Hear from the experts presenting at the conference.
Nguyen Quang Chinh
Eötvös Loránd University, Hungary
Federica Carnamucio
Virginia Commonwealth University, USA
Shenglai Yao
Technische Universität Belrin, Germany
Aleksei Dagman
Novolipetsk Steel, Russia
Beatriz Eleutério Goi
FCT-UNESP, Brazil
Fereshteh Sourani
Austrian Academy of Sciences, Austria
Shrirang Karve
Sanofi Pasteur Ltd, USA
Chalet Tan
University of Tennessee Health Science Center, USA
Luca Piantanida
The University of British Columbia, Canada
Ashish Sarode
Sanofi, USA
Daria Drozdenko
Charles University, Czech Republic
Jianyi (Jay) Zhang
University of Alabama at Birmingham, USA
Jingcheng Hao
Shandong University, China
Gregory A Hudalla
University of Florida, USA
Jintu Fan
The Hong Kong Polytechnic University, China
Lefteris Danos
Lancaster Univeristy, UK
Felice Alberto Sfregola
University and Politecnico of Bari, Italy
Regina Kalpokait?-Di?kuvien?
Lithuanian Energy Institute, Lithuania
Maria João Camacho
INIAV, I.P, Portugal
Lucía Bravo-Baranda
Universitat de València, Spain
Luis Roso
University of Salamanca, Spain
Peter Kuznetsov
Siberian Branch of the Russian Academy of Sciences, Russia
Rashad Al-Gaashani
Hamad Bin Khalifa University, Qatar
Shani Shoham
Kinneret Limnological Institute, IOLR, Israel
Kazuteru Shinozaki
Yokohama City University, Japan
Kenshi Matsumoto
Kyoto University, Japan
Stuart Miller
UL Research Institutes, USA
Zhiyu Tian
The Hong Kong Polytechnic University, Hong Kong
Sara Manuela Duque Londoño
UCEVA, Colombia
Carolina Caicedo Cano
Unidad Central del Valle del Cauca (UCEVA), Colombia
Leng Huachao
The Hong Kong Polytechnic University, Hong Kong
Eliane Trovatti
University of Araraquara - UNIARA, Brazil
Francesco Dalena
Normandie Univ, ENSICAEN, UNICAEN, CNRS, France
Tilo Söhnel
University of Auckland, New Zealand
Takuma Kishimoto
Nagoya Institute of Technology, Japan
Wenhong Ding
Wuhan University of Science and Technology, China
Hayk Minassian
A. Alikhanian National Science Laboratory, Armenia
Jennifer LH Johnson
NuvOx Pharma, USA
Alon Grinberg Dana
Technion – IIT, Israel
Mobbassar Hassan Sk
University of Cambridge, UK
Rodney Herring
University of Victoria, Canada
Monica Mir
Institute for Bioengineering of Catalonia (IBEC), Spain
Jaros?aw Dziadek
Instituto de Magnetismo Aplicado (UCM-ADIF-CSIC), Poland
Igor Fedin
The University of Alabama, USA
Kenichi Kawano
Hiroshima University, Japan
Ali Arslan Kaya
Mugla Sitki Kocman University, Turkey
Lhoussain Mllaoiy
UNIVERSITE DE TOULON, France
Nguyen Quang Chinh
Eötvös Loránd University
Hungary
Materials Science and Engineering
Universal Description of the Indentation Size Effect from crystalline to amorphous structures
Federica Carnamucio
Virginia Commonwealth University
USA
Inhalable Metal-Complexed Liposomal Gemcitabine for Osteosarcoma Lung Metastases
Osteosarcoma (OS) is the most common primary bone malignancy and the third most frequent cancer in children. It spreads almost exclusively to the lungs, with approximately 20% of patients presenting clinically detectable lung metastases (OSLM) at the time of diagnosis. Inhaled gemcitabine (GMT) has shown promise by enhancing Fas receptor (FasR) expression in OSLM, a key mechanism for inducing tumors to apoptosis. However, its clinical application is l
Shenglai Yao
Technische Universität Belrin
Germany
Zero-valent group 14 ligands for electron-rich transition metal complexes: synthesis, bonding, and materials potential
The design of novel silicon and germanium containing ligands capable of stabilizing electron-rich transition metal centers is a topic of growing importance in inorganic and materials chemistry. Zero-valent group 14 compounds—particularly silylones (Si? complexes) and germylones (Ge? complexes)—have emerged as powerful ?-donor ligands, owing to the presence of two lone pairs on the central Si or Ge atom.[1] These unique electronic features render them
Aleksei Dagman
Novolipetsk Steel
Russia
Investigation of effect of microalloying elements and hot rolling parameters on the strength of low-carbon steels
Presently steel products manufacturers focus on searches of influence of chemical composition and parameters of thermal-deformation treatment of metal on the formation of microstructure and system of nanosized phase precipitates of different types and, ultimately, the obtained mechanical properties.
