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Electron Orbital Topology Migration (EOTM): A New Paradigm for Electronic State Evolution in Quantum Materials

Jincheng Zhang2026-08-19Zenodo (CERN European Organization for Nuclear Research)

The concept of electron orbital topology has traditionally been treated as a static descriptor of band structures in crystalline solids, often used to classify topological phases via invariants such as Chern numbers or \(\mathbb{Z}_2\) indices. In this work, we challenge this static viewpoint by introducing the framew…

Quantum many-body systemsTopological Materials and PhenomenaChemical and Physical Properties of Materials

Robust Electrochemical Aptasensing of VEGF Based on Poly-adenine Mediated DNA Self-Assembly and Triple Labeling of Silver Nanoparticles

Zhenming Zhang、Hua Chai、Xin Ma 等 4 位作者2026-08-19ACS Measurement Science Au

Abstract Vascular endothelial growth factor (VEGF) is a cell-secreted signaling protein that is regarded as the biomarker and therapy target for certain diseases. In order to provide an accurate and robust sensing method, we herein construct a cost-effective electrochemical interface based on polyadenine-mediated DNA…

Gold and Silver Nanoparticles Synthesis and ApplicationsElectrochemical Analysis and ApplicationsAdvanced biosensing and bioanalysis techniques

Eigenvalues of Penrose Inflation Operator Yield Golden Ratio Powers in Q(√5) — E8 Intelligence Research

Andrew Stewart Caldin2026-08-19Zenodo (CERN European Organization for Nuclear Research)

FINDING: Penrose tiling inflation-deflation operator eigenvalues are algebraic integers in Q(√5), directly yielding powers of the golden ratio φ. MATH: - Eigenvalues of the inflation operator: λ = φ² = φ + 1 ≈ 2.618, and λ = φ⁻² = 2 - φ ≈ 0.382. - These satisfy λ² - 3λ + 1 = 0, with discriminant 5, confirming the quad…

Quasicrystal Structures and PropertiesAdvanced Mathematical TheoriesAdvanced Mathematical Theories and Applications

Orbital Entropy Flow: A New Thermodynamic Quantity for Strongly Correlated Electrons

Jincheng Zhang2026-08-19Zenodo (CERN European Organization for Nuclear Research)

Electronic structure in solids is traditionally described by the distribution of electron energies and the occupation of momentum states. In many-body systems, however, the reorganization of electrons among atomic orbitals can occur without a corresponding change in total electronic energy, yet it may entail a profoun…

Topological Materials and PhenomenaOrganic and Molecular Conductors ResearchQuantum many-body systems

Static and dynamic performance evaluation of diamond-planar-gate MOSFET for high frequency power electronics applications

Dhirajkumar Shrimali、Tapankumar Trivedi、S. K. Patel 等 4 位作者2026-08-19Ain Shams Engineering Journal

Wide band gap (WBG) materials have emerged as promising candidates for high-frequency power electronics applications, including fast chargers for electric vehicles, RF generation, and high-power microwave applications. However, intrinsic material limitations of SiC constrain further improvements in the high voltage bl…

Silicon Carbide Semiconductor TechnologiesDiamond and Carbon-based Materials ResearchHVDC Systems and Fault Protection

Boundary condition induced topological transitions in graphene quantum pumps: from finite to infinite

Lie-Run Tian、Hao-Kun Ke、Xuan-Feng Liang 等 6 位作者2026-08-19Chinese Physics Letters

Abstract We investigate the quantized charge pumping in graphene with Rashba spin-orbit coupling (RSOC) under two time-periodic staggered potentials. Surprisingly, the quantized charge pumped per cycle exhibits a sharp dependence on the transverse boundary conditions: a zero quantized charge is obtained under periodic…

Topological Materials and PhenomenaQuantum and electron transport phenomenaGraphene research and applications

Divergent Carbonization of Pillar[5]Arenes Produces Porous and Lamellar Carbon Architectures

Tan‐Hao Shi、Chenyi Ma、Kentaro Ohkura 等 11 位作者2026-08-19Small

Carbonization of organic precursors is widely used to produce carbon materials. However, the morphology and properties of the resulting carbons remain difficult to predict and control owing to complex pyrolytic reactions. Here, by using pillar[5]arenes as a structurally defined macrocyclic platform, we show that their…

