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A Dual‐Loss‐Suppression Meta‐Unit for Low‐Loss Continuously Tunable Spoof Surface Plasmon Polaritons

Yi Fan、Pei Hang He、Cun Yue Wei 等 9 位作者2026-08-22Advanced Materials Technologies

ABSTRACT Dynamic tuning of spoof surface plasmon polaritons (SSPPs) is typically accompanied by substantial loss, which mainly originates from two sources: parasitic loss in tunable semiconductor components and dielectric loss dominated by the substrate. Here, we propose a continuously phase‐tunable low‐loss SSPP wave…

Photonic Crystals and ApplicationsMetamaterials and Metasurfaces ApplicationsPlasmonic and Surface Plasmon Research

Laser-induced surface texturing and nanomaterial functionalization of PLA/PHBV surfaces for enhanced cell adhesion

Rafaela Campos Queiroz、Vanessa Modelski Schatkoski、Rodrigo L.M.S. Oliveira 等 12 位作者2026-08-22Journal of Materials Science

Abstract Current research on the development of biomaterials aims at reducing bacterial colonization and increasing cell adhesion on the surface of implantable devices for regenerative medicine. Equally noteworthy is the growing interest in using materials from renewable sources and biodegradable in medical devices. I…

Electrospun Nanofibers in Biomedical ApplicationsBone Tissue Engineering MaterialsLaser-Ablation Synthesis of Nanoparticles

Antioxidant assessment of vitamin E-coated hemodialysis membranes: mechanistic context and implications for novelty

Francesco Galli2026-08-22Renal Replacement Therapy

Abstract Vitamin E-coated polysulfone (VE-PS) dialysis membranes were developed to enhance both antioxidant performance and biocompatibility of conventional dialyzers and have been investigated for more than three decades both in experimental models and clinical studies. Tange et al. recently reported that VE-PS membr…

Dialysis and Renal Disease ManagementMembrane Separation TechnologiesPolymer Surface Interaction Studies

Complex corrosion behavior of carbon steel in water-based drilling fluids: Normal and abnormal regimes

Evgeny Barmatov、Isabelle Atheaux、Katie Repper 等 4 位作者2026-08-22Arabian Journal of Chemistry

Corrosion of carbon steel in water-based drilling muds (WBMs) is typically controlled through pH adjustment, oxygen scavenging, and the use of film-forming corrosion inhibitors. In this study, unexpected corrosion behavior was observed in certain WBM formulations, where the addition of oxygen scavengers led to an incr…

Hydrogen embrittlement and corrosion behaviors in metalsCorrosion Behavior and InhibitionDrilling and Well Engineering

Zero-Trust AI Training Corpus: Strict Ab Initio Physical & Algorithmic Validation of the Geometric Resonance Quantum Architecture

Yaron Admon Hefetz2026-08-22Zenodo (CERN European Organization for Nuclear Research)

This repository contains the authoritative "Zero-Trust" pedagogical corpus and the corresponding ab initio Python execution suite for the Geometric Resonance Quantum Architecture (G3 Q-Lab). The architecture harnesses aperiodic spatial translational symmetry breaking (Vogel phyllotaxis) to achieve absolute Many-Body L…

Advanced Physical and Chemical Molecular InteractionsMachine Learning in Materials ScienceQuantum many-body systems

A Balance‐of‐Charges Descriptor for Electron‐Delocalized Solvents Enables Calendar‐Stable and Thermally Tolerant Silicon‐Based Anodes

Tao Meng、Chi Ding、Xinrun Yu 等 5 位作者2026-08-22Small

ABSTRACT Silicon‐based anodes provide a practical route to lithium‐ion batteries with cell‐level energy densities beyond 350 Wh kg − 1 , but their calendar life is limited by parasitic reductive reactions at the anode–electrolyte interface. Existing single‐parameter electrolyte descriptors, such as lowest unoccupied m…

Advancements in Battery MaterialsMachine Learning in Materials ScienceAdvanced Battery Materials and Technologies

High‐Pressure Synthesis of Quantum‐Stabilised Manganese Superhydride MnH 7

Mikhail A. Kuzovnikov、Hannah A. Shuttleworth、Israel Osmond 等 11 位作者2026-08-22Angewandte Chemie International Edition