The report presents one of the solutions to this problem. The influence of structural state characteristics on the mechanical properties of low-carbon h
Beatriz Eleutério Goi
FCT-UNESP
Brazil
Design of Mn(II) e Ni(II)-NHC complexes as photocatalysts for radical polymerization under visible light and 3D printing
In recent years, metal-based photocatalysts have emerged as key players in the development of efficient photopolymerization processes and 3D printing technologies. This work highlights the design and photochemical evaluation of two new photocatalytic systems based on first-row transition metals coordinated to N-heterocyclic carbene (NHC) ligands: a manganese(II) complex [Mn(PyImes)2](PF6)2 and nickel(II) complexes [Ni(Py-NHC)2](PF6)2 and [Ni(Ph-NHC)2]
Fereshteh Sourani
Austrian Academy of Sciences
Austria
Bio Materials and Medical Devices
Process-Structure-Bioresponse Relationships in LPBF-Fabricated Zr-based Bulk Metallic Glass
Shrirang Karve
Sanofi Pasteur Ltd
USA
PEGylated lipid screening, composition optimization, and structure–activity relationship for mRNA lipid nanoparticles
Lipid nanoparticles (LNPs) have emerged as effective carriers for mRNA delivery in vaccine and therapeutic applications, attracting substantial attention since the COVID-19 pandemic. This study systematically screened PEGylated lipids for intramuscular mRNA delivery, followed by optimization of the formulation composition, physicochemical characterization, and investigation of the structure–activity relationship (SAR).
Chalet Tan
University of Tennessee Health Science Center
USA
Nanobiotechnology
Long-circulating nanobody confers durable prophylaxis against SARS-CoV-2 Omicron infection
Luca Piantanida
The University of British Columbia
Canada
Nanobiotechnology
DNA-PAINT as a precise analytical platform for nanoscale metrology
Ashish Sarode
Sanofi
USA
Potent liver-tropic mRNA lipid nanoparticles: ApoE-mediated delivery through an LDLR-independent uptake mechanism
The development of nucleic acid therapeutics using non-viral delivery systems requires efficient payload delivery to target organs to achieve higher potency and tolerability. Lipid nanoparticle (LNP) formulations influence biodistribution, cellular uptake, and therapeutic efficacy; however, the mechanisms underlying these effects remain incompletely understood. This study develops potent mRNA-LNP formulations and investigates determinants of liver tro
Daria Drozdenko
Charles University
Czech Republic
Materials Science and Engineering
Low-alloyed Mg alloys with high strength and moderate ductility
Jianyi (Jay) Zhang
University of Alabama at Birmingham
USA
Nanotechnology
Heart Regeneration and Graft Associated Arrythmia in Large Mammals
Jingcheng Hao
Shandong University
China
Materials Science and Engineering
Study on Colloid Dispersed Systems and Industrialization of Surfactants
Gregory A Hudalla
University of Florida
USA
Bio Materials and Medical Devices
Engineering an indoleamine 2,3-dioxygenase immunotherapy
Jintu Fan
The Hong Kong Polytechnic University
China
Material Science & Engineering
Robust Mix-charged Polyzwitterionic Hydrogels for Ultra-efficient Atmospheric Water Harvesting and Evaporative Cooling
Lefteris Danos
Lancaster Univeristy
UK
Physics and Chemistry of Materials
Development of light harvesting structures for photovoltaic applications
Felice Alberto Sfregola
University and Politecnico of Bari
Italy
Acoustofluidics
Predictive Finite-Element Modeling with Experimental Validation for Acoustophoretic Particle Sorting in SSAW Microfluidic Systems
Regina Kalpokait?-Di?kuvien?
