Monday, March 23, 2026

🔬 Nanoscience and Nanotechnology Session – M-Nano 2026

The InternationalCongress on Materials Science and Nanotechnology will take place November 23–25, 2026 in Singapore and Online, bringing together global researchers in nanoscience and advanced materials.


Scientific Topic: Nanoscience and Nanotechnology

This session focuses on design, development, and application of materials at the nanoscale, where unique physical and chemical properties enable advanced technological innovations.

Key Highlights

• Nanoscale materials and size-dependent properties
• Nanoparticles, nanowires, and nanoscale structures
• Nanoelectronics and sensor technologies
• Nanomedicine and biomedical applications
• Energy storage and environmental nanotechnology
• Scalable synthesis and nano fabrication techniques
• Advanced characterization and analysis tools
• Nano engineering and industrial applications


Ready to Share Your Research?

Present your work under Nanoscience and Nanotechnology and connect with leading researchers and innovators.

🔗 Submit Abstract
https://materials.miconferences.com/abstract-submission

🎟 Register Now
https://materials.miconferences.com/register

🌐 Scientific Topic Details
https://materials.miconferences.com/program/scientific-topics/nanoscience-and-nanotechnology


Contact Information

Email: materials@mathewsconference.com
Phone: +1 (312) 462-4448
WhatsApp: +1 (424) 377 0967

Contact Page
https://materials.miconferences.com/contact


#MNano2026 #Nanoscience #Nanotechnology #Nanomaterials #NanoResearch #AdvancedMaterials #NanoEngineering #NanoElectronics #Nanomedicine #EnergyMaterials #SustainableMaterials #ScientificResearch #MaterialsConference #Innovation #GlobalScience #SingaporeEvents #ResearchCommunity #FutureMaterials #NanoApplications #Conference2026

Wednesday, March 18, 2026

🔬 Materials Science and Engineering Session – M-Nano 2026

The InternationalCongress on Materials Science and Nanotechnology will be held November 23–25, 2026 in Singapore and Online, bringing together global experts in materials science, nanotechnology, and engineering.


Scientific Topic: Materials Science and Engineering

This session focuses on the design, development, and optimization of materials for modern technological applications.

Key Highlights

• Understanding structure–property–processing relationships
• Development of advanced materials (ceramics, polymers, alloys)
• Applications in energy, electronics, aerospace, and biomedical fields
• Sustainable and eco-efficient material innovations
• Integration of computational modeling in materials design
• Advanced characterization and testing techniques
• Industrial applications and scalable solutions
• Materials performance, durability, and multifunctionality


Ready to Share Your Research?

Present your work under Materials Science and Engineering and connect with global researchers and industry experts.

🔗 About scientific topic:
https://materials.miconferences.com/program/scientific-topics/materials-science-and-engineering
submit abstract: https://materials.miconferences.com/abstract-submission

🎟 Register Now
https://materials.miconferences.com/register


Contact Information

Email: materials@mathewsconference.com
Phone: +1 (312) 462-4448
WhatsApp: +1 (424) 377 0967


#MNano2026 #MaterialsScience #MaterialsEngineering #Nanotechnology #AdvancedMaterials #CallForAbstracts #ScientificResearch #EngineeringConference #MaterialInnovation #SustainableMaterials #EnergyResearch #BiomedicalEngineering #ComputationalScience #MaterialsResearch #GlobalConference #SingaporeEvents #ScienceCommunity #Nanoscience #FutureMaterials #ResearchOpportunities

Tuesday, March 17, 2026

2nd WorldCongress on Materials Science and Nanotechnology

Presenter: S V A R Sastry
Affiliation: Harcourt Butler Technical University
Mode of presentation: Poster(In-person)
Title : Nano lubricant Enhancement through Hydrothermal Synthesis of 2D Nanoparticles: A Pathway to Reduced Wear and Enhanced Efficiency


Understanding the Research Focus

This research explores the development of advanced lubricants using hydrothermally synthesized 2D nanomaterials. By incorporating nanoparticles such as ZnO, TiO₂, and iron-based materials, the study aims to reduce friction, minimize wear, and improve thermal stability in lubrication systems. The approach focuses on enhancing efficiency and durability in mechanical applications.