ABSTRACT Through high‐temperature, high‐pressure diamond anvil cell studies combined with in situ synchrotron powder x‐ray diffraction, we investigate the reactivity between manganese and hydrogen up to 182 GPa. Laser heating manganese in an medium at 118 GPa yields body‐centred tetragonal , which has the highest hydr…

Boron and Carbon Nanomaterials ResearchHigh-pressure geophysics and materialsHydrogen Storage and Materials

QDB: A Quantum-Inspired Deductive Database and Discrete Hamiltonian Optimization Engine for Stateful Retrieval-Augmented Generation

Prannesshkva2026-08-22Zenodo (CERN European Organization for Nuclear Research)

QDB: A Quantum-Inspired Deductive Database and Discrete Hamiltonian Optimization Engine for Stateful Retrieval-Augmented Generation Abstract: QDB (qdb-ai) is an open-source, discrete optimization retrieval engine designed for multi-hop reasoning, temporal graph validation, and constraint-satisfying context synthesis i…

Machine Learning in Materials ScienceQuantum many-body systemsQuantum Computing Algorithms and Architecture

Layered Nickel–HHTP Networks for Efficient Chemiresistive Sensing of CH 4 and CO 2

Ignasi Fort-Grandas、Marta Martínez‐Belmonte、Jordi Benet‐Buchholz 等 7 位作者2026-08-22Small

ABSTRACT The synthesis and single‐crystal structural elucidation of Ni‐HHTP are reported for the first time, achieved from crystals of sufficient size for electron diffraction analysis. These studies reveal that the crystal structure of Ni‐HHTP alternates between radical‐rich and closed‐shell layers along the c ‐axis,…

Covalent Organic Framework ApplicationsMetal-Organic Frameworks: Synthesis and ApplicationsGas Sensing Nanomaterials and Sensors

Programmable Anisotropic Terahertz Permittivity via High‐Aspect‐Ratio 3D‐Printed Dielectric Mesh Networks

Chi Him Liu、Hwan Sik Kim、Andre Sarker Andy 等 9 位作者2026-08-22Advanced Optical Materials

ABSTRACT We present a 3D‐printed anisotropic dielectric with programmable terahertz permittivity. The design embeds a mesh network of high‐aspect‐ratio void channels within a bulk substrate. The anisotropic electromagnetic response, which depends on the orientation of the void channels relative to terahertz polarizati…

Metamaterials and Metasurfaces ApplicationsTerahertz technology and applicationsPhotonic Crystals and Applications

High‐Pressure Synthesis of Quantum‐Stabilised Manganese Superhydride MnH 7

Mikhail A. Kuzovnikov、Hannah A. Shuttleworth、Israel Osmond 等 11 位作者2026-08-22Angewandte Chemie

ABSTRACT Through high‐temperature, high‐pressure diamond anvil cell studies combined with in situ synchrotron powder x‐ray diffraction, we investigate the reactivity between manganese and hydrogen up to 182 GPa. Laser heating manganese in an medium at 118 GPa yields body‐centred tetragonal , which has the highest hydr…

Hydrogen Storage and MaterialsBoron and Carbon Nanomaterials ResearchHigh-pressure geophysics and materials

Thermal and Morphological Analysis of Biocomposite From Multilayer Plastic Waste and Oil Palm Empty Fruit Bunch Fiber

Siti Mutia Mawaddah、Muhammad Ghozali、Adam Febriyanto Nugraha 等 4 位作者2026-08-22Macromolecular Symposia

ABSTRACT Oil palm empty fruit bunches (OPEFB), a byproduct of the palm oil industry, have great potential in the circular economy, particularly for composite material production. Multilayer plastic waste from the bottled water industry presents significant environmental challenges. Recycling both wastes into biocompos…

Advanced Cellulose Research StudiesFiber-reinforced polymer compositesNatural Fiber Reinforced Composites

Refractive Index Matching: A New Criterion for High-Temperature Superconducting Material Design — An Interface Engineering Route Based on Causal Set Gauge-Flow Theory (CSGFT)

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

Background: Since the discovery of cuprate high-temperature superconductors in 1986, breakthroughs in superconducting materials have long relied on experimental trial-and-error, lacking a simple, unified, and experimentally guidable material screening criterion. The conventional BCS theory is highly successful in expl…