Lithuanian Energy Institute
Lithuania
Potential of oil shale ash in acid-based geopolymer production
Sustainable alternatives to cement-based binders are geopolymers, also called eco-materials, which may partially replace Portland cement [1]. The activation of aluminosilicate material, such as metakaolinite or industrial by-products possessing high alumina or silica content, with an acidic solution, leads to the formation of geopolymer material of higher mechanical or thermal properties [2]. A key area of research in this field involves incorporatin
Maria João Camacho
INIAV, I.P
Portugal
Nanobiotechnology
Smart Sensor Technologies for Sustainable Agriculture: New Frontiers in Nematode Detection
Lucía Bravo-Baranda
Universitat de València
Spain
Biomaterials
Self-organization of lung tumor spheroids in a type I collagen scaffold: a
morphological study of epithelial–stromal interactions
Luis Roso
University of Salamanca
Spain
Emerging Areas of Material Science
Structured Light for Material Processing
Peter Kuznetsov
Siberian Branch of the Russian Academy of Sciences
Russia
Carbon Nanostructures and Graphene
Anisotropic needle coke based on coal dissolved products
Rashad Al-Gaashani
Hamad Bin Khalifa University
Qatar
Advanced Nanomaterials
One-Step Synthesis of Cellulose-Based Biochar Functionalized with Fe?O?/Fe3O4 and ZnO Nanocomposites for Advanced Water Treatment
Shani Shoham
Kinneret Limnological Institute, IOLR
Israel
Microbe-mediated molybdenum hyperaccumulation in the marine sponge Theonella conica
Molybdenum is an essential trace element, yet biological hyperaccumulation has rarely been demonstrated. In this study, we examined the Indo-Pacific marine sponge Theonella conica, which was found to hold exceptionally high molybdenum concentrations, reaching 46,793 µg/g dry weight across specimens collected from the northern Red Sea to Zanzibar. Elemental analyses showed that molybdenum is distributed across multiple sponge body fractions and is posi
Kazuteru Shinozaki
Yokohama City University
Japan
Physics and Chemistry of Materials
Visualization of trap distribution in SrAl2O4:Eu2+,Dy3+ revealed by simulations of persistent luminescence based on a random walk model
Kenshi Matsumoto
Kyoto University
Japan
Nanoengineering and its Applications
Inter-element miscibility and well-designed nanoparticles guide the formation of unprecedented ordered alloy phase
Stuart Miller
UL Research Institutes
USA
Materials Science and Engineering
High throughput computational and experimental methods for accelerated electrochemical materials discovery
Zhiyu Tian
The Hong Kong Polytechnic University
Hong Kong
Nano-electronics And Nano-electronic Devices
DIW-printed self-powered intelligent wearable electronics based on TENG for sports injury rehabilitation
Sara Manuela Duque Londoño
UCEVA
Colombia
Biomaterials and medical devices
POLYMERIC BIOCOMPOSITES WITH NANOSTRUCTURED
HYDROXYAPATITE: ADDITIVE PROCESSING AND EVALUATION
FOR BIOMEDICAL APPLICATIONS
Carolina Caicedo Cano
Unidad Central del Valle del Cauca (UCEVA)
Colombia
Biomaterials and medical device
Development of PLA-curcumin biopolymeric films for pH monitoring in chronic wounds
Leng Huachao
The Hong Kong Polytechnic University
Hong Kong
Material Science and Technology
Fabrication of Macro-Patterned and Micro-Porous Near-Field Electrospun Scaffolds by Gradient Solvent Evaporation Process
Eliane Trovatti
University of Araraquara - UNIARA
Brazil
Lysine grafted poly(lactic acid): An intrinsically antimicrobial polymer
Plastics are widely used in biomedical devices in clinical approaches due to their ease of processing, sterilization. Handling can lead these devices to contamination and the worst situation is the microbial spreading, once they inherently lack antimicrobial properties. To address this limitation, poly(lactic acid) (PLA) was chemically modified by maleation followed by L-lysine grafting, producing a novel derivative (PLA-g-Lys) with potential antimicr
Francesco Dalena
Normandie Univ, ENSICAEN, UNICAEN, CNRS
France
Spectroscopic characterization of black N- and P-doped zeolite templated carbons
The incorporation of heteroatoms (X) into the zeolite-templated carbon (ZTC) structure is a widely used technique to tailor its properties for specific applications such as gas adsorption, methane and hydrogen storage, and catalysis. However, the literature lacks sufficient data on Fourier-transform infrared spectroscopy (FTIR) analysis of ZTCs due to the challenge in obtaining high-quality FTIR spectra required for accurate assignment of the C–X band
Tilo Söhnel
University of Auckland
New Zealand
Physics and Chemistry of Materials
Temperature-dependent structural studies on the Skyrmion Hosting Material, Cu2OSeO3
Takuma Kishimoto
Nagoya Institute of Technology
Japan
Experimental and crystal plasticity finite element analysis of surface roughening in hollow sinking of microtubes