Quantitative Modeling Approach

The hydrothermal synthesis method enables precise control over nanoparticle properties through high-temperature and high-pressure reactions. This allows for uniform particle formation and improved dispersion within lubricant matrices. The resulting system demonstrates measurable improvements in tribological performance and thermal behavior.


Nanocomposite Lubricant System

The addition of 2D nanomaterials creates a nanocomposite lubricant that forms protective layers between moving surfaces. This reduces direct contact, lowers friction, and enhances overall system performance. Improved dispersion and surface functionalization ensure stability and long-term effectiveness.


Key Takeaway Strategy

Hydrothermal synthesis of 2D nanoparticles offers a promising pathway for developing next-generation lubricants. The approach significantly enhances efficiency, reduces wear, and improves sustainability in industrial and automotive applications.


👨‍🔬 About the Author

S V A R Sastry is a distinguished academic and researcher with over 21 years of experience in teaching and materials science research. He is currently associated with Harcourt Butler Technical University. A gold medalist in B.Tech and silver medalist in M.Tech, he has authored 15 patents, 25 international books, and 75 research papers.

He has delivered more than 45 keynote lectures across global platforms including the USA, UK, and Europe, and received numerous prestigious awards such as the Pillars of the Nation Award (2023) and Outstanding Leadership in Research and Innovation Award (2024). His contributions to nanotechnology and education have earned him international recognition and multiple excellence awards.



Event details:

Event: 2nd Edition of International Congress on Materials Science andNanotechnology
Date: November 23–25, 2026
Venue: Singapore & Online
Register:
https://materials.miconferences.com/register
Abstract:
https://materials.miconferences.com/abstract-submission

#MaterialsScience #Nanotechnology #NanoLubricants #Tribology #2DNanomaterials #HydrothermalSynthesis #AdvancedMaterials #SurfaceEngineering #MechanicalEngineering #ResearchInnovation #MaterialsConference #NanoResearch #ScientificConference #ConferenceAlert #CallForAbstracts #SingaporeConference

Monday, March 16, 2026

2nd Global Congress on Materials Science and Nanotechnology

Presenter: Sachin Sharma Ashok Kumar
Affiliation: Lincoln University College
Presentation Type: Oral Presentation (Virtual)
Title : Effects of TiO2 nanoparticles on the adhesion and anticorrosion properties of the graphene-based composite coating on mild steel using electrochemical impedance spectroscopy approach


🔬 Understanding the Research Focus

Corrosion is one of the major challenges affecting the durability and performance of metallic materials in engineering applications. This research focuses on improving the anticorrosion performance of mild steel by developing graphene-based nanocomposite coatings enhanced with TiO₂ nanoparticles. By incorporating graphene and titanium dioxide nanoparticles into a polymer matrix, the study aims to create protective coatings that enhance adhesion, increase hydrophobicity, and provide long-term corrosion resistance for steel surfaces.


📊 Quantitative Modeling Approach

To analyze the performance of the developed coatings, several experimental and analytical techniques were used. These include water contact angle (WCA) measurements to determine surface hydrophobicity, cross-hatch tests (CHT) to evaluate coating adhesion, field emission scanning electron microscopy (FESEM) to observe surface morphology, and electrochemical impedance spectroscopy (EIS) to monitor corrosion resistance. The EIS results were recorded over a 30-day immersion period, enabling researchers to evaluate the long-term stability and protective behavior of the coatings.


🧪 Nanocomposite Coating Development

The study introduced TiO₂ nanoparticles in concentrations ranging from 0.5 wt.% to 3 wt.% into an acrylic-epoxy polymer matrix reinforced with graphene. The results showed that TiO₂ nanoparticles successfully bonded with graphene surfaces, improving the dispersion of the nanoparticles within the polymer matrix. As the TiO₂ concentration increased, the hydrophobicity of the coating also improved, reaching a maximum water contact angle of 120.85° at 3 wt.% TiO₂. The graphene/TiO₂ (1:1) composite system demonstrated the best dispersion and corrosion resistance performance.


