Path Catalog
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Path Catalog
正在从 AllPath API 加载 Path Catalog…
Path Catalog
列表数据实时取自 GET /api/v1/paths,仅包含存在已发布版本的 Path。
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共 7800 条 Path · 第 77 / 780 页
This advanced learning path guides nanoscience and biology students through the essential biological principles underpinning nanobiotechnology, the design and characterization of bio-nano interfaces, and key applications. It builds from foundational cell and biomolecule knowledge through to cutting-edge applications, emphasizing safety and cross-disciplinary integration.
This learning path provides a systematic introduction to materials science, focusing on the structure-property-processing-characterization paradigm essential for nanoscience research. It covers atomic bonding, crystal structures, defects, phase diagrams, mechanical and electronic properties, synthesis methods, and characterization techniques, establishing the foundational knowledge needed to understand and engineer materials at the nanoscale.
This advanced graduate-level path equips learners with the conceptual and mathematical tools to understand thermodynamics at the nanoscale. It bridges classical thermodynamics, statistical mechanics, and finite-size effects, emphasizing fluctuations and the breakdown of bulk approximations. The path culminates in a critical examination of nanothermodynamic frameworks and their applications.
A graduate-level learning path covering the fundamental physics, engineering principles, and practical applications of nanorobotic systems. Learners will explore nanoscale motors, manipulation and assembly techniques, and their integration into functional nanosystems.
This advanced graduate-level path systematically develops the physics of plasmonic phenomena at the nanoscale, from classical electromagnetism and optical properties of metals through localized and propagating surface plasmons, to modern sensing applications. Learners will build both conceptual understanding and practical analytical skills, culminating in the design of plasmonic sensors.
A comprehensive graduate-level path covering perovskite crystal chemistry, nanoscale effects, optical behavior, and energy applications. Learners will build from fundamental structure-property relationships to advanced concepts in photovoltaics, LEDs, and photocatalysis.
This advanced graduate-level learning path provides a systematic understanding of two-dimensional (2D) nanomaterials, focusing on graphene, MoS2, and hexagonal boron nitride (h-BN). It covers crystal structures, electronic properties, synthesis methods, characterization techniques, and emerging applications, building from foundational concepts to current research directions.
This learning path guides nanoscience and chemistry students through the fundamental knowledge and practical skills required to synthesize nanomaterials in the laboratory. It covers essential chemistry background, synthesis methods, characterization techniques, safety protocols, and reporting standards, culminating in the ability to plan, execute, and document a nanomaterial synthesis experiment.
This path equips nanoscience students with the knowledge and skills to use atomic force microscopy (AFM) and scanning tunneling microscopy (STM) for nanomaterial characterization. It covers the underlying physics, instrument operation, data analysis, and practical applications, ensuring a solid foundation for research or industry careers.
This path equips nanoscience students with the theoretical and practical knowledge to use electron microscopy for nanomaterial characterization. It covers electron optics, SEM, TEM, sample preparation, and image analysis, integrating physics principles with hands-on application.