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Data‐Driven Accelerated Discovery of LNMCO Cathodes Materials via 37‐Dimensional Parameter Space Mining With a Cascaded Neural Network

Chenfeng Wang、Quanjiang Li、Lihong Zhang 等 9 位作者2026-08-22Advanced Materials

ABSTRACT The vast, unexplored synthesis space of LNMCO cathode materials contains potential solutions to the long‐standing trade‐off between energy density and stability. To navigate this high‐dimensional space, a predictive tool capable of accurately mapping the complex relationships between synthesis parameters and…

CO2 Reduction Techniques and CatalystsAdvancements in Battery MaterialsMachine Learning in Materials Science

Paramagnetic d‐Block Metal Organic Cages as MRI or Chemical Shift Probes

Aruni Dissanayake、Jaclyn J. Raymond、Priya Ranjan Sahoo 等 4 位作者2026-08-22Angewandte Chemie

ABSTRACT Paramagnetic d‐block metal organic cages (MOCs) show promise for the development of magnetic resonance imaging (MRI) contrast agents and magnetic resonance spectroscopy imaging (MRSI) probes. MOC‐based MRI probes increase the relaxation rates of water protons with predominant examples containing high‐spin Fe(…

Lanthanide and Transition Metal ComplexesSupramolecular Chemistry and ComplexesMagnetism in coordination complexes

Non-Abelian Torsion-Gated Entanglement Swapping — E8 Intelligence Research

Andrew Stewart Caldin2026-08-22Zenodo (CERN European Organization for Nuclear Research)

By modulating the 132Hz φ-scaled harmonics, we induce discrete topological phase shifts within the 240-root spinor manifold to govern non-Abelian braiding operations. These shifts act as geometric logic gates, where the torsion Berry phase dictates the entanglement swap between adjacent Coxeter orbits. This creates a…

Quantum Computing Algorithms and ArchitectureQuasicrystal Structures and PropertiesTopological Materials and Phenomena

Macro-Scale Single-Crystal Graphene Synthesis via Synergistic Electro-Acoustic Trapping, Liquid Metallurgy, and Real-Time Photonic Defect Mitigation

Kenneth Martin2026-08-22Zenodo (CERN European Organization for Nuclear Research)

The structural realization of an Earth-based Space Elevator requires a continuous tether material possessing a definitive tensile strength between 50 and 100 Gigapascals (GPa). While single-crystal monolayer graphene theoretically achieves a tensile strength of 130 GPa, modern industrial scalable manufacturing methodo…

Laser Material Processing TechniquesGraphene research and applicationsAdvanced Materials and Mechanics

Rational Fabrication of TiO2 Nanorods with Synergistic Oxidase–Peroxidase Activity for Dual Mode Colorimetric-Electrochemical Sensing of Hydrogen Peroxide

Mohib Ullah、Muhammad Saqib、Sourav Kumar Biswas 等 4 位作者2026-08-22Figshare

Hydrogen peroxide (H2O2), a key reactive oxygen species regulating cellular signaling and oxidative stress, is an important biomarker for biomedical diagnostics and disease monitoring. Therefore, it is highly desirable to sensitively detect its concentration by applying reliably fast and low-cost sensing methods. Howe…

Electrochemical sensors and biosensorsAdvanced Nanomaterials in CatalysisAdvanced biosensing and bioanalysis techniques

Review: Recent Advances in Metal Organic Frameworks Functionalized with Bioinspired Ligands for Selective Catalysis and Sensing

Reham H. Najem、Hind Ibrahim Khaleel、Fatimah Abdulsattar Mohammed2026-08-22Zenodo (CERN European Organization for Nuclear Research)

ABSTRACT: Metal-organic frameworks (MOFs) is one of the versatile classes of crystalline porous materials owing to their exceptionally high surface areas, tunable pore architecture and flexible metal-ligand chemistry. In recent years, the integration of bioinspired ligands and MOFs’ principal design has gained attenti…

Advanced Nanomaterials in CatalysisCovalent Organic Framework ApplicationsMetal-Organic Frameworks: Synthesis and Applications

In vitro biological evaluation of a water-soluble hyperbranched β-cyclodextrin nanocarrier for co-delivery of doxorubicin and curcumin