🎯 Key Takeaway Strategy

The findings demonstrate that combining graphene with TiO₂ nanoparticles can significantly enhance the protective properties of polymer coatings on mild steel. The graphene/TiO₂ nanocomposite system exhibited excellent impedance modulus values exceeding 10¹⁰ Ω cm², indicating strong resistance to corrosion. This approach shows great potential for industrial applications where durable and long-lasting anticorrosion coatings are essential.


👨‍🔬 About the Author

Sachin Sharma Ashok Kumar is an Associate Professor at Lincoln University College specializing in advanced materials and graphene-based nanocomposites. His research focuses on graphene materials for applications such as corrosion protection coatings, supercapacitors, batteries, solar cells, fuel cells, hydrogen storage, and polymer nanocomposites. He completed his BSc and MSc in Mechanical Engineering with a minor in Materials Science from Wichita State University and earned his PhD in Advanced Materials Science Engineering from University of Malaya. He has published more than 60 research articles and presented his work at over 70 international conferences.



🌍 Join the Global Scientific Community

2nd Edition of International Congress on Materials Science and Nanotechnology

📅 November 23–25, 2026
📍 Singapore & Online

Register: https://materials.miconferences.com/register
Abstract Submission: https://materials.miconferences.com/abstract-submission
📩 Email: materials@mathewsconference.com
📞 Phone: +1 (312) 462-4448
💬 WhatsApp: +1 (424) 377 0967

#MaterialsScience #Nanotechnology #Graphene #CorrosionProtection #Nanocomposites #AdvancedMaterials #SurfaceEngineering #ElectrochemicalImpedance #ResearchConference #MaterialsConference #NanoResearch #EngineeringInnovation #ScientificConference #ConferenceAlert #CallForAbstracts #SingaporeConference 

Saturday, March 14, 2026

M-Nano 2026 Sparks International Nano Innovation in Singapore

Presenter: Habil Bernd Blobel
Affiliation: University of Regensburg
Title : Designing and Managing Integration and Interoperability of Intelligent and Ethical Ecosystems, Demonstrated for the Health Domain

Healthcare systems worldwide are transforming toward Personalized, Preventive, Predictive, Participative Precision Medicine (5PM). This innovative healthcare model focuses on understanding each individual’s genetic, environmental, and behavioral context to provide proactive and personalized care.

Understanding Healthcare Transformation

Modern healthcare is shifting from a reactive model to a proactive system. Instead of simply treating diseases, healthcare professionals are now focusing on predicting health risks and preventing illnesses before they occur. This transformation is driven by cutting-edge technologies and interdisciplinary collaboration.

Role of Emerging Technologies

Several advanced technologies support this transformation, including:

• Artificial Intelligence for clinical decision support
• Micro- and Nanotechnologies for precision treatments
• Advanced Computing and data analytics
• Robotics and autonomous medical systems
• Knowledge management systems for digital health records

While these innovations create powerful opportunities, they also introduce challenges related to ethics, security, and system governance.

Interoperability and System Integration

Healthcare ecosystems involve many different systems, stakeholders, and disciplines. Ensuring that these systems communicate effectively is critical for efficient healthcare delivery.

To address this challenge, the research introduces a system-theoretical, architecture-centric approach that enables interoperability across complex digital ecosystems. This approach ensures seamless communication between technologies, healthcare institutions, and scientific domains.

ISO 23903 Reference Architecture

The research has led to the development of the ISO 23903 Interoperability and Integration Reference Architecture. This framework provides a structured model for integrating diverse systems and enabling knowledge exchange across multiple domains.

The architecture has already been applied in several scientific fields, including medicine, environmental science, astrophysics, nanotechnology, and education.

Key Takeaways

The development of intelligent and ethical ecosystems will play a critical role in the future of healthcare. By combining technology, standardized architectures, and ethical governance, healthcare systems can become more efficient, collaborative, and patient-centered.


