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Electron Pathway Phase Transition (EPPT) in Quantum Materials

Jincheng Zhang2026-08-17Zenodo (CERN European Organization for Nuclear Research)

In condensed matter physics, the electronic structure of crystalline solids is traditionally described by the band theory, which treats electrons as waves propagating through a periodic potential. Recent advances in low-dimensional materials have revealed that the underlying electron trajectories, denoted as Γ, can un…

Electronic and Structural Properties of OxidesTopological Materials and Phenomena2D Materials and Applications

Postmodern Physics of Hamzah Information.(185)

Sajad Jalali2026-08-17Zenodo (CERN European Organization for Nuclear Research)

تحلیل بنیادین، بازنویسی تانسوری و اثبات جامعِ کامل الاستیسیته پویای منفی در شبکه‌های پلیمری تحت کشش موضعی (Negative Dynamic Elasticity in Locally Strained Polymer Networks) در بستر فیزیک اطلاعات حمزه (HIP-1155) به شرح زیر است: ۱. مقدمه و پارادوکس‌های الاستیسیته پویای منفی در تقاطع ترمودینامیک کلاسیک کشسانی، فیزیک ماده…

Theoretical and Computational PhysicsAdvanced Materials and Semiconductor TechnologiesAdvanced Physical and Chemical Molecular Interactions

Title: Internal Information Flow in Quantum Matter (IIFQM)

Jincheng Zhang2026-08-17Zenodo (CERN European Organization for Nuclear Research)

In conventional condensed‑matter physics, transport phenomena are usually described by electric current J_E and heat current J_Q, each associated with the flow of charge or energy. In this work we introduce a fundamentally distinct quantity, the internal information current J_I, which characterises the spatial transpo…

2D Materials and ApplicationsQuantum many-body systemsTopological Materials and Phenomena

Study on High‐Temperature Oxidation Kinetics and Layered Oxidation Behavior of X70 Pipeline Steel

Tian Xia、Zhichao Li、Xiangcheng Dong 等 4 位作者2026-08-17steel research international

This study systematically investigates the effects of heating rate and temperature on the high‐temperature oxidation behavior of industrial X70 pipeline steel in the range from 700 to 1000 °C. Thermogravimetric experiments were conducted to simulate the heating and holding processes during hot rolling, combined with c…

Microstructure and Mechanical Properties of SteelsHigh-Temperature Coating BehaviorsHydrogen embrittlement and corrosion behaviors in metals

Dual‐Targeting Biomimetic Nanozymes Loaded Microneedle Patch Promotes Scarless Wound Healing Through Anti‐Inflammatory and Anti‐Fibrotic Effects

Hongyi Zhang、Jinwei Li、Shan Hua 等 15 位作者2026-08-17Advanced Science

ABSTRACT During skin wound healing, complex interactions among multiple cell types and dynamic phase evolution make it difficult for biomaterial scaffolds to balance late‐healing and over‐healing, often resulting in delayed wound healing, persistent inflammatory responses, and hypertrophic scars due to spatiotemporal…

Nanoplatforms for cancer theranosticsAdvanced Nanomaterials in CatalysisWound Healing and Treatments

Galactosylated Nanoparticles: Redefining Sugar-Driven Mechanisms in SERS, Metabolism, and Immune Modulation

Ting-Yu Cheng、Li‐Xing Yang、Yu‐Cheng Chin 等 6 位作者2026-08-17ACS Applied Materials & Interfaces

Galactosylated nanoparticles (Gal-NPs) are a new class of nanoplatforms linking molecular recognition, materials, and biomedical functions. This Review presents a galactose-centered framework in which galactose serves as a bioactive motif that influences nano-bio interactions and cellular responses. We present synthet…

Nanoparticle-Based Drug DeliverySupramolecular Self-Assembly in MaterialsNanoplatforms for cancer theranostics

Broadband and wide-temperature dissipation continuum in a supramolecular damping organohydrogel for motion-tolerant bioelectronics