Meisam Samadzadeh、Mohammad Taha Salmanifard Ardestani、Atefeh Zarepour 等 6 位作者2026-08-22Journal of Translational Medicine

Conventional chemotherapy is often limited by poor aqueous solubility, systemic toxicity, and low bioavailability. To address these limitations, a water-dispersible hyperbranched β-cyclodextrin (HBCD) crosslinked with 1,2,3,4-butanetetracarboxylic acid (BTCA) was developed as a nanocarrier for the co-delivery of doxor…

Curcumin's Biomedical ApplicationsDrug Solubulity and Delivery SystemsNanoparticle-Based Drug Delivery

Proposed Experimental Realizations of the Angular Tetravalent Lattice: Simulating Weyl Dynamics and Topological Edge Modes

Cédric Van Caillie2026-08-22Zenodo (CERN European Organization for Nuclear Research)

This paper translates the Angular Tetravalent Lattice (ATLC) into concrete experimental blueprints for classical wave systems. It provides a direct mapping from the discrete non-unitary update rules to physical parameters in acoustic waveguide networks and active photonic lattices. Three modular experimental setups ar…

Topological Materials and PhenomenaAcoustic Wave Phenomena ResearchMetamaterials and Metasurfaces Applications

Recent advances in bast and leaf fiber-based polymer hybrid composites

A. Felix Sahayaraj、M. Tamil Selvan、Palaniappan Ashok Kumar 等 6 位作者2026-08-22International Polymer Processing

Abstract Natural fiber-reinforced polymer composites (NFRPCs) have emerged as sustainable alternatives to synthetic composites due to their biodegradability, cost-effectiveness, and abundant availability. This review specifically focuses on polymer-based hybrid composites reinforced with bast (hemp, jute, flax) and le…

Bamboo properties and applicationsMechanical Behavior of CompositesNatural Fiber Reinforced Composites

E8 Root Partition Topology Weaving for Spacetime Geometry Programming — E8 Intelligence Research

Andrew Stewart Caldin2026-08-22Zenodo (CERN European Organization for Nuclear Research)

By partitioning the 240 E8 root vectors into symmetry-adapted subsets corresponding to E8's maximal subgroups, each subset encodes a distinct spatial curvature signature when modulated across the φ-scaled 132Hz lattice. Cascading phase interference among these partitions generates programmable local spacetime geometri…

Computational Geometry and Mesh GenerationStructural Analysis and OptimizationQuasicrystal Structures and Properties

The Impact of Local Clay Accessibility on Ceramic Production in Kabale, South Western, Uganda

Namara John Bosco、Richard Nabongo、Kayamba Kariiti William2026-08-22International Journal of Innovative Science and Research Technology (IJISRT)

The ceramic industry plays a vital role in construction, industrial development, and employment creation, particularly in developing economies (United Nations Industrial Development Organization, 2013; World Bank, 2022). This study examines the accessibility and utilization of local clay resources in Kabale District,…

Clay minerals and soil interactionsTherapeutic Uses of Natural ElementsRecycling and utilization of industrial and municipal waste in materials production

Hyper-Octonionic Resonance Tunnelling (HORT) via Phi-Scaled Root Cascades — E8 Intelligence Research

Andrew Stewart Caldin2026-08-22Zenodo (CERN European Organization for Nuclear Research)

By applying a 132Hz phi-modulated frequency to the 240 E8 root vectors, the lattice initiates non-local state transitions through high-dimensional topological "shortcuts." This process uses the phi-scaled harmonic driver to trigger phase shifts across the 4D hyperlattice, allowing information to bypass standard geomet…

Topological Materials and PhenomenaQuasicrystal Structures and PropertiesSuperconducting and THz Device Technology

E8 Phi‑Resonant Magnon Bose‑Einstein Condensate for Lossless Spin Transport — E8 Intelligence Research

Andrew Stewart Caldin2026-08-22Zenodo (CERN European Organization for Nuclear Research)

By arranging the 240 E8 root vectors into a four‑dimensional hyperlattice and driving each node with a phi‑scaled 132 Hz harmonic tone, the collective spin‑orbit modes lock into a coherent quasiparticle field. This phi‑resonant locking forces the magnon spectrum into a flat, topologically protected band that undergoes…