About the Speaker

Bernd Blobel is a globally recognized expert in medical informatics and digital health systems. He served as Head of the Institute for Biometrics and Medical Informatics at Otto von Guericke University Magdeburg and later led the Health Telematics Project Group at Fraunhofer Institute for Integrated Circuits IIS.

He also headed the German National eHealth Competence Center at the University of Regensburg. With more than 600 scientific publications, he has contributed significantly to global digital health standards and interoperability frameworks.



Event Information

2ndEdition of International Congress on Materials Science and Nanotechnology

📅 November 23–25, 2026
📍 Singapore & Online
Register: https://materials.miconferences.com/register
Submit Abstract: https://materials.miconferences.com/abstract-submission
📩 materials@mathewsconference.com
📞 +1 (312) 462-4448
💬 WhatsApp: +1 (424) 377-0967

#MaterialsScience #Nanotechnology #DigitalHealth #PrecisionMedicine #HealthInformatics #ArtificialIntelligence #SmartHealthcare #ResearchConference #ScientificInnovation #MaterialsConference #NanoResearch #TechnologyInnovation #InternationalConference #SingaporeConference #ConferenceAlert #CallForAbstracts #GlobalScience #AcademicConference #HealthcareTechnology #FutureMedicine

Friday, March 13, 2026

“M-Nano 2026 Leads the Global Nano Movement in Singapore”

Speaker: Oleg Dimitriev
Affiliation: V. Lashkaryov Institute of Semiconductor Physics
Title : Thermal energy upconversion using thermally-activated delayed fluorescence materials

Thermal radiation and heat represent a large portion of the energy produced in natural and industrial environments. However, efficiently converting this heat into useful energy forms such as electricity remains a major challenge. This research introduces a promising approach using thermally activated delayed fluorescence (TADF) materials to convert thermal energy into visible light.

Understanding the Research Focus

The study explores how TADF materials can utilize heat as an assisting energy source to produce visible light. This process can potentially improve the efficiency of energy conversion systems and enable new applications in lighting and solar technologies.

Thermal Energy Upconversion Mechanism

TADF materials enable an electronic transition from the triplet energy state to the singlet state with the assistance of thermal energy. This process allows excited electrons to release energy as visible light, effectively converting heat into optical energy.

Temperature-Enhanced OLED Performance

Experiments conducted using TADF-based OLED devices show that increasing temperature significantly improves device performance. When heated to around 50°C, OLED electroluminescence increased up to six times under certain operating conditions. Additionally, improvements in quantum efficiency and power efficiency were observed.

Energy Conversion Applications

The ability to convert heat into visible light could support future technologies in energy harvesting, lighting systems, and renewable energy applications. By capturing waste heat and transforming it into usable energy, this technology could help improve overall energy efficiency.

Key Takeaway Strategy

Although high-temperature operation can present stability challenges, proper thermal management strategies may enable practical applications of this technology. TADF-based energy upconversion offers a promising pathway for developing innovative and sustainable energy systems.

About the Author

Oleg Dimitriev is a physicist specializing in the photophysics of organic dyes, conjugated polymers, and advanced materials for energy conversion. He is a Senior Scientist at the V. Lashkaryov Institute of Semiconductor Physics, part of the National Academy of Sciences of Ukraine, and also serves as an Assistant Professor at the Igor Sikorsky Kyiv Polytechnic Institute. He earned his Ph.D. in solid-state physics from Donetsk State University in 1992. His research focuses on optoelectronic materials, organic and hybrid heterostructures, and energy conversion systems. Dr. Dimitriev has authored over 100 scientific publications and two popular science books.