Ning Zhou、Sen Liu、Zhouyue Lei 等 4 位作者2026-08-17Nature Communications

High-fidelity signal acquisition is the cornerstone of personalized healthcare, but wearable bioelectronics remain vulnerable to motion artifacts, which contaminate the electrophysiological signals. Conventional materials rely on discrete viscoelastic relaxation mechanisms, resulting in narrow damping bandwidths and h…

Advanced Sensor and Energy Harvesting MaterialsPolymer composites and self-healingAdvanced Materials and Mechanics

Quantum Materials Information Condensed Matter

Jincheng Zhang2026-08-17Zenodo (CERN European Organization for Nuclear Research)

This paper proposes a radical new paradigm in condensed matter physics – the concept of "information condensed matter." It posits that information, rather than solely being a computational construct, can itself manifest as a condensed phase, analogous to traditional matter. This framework is built upon the core idea t…

Quantum many-body systemsMachine Learning in Materials ScienceQuantum Computing Algorithms and Architecture

Quantum Matter Temporal Order (QMTO)

Jincheng Zhang2026-08-17Zenodo (CERN European Organization for Nuclear Research)

This paper introduces the concept of Quantum Matter Temporal Order (QMTO), proposing a fundamental shift in our understanding of materials science. Traditionally, materials have been primarily characterized by their spatial arrangements – crystalline structures, amorphous solids, etc. However, we posit that a crucial,…

Quantum many-body systemsTopological Materials and PhenomenaQuasicrystal Structures and Properties

Mechanical properties of thermoset composites based on woven fabric from recycled carbon fibre yarn

Mir Mohammad Badrul Hasan、Anwar Abdkader、Thomas Gereke 等 5 位作者2026-08-17Journal of Composite Materials

Although hybrid yarns containing recycled carbon fibres (rCF) and thermoplastic fibres offer significant potential for sustainable composites, their use in thermoset composites remains challenging due to fibre shortening, poor inter-fibre cohesion, and difficulties in producing textile reinforcements with high rCF con…

Fiber-reinforced polymer compositesMechanical Behavior of CompositesNatural Fiber Reinforced Composites

Research on Preparation Processes of Thin-Film Solar Cell Materials

Jiahao Deng2026-08-17Applied and Computational Engineering

Currently, the photovoltaic efficiency and cost control of crystalline silicon solar cells are constrained. Meanwhile, thin-film solar cells have drawn considerable attention due to cost-effectiveness and superior conversion efficiency. This paper presents a comparative analysis of the material properties and conventi…

Chemical and Physical Properties of MaterialsChalcogenide Semiconductor Thin FilmsSilicon and Solar Cell Technologies

FEM-based plasma equilibrium reconstruction for transient and off-normal phases in KSTAR

Jeongwon Lee、Jayhyun Kim、J.G. Bak 等 9 位作者2026-08-17Fusion Engineering and Design

In this study, we developed a finite element method (FEM)-based equilibrium reconstruction code for the KSTAR tokamak to analyze plasma behavior during highly transient phases, including early startup, pre-disruption, and vertical displacement events (VDEs), where conventional equilibrium fitting (EFIT) reconstruction…

Magnetic confinement fusion researchSuperconducting Materials and ApplicationsFusion materials and technologies

Shortwave-Infrared (SWIR) Tetrabenzannulated Silicon-Rhodamine

Danyang Wang、Bingya Wang、Weixi Geng 等 16 位作者2026-08-17Journal of the American Chemical Society

Abstract In vivo imaging is the key to the success of transformative biomedical technologies. Currently, robust dyes absorbing and emitting in the shortwave infrared (SWIR) spectral region, i.e., 1000 nm and beyond, as well as a standard protocol to evaluate their performance in in vivo imaging, are sought after. Here…

Luminescence and Fluorescent MaterialsNanoplatforms for cancer theranosticsLanthanide and Transition Metal Complexes

Quantum Materials Information Condensed Matter

Jincheng Zhang2026-08-17Zenodo (CERN European Organization for Nuclear Research)