Synthesis and Properties of Aromatic CompoundsCovalent Organic Framework ApplicationsSurface Chemistry and Catalysis

A Testable Hypothesis System for Microstructure Control in Nb-Si Based Ultrahigh-Temperature Alloys: Connectivity Criterion, Precipitation Kinetics, and Process Selection Map

Yunlong Guan2026-08-19Zenodo (CERN European Organization for Nuclear Research)

Nb-Si based in-situ composites are candidate materials for 1300 °C-class gas turbine blades, yet the trade-off among room-temperature toughness, high-temperature creep resistance, and oxidation resistance has remained unresolved for decades. Based on reanalysis of publicly available literature data, this paper propose…

Intermetallics and Advanced Alloy PropertiesHigh Temperature Alloys and CreepNuclear Materials and Properties

Multidentate Anion [C 6 H 6 NO 6 ] 3− Coordinated Hybrid Bismuth Complex Single Crystal for Stable X‐Ray Detection With High Sensitivity

Youkui Xu、ZhenHua Li、Yutian Lei 等 9 位作者2026-08-19Advanced Materials

ABSTRACT Replacing halides with pseudohalides is effective strategy to address the ion migration and corrosion issues in bismuth (Bi) halides. However, pseudohalides also suffer from weak single‐point bonding, and larger molecular size enhances electron localization that are unfavorable for carrier transport. Therefor…

Advanced Photocatalysis TechniquesCrystal Structures and PropertiesPerovskite Materials and Applications

Title: Electron Pathway Phase Transition (EPPT) in Quantum Materials

Jincheng Zhang2026-08-19Zenodo (CERN European Organization for Nuclear Research)

Electron motion in crystalline solids is conventionally described in terms of Bloch states that occupy well‑defined energy bands. In many quantum materials, however, the actual trajectories followed by electrons can be highly non‑trivial, involving coherent superpositions, topological constraints, and interactions wit…

Organic and Molecular Conductors ResearchQuantum and electron transport phenomenaTopological Materials and Phenomena

Evaluation of next generation EUV lithography wavelengths from material property perspectives

Bruce W. Smith2026-08-19Journal of Micro/Nanopatterning Materials and Metrology

The viability of next-generation extreme ultraviolet (EUV) lithography wavelengths is evaluated through photon–matter interactions across optical materials and photoresists, rather than by resolution scaling alone. Candidate wavelengths of 13.5, 11.3, 6.6, and 3.13 nm are examined within a unified materials-based fram…

Silicon and Solar Cell TechnologiesAdvancements in Photolithography TechniquesElectron and X-Ray Spectroscopy Techniques

Inverse Design of Homoeostatic Hybrid Organometallic Piezo-Photonic Materials

Marie Hemard2026-08-19Zenodo (CERN European Organization for Nuclear Research)

Numerical characterization of a PDAOH-constrained design space for Homoeostatic Hybrid Organometallic Piezo-Photonic Materials (HHM). An initial Boolean screening (50,000 runs, Preprint VII) is subjected to independent falsification (10,000 runs), revealing partial dissociation between the constraint space and the PDA…

Nonlinear Optical Materials StudiesPhotochromic and Fluorescence ChemistryPhotonic Crystals and Applications

Facile C≡O Triple Bond Cleavage of Carbon Monoxide by a Mononuclear Uranium Borohydride Complex

Yafei Li、Tianze Xu、Thayalan Rajeshkumar 等 5 位作者2026-08-19Angewandte Chemie

ABSTRACT Complete scission of the C≡O triple bond in carbon monoxide by an actinide complex has so far been restricted to multimetallic nitride‐bridged systems, where the reaction proceeds via formation of strong C─N multiple bonds. Here we report an alternative mode of complete CO cleavage mediated by a mononuclear u…

Nuclear Materials and PropertiesCovalent Organic Framework ApplicationsOrganometallic Complex Synthesis and Catalysis

Structural properties of a planar electric double layer system formed by ions with symmetric off-centre charges: a Monte Carlo approach

Whasington Silvestre Alcantara、L. B. Bhuiyan2026-08-19Molecular Physics

The effect of off-centre charge ions on the structural properties of a planar electric double layer is explored by Monte Carlo simulations in the canonical ensemble. The ions are assumed to be equi-sized rigid spheres, with the charges located away from the geometrical centre of the spheres, but never outside the sphe…