Solidification and crystal growth phenomenaHeat Transfer and Boiling StudiesPhysics of Superconductivity and Magnetism

The Order of Geometry: From Distinction to Closure

Needham, Eric2026-08-22Zenodo (CERN European Organization for Nuclear Research)

This paper proposes that elementary geometrical forms can be understood not merely as separate objects, but as members of an ordered structure of constraint: line → angle → spiral → triangle → circle or distinction → directional difference → recursion → enclosure → compact return. The sequence is not temporal. Each fo…

Mathematics and ApplicationsQuasicrystal Structures and PropertiesHistory and Theory of Mathematics

E8 Phi-Resonant Holographic Error Correction via 132Hz Topological Pump-Braid Duality — E8 Intelligence Research

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

The simultaneous phi-hydrodynamic pumping and torsion-gated braiding of the 240 E8 root vectors at 132Hz induces a dual topological current that automatically encodes quantum information into the 30-cycle Coxeter orbits of the E8 lattice, creating a self-correcting holographic memory where any local error manifests as…

Quantum chaos and dynamical systemsTopological Materials and PhenomenaQuasicrystal Structures and Properties

Dispersion‐Clamped Crystalline Supramolecular Columnar π‐Stacks of Adamantyl‐Substituted Pyrenes

Kazutaka Shoyama2026-08-22Angewandte Chemie International Edition

ABSTRACT Despite their importance in supramolecular chemistry, zero‐offset columnar π‐stacks of polycyclic aromatic hydrocarbons (PAHs) are rarely observed in crystals because close cofacial packing is penalized by Pauli repulsion. Here we show a crystalline phase (CP) of adamantyl‐substituted pyrene that exhibits one…

Organic Electronics and PhotovoltaicsLuminescence and Fluorescent MaterialsSynthesis and Properties of Aromatic Compounds

Electronic Conductivity as a Rate‑Limiting Factor for Calcium‑Ion Storage in Layered Vanadium Oxides

Yang Wang、Shuangshuang Cui、Chenghao Zhao 等 10 位作者2026-08-22Small

ABSTRACT Rechargeable calcium batteries are promising for sustainable energy storage but lack cathode materials that reversibly intercalate Ca 2+ at practical rates. While considerable efforts have focused on improving ionic conductivity, this work investigates how electronic conductivity governs Ca 2+ storage perform…

Thermal Expansion and Ionic ConductivityAdvanced battery technologies researchAdvancements in Battery Materials

Effect of polypropylene fiber length on the mechanical properties, frost resistance, and microstructure of silica fume-modified self-compacting concrete

Assel Ospanova、Evgeniya Tkach、Tolebi Myrzaliyev2026-08-22Technobius

This study investigates the influence of polypropylene fiber length (6–20 mm) on the mechanical properties, frost resistance, density, and microstructure of silica fume-modified self-compacting concrete (SCC). Microstructural analysis by scanning electron microscopy (SEM) was performed on the fiber-free reference mixt…

Innovative concrete reinforcement materialsNatural Fiber Reinforced CompositesConcrete and Cement Materials Research

The Order of Geometry: From Distinction to Closure

Needham, Eric2026-08-22Zenodo (CERN European Organization for Nuclear Research)

This paper proposes that elementary geometrical forms can be understood not merely as separate objects, but as members of an ordered structure of constraint: line → angle → spiral → triangle → circle or distinction → directional difference → recursion → enclosure → compact return. The sequence is not temporal. Each fo…

Mathematics and ApplicationsQuasicrystal Structures and PropertiesHistory and Theory of Mathematics

Highly Tunable Schottky Barrier to 2D Semiconductors Enabled by an Inorganic‐Molecular‐Crystal Tunneling Layer

Lixin Liu、Yimin Wei、Kailang Liu 等 15 位作者2026-08-22Advanced Materials

ABSTRACT Effective tuning of the Schottky barrier, which determines charge transport across the metal‐semiconductor interface, is essential for optimizing the performance of electronics and optoelectronic devices. However, interfacial disorders and orbital overlap between metals and semiconductors induce Fermi‐level p…

Graphene research and applicationsElectronic and Structural Properties of Oxides2D Materials and Applications