This paper proposes a radical new paradigm in condensed matter physics – the concept of "information condensed matter." It posits that information, rather than solely being a computational construct, can itself manifest as a condensed phase, analogous to traditional matter. This framework is built upon the core idea t…

Quantum many-body systemsMachine Learning in Materials ScienceQuantum Computing Algorithms and Architecture

Effect of Local Dynamics in Salt-Doped POEM as a Function of Side-Chain Length: Insights from Semi-Generic Coarse-Grained Modeling

Yuanhao Zhang、Lisa M. Hall2026-08-17Macromolecules

Abstract Salt-doped poly(oligo-oxyethylene methyl ether methacrylate) (POEM), in which poly(ethylene oxide) (PEO) side chains are attached to a methacrylate backbone, has attracted attention as a solid polymer electrolyte because its architecture reduces crystallinity compared with linear PEO. Prior work showed that c…

Fuel Cells and Related MaterialsAdvanced Battery Materials and TechnologiesConducting polymers and applications

Phi‑Modulated E8 Lattice Reveals Hidden Structure of Odd Perfect Numbers — E8 Intelligence Research

Andrew Stewart Caldin2026-08-17Zenodo (CERN European Organization for Nuclear Research)

By embedding a 132 Hz phi‑modulated wave into the braided soliton knots formed from the 240 E8 root vectors, the system self‑organizes into a discrete hyperbolic lattice whose symmetry group is phi‑invariant. This lattice yields a natural mapping between the root‑vector adjacency and the divisor graph of odd perfect n…

Nonlinear Photonic SystemsQuasicrystal Structures and PropertiesQuantum Mechanics and Non-Hermitian Physics

Non-local optical response of nanostructured surfaces from scattering theory

Johannes Fiedler2026-08-17Journal of Physics Communications

Abstract Nanostructured materials are commonly described by local effective permittivities inferred from far-field propagation. However, near-field interactions and large parallel wave vectors probe spatial dispersion and limit the validity of purely local response models. Here, we develop a non-local effective descri…

Plasmonic and Surface Plasmon ResearchMetamaterials and Metasurfaces ApplicationsOptical Coatings and Gratings

Compression Characterization of Multi-Shore and Functionally Graded Silicone-Infilled Kelvin-Cell Lattices

Hamdi Kuleyi̇n、Altuğ Uşun2026-08-17Adıyaman Üniversitesi Mühendislik Bilimleri Dergisi

In this study, Kelvin-cell lattices fabricated via vat polymerization were combined with RTV-2 silicone infill to create hybrid and functionally graded architectures. Four silicone Shore hardness levels were investigated to quantify the influence of infill hardness, followed by functionally graded designs using the ha…

Cellular and Composite StructuresElectronic Packaging and Soldering TechnologiesAdvanced ceramic materials synthesis

Sparse-Wire Diagnosis of Hinge-Localized States in Wannier Tight-Binding Hamiltonians

Chengtian Liang、Xuanting Hong2026-08-17Preprints.org

Hinge states are a characteristic boundary manifestation of three-dimensional higherorder topological phases, but identifying them in realistic Wannier tight-binding models requires a sequence of choices that is rarely automated: selection of a target bulk gap, construction of multiple mixed-boundary geometries, spars…

Chemical and Physical Properties of MaterialsQuantum many-body systemsTopological Materials and Phenomena

Mechanism-Specific Fouling Mitigation via Tunable Resonance-Based Magnetic Vibrations in Ultrafiltration Membranes

Jasneet Pala、S. Nima Mahmoodi、Milad Rabbani Esfahani2026-08-17ACS ES&T Water

Abstract Fouling remains one of the most significant challenges in membrane-based separation processes, reducing productivity and increasing operational costs. This study introduces resonance-based magnetic membrane vibration as a nondestructive, real-time antifouling strategy, where membranes are excited at their nat…

Membrane Separation TechnologiesPolymer Surface Interaction StudiesMembrane-based Ion Separation Techniques