Experimental and crystal plasticity finite element analysis of surface roughening in hollow sinking of microtubes
Wenhong Ding
Wuhan University of Science and Technology
China
Materials Science and Engineering
Active Control of Residual Stress in Steel via Alloy-Driven Spatiotemporal Phase Transformation Kinetics under Non- Uniform Thermal-Mechanical Fields
Hayk Minassian
A. Alikhanian National Science Laboratory
Armenia
Advanced nanomaterials
Two photon absorption in Ti3C2Tx MXene: interpretation of experiments
Jennifer LH Johnson
NuvOx Pharma
USA
Fluorocarbon nanotechnology
Fluorocarbon nano-emulsions and treatment of hypoxic tissue
Alon Grinberg Dana
Technion – IIT
Israel
The agentic age of predictive chemical kinetics
Predictive chemical kinetic modeling is foundational to advancing materials science, yet developing these models remains a human-intensive process of orchestrating disparate software tools and refining complex reaction mechanisms. While automation has streamlined individual tasks, overall model development still relies on static, human-directed workflows that struggle to scale with the vast parameter spaces of modern chemical systems. This perspective
Mobbassar Hassan Sk
University of Cambridge
UK
In-situ approaches to study process dynamics of material corrosion/degradation
Deeper mechanistic understanding of a physico-chemical process requires an understanding of its dynamics. In-situ / in-operando approaches are indispensable part of the study of dynamics, as ex-situ methods simply cannot capture many important substages of the process. A suite of in-operando/ in-situ approaches have been developed by us employing state-of-the-art microscopic, spectroscopic and synchrotron X-Ray based techniques to spatially and tempor
Rodney Herring
University of Victoria
Canada
Effectively and Efficiently Disinfecting and Cleaning Pollutants from Surfaces, Water and Air Using Fe doped TiO2 Crystals
As previously reported in the 8th MATERIALS SCIENCE & NANOTECHNOLOGY conference (Hybrid Event), a new type of titanium dioxide crystal, i.e., Fe doped TiO2 crystal, was invented able to photocatalytically activate using safe, low cost, visible light producing a 100% degradation efficiency against germs on surfaces. The Fe dopant significantly reduces the recombination of the electrons and holes by producing Fe+2 and Fe+4 from Fe+3, the naturally occur
Monica Mir
Institute for Bioengineering of Catalonia (IBEC)
Spain
Implantable sensors for early diagnosis
Nanotechnology and nanomedicine is a cutting-edge field that is growing, providing new solutions in different areas. These new technologies in the medical area cover many possibilities for the study, treatment and diagnosis of different diseases in a more efficient and personalized way. A key tool recently developed in biomedical engineering research thanks to this technology are implantable sensors.
The development of miniaturized implantable biosen
Jaros?aw Dziadek
Instituto de Magnetismo Aplicado (UCM-ADIF-CSIC)
Poland
Bio Materials and Medical Devices
Advancing Antitubercular Drug Discovery: From Phenotypic Screening to Target Validation and Preclinical Evaluation
Igor Fedin
The University of Alabama
USA
Nanotechnology / Electrical, Optical, and Magnetic Materials
II-V Semiconductor Quantum Dots as Short-Wave Infrared Emitters
Kenichi Kawano
Hiroshima University
Japan
Curvature-sensing peptide functions as a membrane interfactant that glues small extracellular vesicles to cell membranes and enhances vesicle cellular uptake
Small extracellular vesicles (sEVs) are lipid nanoparticles secreted from mammalian cells that are involved in the transfer of informational or therapeutically effective substances between cells. Although the scope of research on sEVs as biocompatible carriers for drug delivery to diseased tissues and cells is expanding, several challenges remain, such as low cellular uptake efficiency and difficulty in loading drugs. It is desirable to alleviate the
Ali Arslan Kaya
Mugla Sitki Kocman University
Turkey
Binary dilute copper alloys- Assessment of strengthening, internal friction, and electrical conductivity
Overcoming the strength-conductivity trade-off has long been an issue for commercial copper alloys. However, a synergy between strength and electrical conductivity can be achieved by reasonable adjustment of the microstructure. It is known that the formation of Short-Range Order (SRO) in a solid solution can change the mechanical and electrical behavior of the materials. Currently, the prediction of SRO formation is widely based on computational techn
Lhoussain Mllaoiy
UNIVERSITE DE TOULON
France
Materials Science and Engineering
Synthesis, microstructure and photocatalytic properties of {(1x)BiOBr/(x)Bi24O31Br10} composite for Ciprofloxacin photodegradation
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