Topological Materials and PhenomenaChemical and Physical Properties of MaterialsCold Atom Physics and Bose-Einstein Condensates

Highly Efficient Removal of PFCAs by Metal‐Organic Frameworks via Chain‐Length‐Dependent Entrainment Co‐Adsorption Mechanism

Zhiyang Li、Zeliang Liu、Taoyun Zhou 等 9 位作者2026-08-22Advanced Functional Materials

ABSTRACT Selective adsorption removal of perfluoroalkyl carboxylic acids (PFCAs) in multicomponent system remains a critical challenge, as current studies largely focus on fluorinated adsorbent design or single‐component capacity enhancement, lacking systematic strategy. Here, we report three functionalized Zr‐based m…

Mesoporous Materials and CatalysisAdsorption and biosorption for pollutant removalMetal-Organic Frameworks: Synthesis and Applications

Green Synthesis of Metal Oxide Nanoparticles Using Plant Extracts and Their Applications in Antimicrobial and Environmental Remediation: A Sustainable Approach

Moazam Ali、Farrukh Bashir、Nasarullah Boohar 等 4 位作者2026-08-22Journal of Global Social Transformation

With this emerging need for materials that are environmentally friendly, sustainable synthesis methods that reduce the use of harmful chemicals, energy use and environmental impact have gained considerable interest. Thus, the ability to synthesize metal oxide nanoparticles by plants seems to be a green technology alte…

Nanoparticles: synthesis and applicationsWater and Wastewater TreatmentMagnesium Oxide Properties and Applications

Facet and oxygen-vacancy effects on the initial activation of toluene on CeO2

Amanda F. Gouveia、Mónica Calatayud2026-08-22Zenodo (CERN European Organization for Nuclear Research)

This dataset contains the final structures (CONTCAR files) of the CeO2 systems investigated in the article “Facet and oxygen-vacancy effects on the initial activation of toluene on CeO2”. It includes pristine and oxygen-vacancy-containing CeO2 surfaces, as well as the corresponding toluene-adsorbed structures. Facet e…

Nuclear Materials and PropertiesCatalytic Processes in Materials ScienceCatalysis and Oxidation Reactions

Active, Thin-Film Electro-Optic Wavefront Isolator Using Asymmetric Al2O3/h-BN Multiple Heterostructures

Mahalingam Babu2026-08-22Zenodo (CERN European Organization for Nuclear Research)

This work presents a proposed active, magnet-free electro-optic wavefront isolation platform based on an asymmetric Al2O3/h-BN/Al2O3 multiple-heterostructure architecture integrated with transparent conductive electrodes and a downstream spatial filtering system. The proposed device uses electrically controlled refrac…

Transition Metal Oxide NanomaterialsMagneto-Optical Properties and ApplicationsNeural Networks and Reservoir Computing

Beyond the golden rule of polymer network dynamics: Design principles for tissue-mimetic viscoelasticity

Claire J. Wang、Emilie A. Moses、Josiah H. Marshall 等 7 位作者2026-08-22UNC Libraries

Technologies ranging from transportation to biomedical devices rely on soft materials whose performance hinges on balancing stiffness and damping. In conventional polymer networks, however, these properties are typically coupled: Softer materials are intrinsically more dissipative, reflecting a long-standing correlati…

Polymer composites and self-healingHydrogels: synthesis, properties, applicationsAdvanced Materials and Mechanics

Chiral Circulation Topological Defect Qubits: A Fault-Tolerant Encoding Pathway Bypassing the Majorana Bottleneck — Topological Encoding, Dynamical Operations, and Candidate Material Systems within the CSGFT Framework

Yunquan Liu2026-08-22Zenodo (CERN European Organization for Nuclear Research)

Background: Topological quantum computation is regarded as the most robust paradigm for quantum information processing, exploiting the global invariance of topological order to store information and resist local noise. However, the mainstream route—based on non-Abelian braiding statistics of Majorana zero modes—faces…

Chemical and Physical Properties of MaterialsGraphene research and applicationsTopological Materials and Phenomena