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Nano structured Materials: Synthesis, Properties, Self Assembly, and Applications

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Nano structured Materials: Synthesis, Properties, Self Assembly, and Applications

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    Team ChemEE

    Team ChemEE

    Consultant

  • Course type

    Watch to learn anytime

  • Course duration

    2119 Min

  • Course start date & time

    Access anytime

  • Language

    English

Why enroll

This course focuses on the synthesis, properties, self-assembly, and applications of nanostructured materials. It aims to provide a comprehensive understanding of nanomaterials, including different synthesis methods, their diverse properties, and various applications. 

Enrolling can help you gain a solid foundation in this rapidly growing field and understand the potential of nanomaterials in various industries

Opportunities that awaits you!

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Course content

The course is readily available, allowing learners to start and complete it at their own pace.

Video info icon

Nano structured Materials: Synthesis, Properties, Self Assembly, and Applications

40 Lectures

2119 min

  • Lesson icon

    Lec-01 Introduction to Nanotechnology

    47 min

  • Lesson icon

    Lec-02 Introduction to Nanotechnology Contd.

    31 min

  • Lesson icon

    Lec-03 Synthetic Methodologies

    55 min

  • Lesson icon

    Lec-04 Synthetic Methodologies Contd..

    56 min

  • Lesson icon

    Lec-05 Synthetic Methodologies Contd...

    0 min

  • Lesson icon

    Lec-06 Synthetic Methodologies Contd.

    57 min

  • Lesson icon

    Lec-07 Synthetic Methodologies Contd..

    55 min

  • Lesson icon

    Lec-08 Synthetic Methodologies Contd....

    57 min

  • Lesson icon

    Lec-09 Template Methods - I

    51 min

  • Lesson icon

    Lec-10 Template Methods - II

    57 min

  • Lesson icon

    Lec-11 Spray Pyrolysis

    59 min

  • Lesson icon

    Lec-12 V-L-S Method

    57 min

  • Lesson icon

    Lec-13 Lithography - I

    56 min

  • Lesson icon

    Lec-14 Lithography - II

    53 min

  • Lesson icon

    Lec-15 Fullerences and Carbon Nanotubes - I

    55 min

  • Lesson icon

    Lec-16 Fullerences and Carbon Nanotubes - II

    57 min

  • Lesson icon

    Lec-17 Fullerences and Carbon Nanotubes - III

    58 min

  • Lesson icon

    Lec-18 Metal and Metal Oxide Nanowires - I

    57 min

  • Lesson icon

    Lec-19 Metal and Metal Oxide Nanowires - II

    58 min

  • Lesson icon

    Lec-20 Metal and Metal Oxide Nanowires - III

    56 min

  • Lesson icon

    Lec-21 Self Assembly of Nanostructures - I

    54 min

  • Lesson icon

    Lec-22 Self Assembly of Nanostructures - I

    58 min

  • Lesson icon

    Lec-23 Self Assembly of Nanostructures - III

    33 min

  • Lesson icon

    Lec-24 Core Shell Nanostructures - I

    29 min

  • Lesson icon

    Lec-25 Core Shell Nanostructures - II

    57 min

  • Lesson icon

    Lec-26 Core Shell Nanostructures - III

    57 min

  • Lesson icon

    Lec-27 Nanocomposites - I

    59 min

  • Lesson icon

    Lec-28 Nanocomposites - II

    58 min

  • Lesson icon

    Lec-29 Photocatalysis - I

    60 min

  • Lesson icon

    Lec-30 Photocatalysis - II

    61 min

  • Lesson icon

    Lec-31 Photocatalysis - III

    60 min

  • Lesson icon

    Lec-32 Dielectric Properties - I

    57 min

  • Lesson icon

    Lec-33 Dielectric Properties - II

    55 min

  • Lesson icon

    Lec-34 Magnetic Properties - I

    54 min

  • Lesson icon

    Lec-35 Magnetic Properties - II

    56 min

  • Lesson icon

    Lec-36 Magnetic Properties - III

    56 min

  • Lesson icon

    Lec-37 Optical Properties - I

    57 min

  • Lesson icon

    Lec-38 Optical Properties - II

    56 min

  • Lesson icon

    Lec-39 Mechanical Properties

    56 min

  • Lesson icon

    Lec-40 Concluding Lecture

    54 min

Course details

Nano structured Materials: Synthesis, Properties, Self Assembly, and Applications

Source: NPTEL

Prof Ashok K. Ganguli

Department of Chemistry, IIT, Delhi

Course suitable for

  • Chemical & Pharmaceutical
  • Energy & Utilities
  • Electronics & Instrumentation
  • Chemical & Process
  • Metallurgy & Material Science
  • Electronics & Telecommunication

Key topics covered

  • Lec-01 Introduction to Nanotechnology

  • Lec-02 Introduction to Nanotechnology Contd.

  • Lec-03 Synthetic Methodologies

  • Lec-04 Synthetic Methodologies Contd..

  • Lec-05 Synthetic Methodologies Contd...

  • Lec-06 Synthetic Methodologies Contd.

  • Lec-07 Synthetic Methodologies Contd..

  • Lec-08 Synthetic Methodologies Contd....

  • Lec-09 Template Methods - I

  • Lec-10 Template Methods - II

  • Lec-11 Spray Pyrolysis

  • Lec-12 V-L-S Method

  • Lec-13 Lithography - I

  • Lec-14 Lithography - II

  • Lec-15 Fullerences and Carbon Nanotubes - I

  • Lec-16 Fullerences and Carbon Nanotubes - II

  • Lec-17 Fullerences and Carbon Nanotubes - III

  • Lec-18 Metal and Metal Oxide Nanowires - I

  • Lec-19 Metal and Metal Oxide Nanowires - II

  • Lec-20 Metal and Metal Oxide Nanowires - III

  • Lec-21 Self Assembly of Nanostructures - I

  • Lec-22 Self Assembly of Nanostructures - I

  • Lec-23 Self Assembly of Nanostructures - III

  • Lec-24 Core Shell Nanostructures - I

  • Lec-25 Core Shell Nanostructures - II

  • Lec-26 Core Shell Nanostructures - III

  • Lec-27 Nanocomposites - I

  • Lec-28 Nanocomposites - II

  • Lec-29 Photocatalysis - I

  • Lec-30 Photocatalysis - II

  • Lec-31 Photocatalysis - III

  • Lec-32 Dielectric Properties - I

  • Lec-33 Dielectric Properties - II

  • Lec-34 Magnetic Properties - I

  • Lec-35 Magnetic Properties - II

  • Lec-36 Magnetic Properties - III

  • Lec-37 Optical Properties - I

  • Lec-38 Optical Properties - II

  • Lec-39 Mechanical Properties

  • Lec-40 Concluding Lecture

Why people choose EveryEng

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