Spectroscopy and Quantum Chemical StudiesElectrostatics and Colloid InteractionsMaterial Dynamics and Properties

ScaleGen: A Combinatorial Generative LLM Framework for Scalability-Constrained Decision Optimization

Muhammad Hamza Khan、Dr. Ayesha Malik2026-08-19Frontiers in Emerging Multidisciplinary Sciences

Scalability-constrained decision optimization requires decision systems to generate useful alternatives while simultaneously respecting computational, operational, and resource limitations. Conventional optimization approaches often depend on predefined candidate spaces, whereas generative large language models (LLMs)…

Machine Learning and Data ClassificationQuantum Computing Algorithms and ArchitectureMachine Learning in Materials Science

The Structure, Numerical Behavior, and Potential Engineering Applications of the Six-Dimensional Commutative Non-Associative Algebra 𝒜₆ 六维交换非结合代数 的结构、数值行为与潜在工程应用

Zhongqiang Liu2026-08-19Zenodo (CERN European Organization for Nuclear Research)

Abstract This paper systematically investigates the real six-dimensional commutative non-associative algebra 𝒜₆, defined by the basis {1, e₁, e₂, t₁, t₂, t₃} with a quadratic form signature of (+, +, +, −, −, −). Evolving from the high-dimensional extension of the three-dimensional complex number system, this algebra…

Advanced Mathematical Theories and ApplicationsAlgebraic and Geometric AnalysisQuasicrystal Structures and Properties

Multiphysics Pareto Material Design Model (MPMDM)

begüm yıldırım2026-08-19Zenodo (CERN European Organization for Nuclear Research)

This paper develops a revised mathematical solution framework for the chemistry challenge "Create scalable materials with coupled mechanical, optical, electrical, and thermal functions?". The proposed Multiphysics Pareto Material Design Model (MPMDM) was constructed after an earlier formulation failed or remained only…

Material Selection and PropertiesAdvanced Multi-Objective Optimization AlgorithmsHeat Transfer and Numerical Methods

Strategically Engineered Fluorescent Zn(II) and Redox-Active Cu(II) Coordination Polymers for Comparative Dual-Signal Sensing of Nitroaromatic Explosives

Ersad Hossain、Sourav Datta、Mohit Kumar Chattopadhyay 等 7 位作者2026-08-19Crystal Growth & Design

Abstract Two luminescent one-dimensional coordination polymers (1D CPs), [Zn(4-avp)(ita)] (CP1) and [Cu(4-avp)2(ita)(H2O)]·H2O (CP2), were synthesized via a slow diffusion approach using a mixed-ligand system comprising itaconic acid (H2ita) and 4-[2-(9-anthryl)vinyl]pyridine (4-avp). Single-crystal structural analysi…

Metal-Organic Frameworks: Synthesis and ApplicationsMolecular Sensors and Ion DetectionLuminescence and Fluorescent Materials

Investigation of Cavitation Erosion, Microstructure, and Surface Topography of Hot-Rolled Magnesium-Based AZ 31B Alloys

Claudia Ciurel、Ion Mitelea、Ilare Bordeașu 等 6 位作者2026-08-19Crystals

Cavitation erosion is a phenomenon that causes the degradation of engineering components operating in fluids under oscillating pressure, and it occurs through the repeated implosion of cavitation bubbles adjacent to the solid surface. This complex phenomenon involves both the hydrodynamic factors of the liquid and the…

Metallurgy and Material ScienceCavitation Phenomena in PumpsMagnesium Alloys: Properties and Applications

Towards a Comparative Environmental Life Cycle Assessment of Bamboo and Concrete Construction for Sustainable Urban Development in Ghana

Joseph Ignatius Teye Buertey、Ana Catarina Jorge Evangelista2026-08-19Buildings

The construction industry accounts for a substantial share of global greenhouse gas emissions, underscoring the need to explore sustainable building technologies. Bamboo is a rapidly growing renewable resource used in various building contexts, including structural and non-structural purposes, with properties equivale…

Natural Fiber Reinforced CompositesBamboo properties and applicationsHygrothermal properties of building materials