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International Conference on Self-Assembly Nanotechnology and Engineering Solutions

๐Ÿ“… 2โ€“3 Mar 2027 ๐Ÿ“ Madrid, Spain ๐Ÿ‘ค Standard / Listener

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Conference session tracks

Key research areas covered across the sessions โ€” tap a track to read more.

This track focuses on the latest developments in molecular self-assembly techniques and their applications in nanotechnology. Researchers will present innovative approaches to harness molecular interactions for the creation of complex nanostructures.

This session explores the methodologies and applications of block copolymer assembly in the fabrication of nanostructured materials. Contributions will highlight the role of thermodynamic principles in guiding the self-assembly process.

This track delves into the design principles and practical applications of DNA nanotechnology in creating functional nanoscale devices. Presentations will cover topics from DNA origami to programmable molecular systems.

This session will examine the principles and applications of supramolecular assembly in the development of advanced nanomaterials. Researchers will discuss the role of non-covalent interactions in constructing hierarchical structures.

This track investigates the mechanisms underlying the self-organization of nanoparticles into complex structures. Presentations will focus on the physical and chemical factors that influence nanoparticle arrangement.

This session will explore innovative template-assisted assembly methods for the fabrication of nanoscale structures. Researchers will present case studies demonstrating the effectiveness of these techniques in various applications.

This track focuses on the design and functionalization of hierarchical nanostructures for advanced applications. Contributions will highlight the integration of multiple structural levels to achieve enhanced properties.

This session will cover bottom-up nanofabrication techniques and their role in the development of nanoscale devices. Researchers will discuss the advantages and challenges associated with these methods.

This track examines the properties and applications of self-assembled monolayers in various fields, including biosensing and catalysis. Presentations will highlight the importance of surface chemistry in tailoring monolayer characteristics.

This session will explore techniques for nanoscale pattern formation, emphasizing their significance in nanotechnology applications. Researchers will discuss both top-down and bottom-up approaches to achieve precise nanoscale patterns.

This track investigates bio-inspired self-assembly processes and their potential applications in nanotechnology. Contributions will focus on mimicking natural systems to develop innovative nanomaterials and devices.