives and physiochemical properties of electrolyte; (2) the formation mechanism of SEI by additives; (3) the relation between additives and Zn (002) texture; (4) the effects of additives on cathode materials. Read the article summary from the Nano Research , a world-class nanoscience journal published by Tsinghua University Press to learn more. Read now: https://lnkd.in/eMDV89Sj #nanoscience
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Discover a new method for control the hydrophilicity of the #polydimethylsiloxane (PDMS) layer ❗ 🌟 #Electron beam #irradiation enables precise #hydrophilicity and #hydrophobicity regulation on silicon microspheres and silicone rubber #coatings. ✉ Dr. Yanlong Gu & Dr. Jiang Huang at Huazhong University of Science and Technology 👉https://lnkd.in/gYsE5YGx Royal Society of Chemistry, Engineering #RSCEng, Materials #RSCMat
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Templating Calcium Phosphate onto Graphene Oxide Sheets: Journal of Colloid and Interface Science paper shows how to grow Calcium Phosphate onto single dispersed sheets of Graphene Oxide
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I am pleased to report that our research on nanocomposites, conducted in collaboration with Dr. Rasool Mohsenzadeh’s team, has been published in the American Chemical Society (ACS) journal. This publication is in one of the leading journals in the chemistry field and highlights our work's significance and impact. The paper is available for review here: DOI: 10.1021/acsami.4c02797. #Polymers #Nanocomposites #Nanoparticles #Image_Processing #Computer_Vision
Morphology-Driven Nanofiller Size Measurement Integrated with Micromechanical Finite Element Analysis for Quantifying Interphase in Polymer Nanocomposites
pubs.acs.org
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🚙 Electric vehicles and 🔋 battery technology are currently the focal points. Spend 45 minutes to get the expert insights of Dr. Barnum and Weichen about how the particle properties of battery materials impact their performance characteristics 🧐 . #ev #batterytechnology
Are you ready to supercharge your #batteries which can last longer? 🚀Join our upcoming webinar, "Advancing Battery Performance Through Particle Size and Shape Analysis" on Wednesday, July 17, 2024 | 10:00 - 11:00 EDT. 👉Register now: https://lnkd.in/gmJvDUP4 ABOUT SPEAKERS 👩🔬Beverly Barnum, PhD in Inorganic Chemistry from the University of Pennsylvania. 𝗧𝗼𝗽𝗶𝗰: Importance of Particle Size and Shape in Battery Materials Analysis 👨🔬Weichen Gan, MS in Material Science from the University of Florida. 𝗧𝗼𝗽𝗶𝗰: Advanced Size and Shape Analysis Solutions for Batteries #Bettersize #Bettersizewebinar #batterymaterials #energystorage #batterylifespan #batteryperformance #LIBs #EVbattery #ElectrodeMaterials
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🔍 Delving deep into electrochemical quartz crystal microbalance (EQCM) analysis of electrode materials: I am delighted to announce the publication of my latest article, 'Motional Resistance as Highly Selective Descriptor to Probe Dynamic Formation of Surface Films on Zinc Anode', now available as open access in #Batteries_&_Supercaps! 📚 This collaborative research introduces a novel methodology utilizing changes in mass and motional resistance descriptors to elucidate the complex interfacial dynamics that govern zinc metal anodes in aqueous electrolytes. This advancement significantly pushes the boundaries in optimizing zinc-based electrochemical systems. Explore the full article here: [https://lnkd.in/gfb8iU8Y]. #OpenAccess #ResearchImpact #AcademicPublishing #Aqueous_Zinc_Batteries
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Discover a new method for control the hydrophilicity of the #polydimethylsiloxane (PDMS) layer ❗ 🌟 #Electron beam #irradiation enables precise #hydrophilicity and #hydrophobicity regulation on silicon microspheres and silicone rubber #coatings. ✉ Dr. Yanlong Gu & Dr. Jiang Huang at Huazhong University of Science and Technology 👉https://lnkd.in/g5kNG22K Royal Society of Chemistry, Engineering #RSCEng, Materials #RSCMat
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I jut wanna say that we were fully successfull to synthesizing the novel Quantum dots through natural resources as a Carbon Quantum Dots (CQDs) with less than 5 nanometers diameter ( Acoording to the TEM analysis average 2.5nm) with a lots of properises such as antibacterial, fluorescent and enhancing surface hydrophilicity. We synthesized this nanoparticles in order to surface modification of organic materials and hydrophob polymers.
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👉 #Highlycited Paper 📜 Exploring the Influence of #Synthesis Parameters on the #Optical Properties for Various #CeO2 NPs 👥 Dr. Violeta Melinte et al. from Petru Poni Institute of Macromolecular Chemistry 🔗 Read more at: https://lnkd.in/efqz_kbt #openaccess #nanomaterials
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