 


Conference Details

2nd Edition of International Congress on Materials Science and Nanotechnology
📅 November 23–25, 2026
📍 Singapore & Online
Register: https://materials.miconferences.com/register
Submit Abstract: https://materials.miconferences.com/abstract-submission
📩 materials@mathewsconference.com
📞 +1 (312) 462-4448
💬 WhatsApp: +1 (424) 377 0967

#Nanotechnology #MaterialsScience #ThermalEnergy #EnergyConversion #OrganicElectronics #TADF #OLEDTechnology #EnergyHarvesting #NanoInnovation #Optoelectronics #AdvancedMaterials #ScientificResearch #MaterialsConference #GlobalScience #TechnologyInnovation #NanotechnologyConference #Singapore2026

Thursday, March 12, 2026

M-Nano 2026 – International Congress on Materials Science & Nanotechnology in Singapore

Speaker: Yarub Kahtan Al-Douri
Affiliation: European Academy of Sciences
Title : Nanotechnology overview of engineering

Nanotechnology has emerged as one of the most influential scientific fields, enabling engineers and researchers to manipulate materials at the nanoscale to create powerful solutions for global challenges. In this presentation, Professor Yarub Kahtan Al-Douri provides an overview of how nanotechnology is transforming engineering, energy systems, and environmental sustainability.


Understanding the Research Focus

Nanotechnology enhances the electrical, mechanical, and chemical properties of materials. By engineering nanomaterials with improved strength, durability, and activity, scientists are developing innovative technologies capable of transforming how energy is generated, transmitted, and stored.


Energy Innovation Through Nanotechnology

One of the most exciting developments in nanotechnology is its role in renewable energy. Scientists are developing thin-film solar cells that are lightweight, flexible, and inexpensive to manufacture. These advanced solar sheets can be integrated into wearable fabrics, portable devices, and building windows to generate electricity in everyday environments.

Nanotechnology also supports improvements in batteries, fuel cells, and hydrogen storage systems, contributing to the development of efficient and sustainable energy solutions.


Nanotechnology for Water Purification

In many regions of the world, access to safe drinking water remains a serious challenge. Nanotechnology offers a promising solution through nanofiber water filtration systems capable of removing bacteria, viruses, heavy metals, and organic contaminants. These filters are relatively affordable and easy to deploy, making them valuable for communities lacking clean water infrastructure.


Advanced Nanomaterials in Energy Systems

Nanomaterials such as quantum dots and carbon nanotubes significantly enhance the energy absorption capacity of solar cells. Additionally, nanostructured catalysts improve the efficiency of fuel cells, while porous nanomaterials enable effective hydrogen storage. These advancements demonstrate how nanoscale engineering can significantly improve renewable energy technologies.


Key Takeaway Strategy

Nanotechnology offers innovative solutions for sustainable engineering by improving renewable energy systems, enabling advanced materials, and supporting environmental protection. Continued research in this field will play a crucial role in addressing global energy demands and reducing the environmental impact of modern technologies.

About the Speaker

Professor Yarub Kahtan Al-Douri is a globally recognized expert in nanotechnology engineering and materials science. He is a Fellow of the European Academy of Sciences and has played a major role in advancing nanotechnology research and education.

He has received over 70 international awards, including the IAAM Scientist Award and recognition among the Top 2% Scientists Worldwide by Stanford University. Prof. Al-Douri also contributes extensively to scientific publishing as Editor-in-Chief and Associate Editor of leading nanotechnology journals.


 🌍 Conference Details

2ndEdition of International Congress on Materials Science and Nanotechnology
📅 November 23–25, 2026
📍 Singapore & Online
🔗 Register: https://materials.miconferences.com/register
🔗 Abstract Submission: https://materials.miconferences.com/abstract-submission
📩 materials@mathewsconference.com
📞 +1 (312) 462-4448
💬 WhatsApp: +1 (424) 377 0967

#Nanotechnology #MaterialsScience #NanoEngineering #RenewableEnergy #SolarTechnology #HydrogenEnergy #FuelCells #WaterPurification #NanoFilters #QuantumDots #CarbonNanotubes #SmartMaterials #NanoInnovation #MaterialsResearch #ScientificConference #NanoCongress #MaterialsConference #Singapore2026

Meet Our Featured Speaker – Assoc. Prof. Jing Yang You | M-Nano 2026

We are pleased to welcome Assoc. Prof. Jing Yang You from Beihang University (BUAA), China , as a featured speaker at the 2nd Edition of th...