Building 2D Material Heterostructures in VESTA
Building 2D Material Heterostructures in VESTA, available at $44.99, has an average rating of 4.8, with 10 lectures, based on 49 reviews, and has 183 subscribers.
You will learn about Obtain CIF files for structures from Materials Project Database Learn full vs. root integer supercells Learn and apply transformations of the hexagonal lattice Build 1-layer Graphene and 3-layer Graphene Build Monolayer h-BN from bulk h-BN Build Monolayer GaN from bulk GaN Build Monolayer MoSe2 from bulk MoSe2 Build Monolayer and bilayer Ti3Sn from bulk Ti3Sn Build (1x1x1) Graphene interfaced with (1x1x1) hexagonal boron nitride Build (Root(28)xRoot(28)x1) Graphene interfaced with (Root(27)xRoot(27)x1) hexagonal boron nitride Build (2x2x1) MoSe2 interfaced with (Root(7)xRoot(7)x1) Graphene Build (5x5x1) GaN interfaced with (Root(7)xRoot(7)x1) Ti3Sn This course is ideal for individuals who are computational chemists, computational physicists, material scientists It is particularly useful for computational chemists, computational physicists, material scientists.
Enroll now: Building 2D Material Heterostructures in VESTA
Summary
Title: Building 2D Material Heterostructures in VESTA
Price: $44.99
Average Rating: 4.8
Number of Lectures: 10
Number of Published Lectures: 10
Number of Curriculum Items: 10
Number of Published Curriculum Objects: 10
Original Price: $19.99
Quality Status: approved
Status: Live
What You Will Learn
- Obtain CIF files for structures from Materials Project Database
- Learn full vs. root integer supercells
- Learn and apply transformations of the hexagonal lattice
- Build 1-layer Graphene and 3-layer Graphene
- Build Monolayer h-BN from bulk h-BN
- Build Monolayer GaN from bulk GaN
- Build Monolayer MoSe2 from bulk MoSe2
- Build Monolayer and bilayer Ti3Sn from bulk Ti3Sn
- Build (1x1x1) Graphene interfaced with (1x1x1) hexagonal boron nitride
- Build (Root(28)xRoot(28)x1) Graphene interfaced with (Root(27)xRoot(27)x1) hexagonal boron nitride
- Build (2x2x1) MoSe2 interfaced with (Root(7)xRoot(7)x1) Graphene
- Build (5x5x1) GaN interfaced with (Root(7)xRoot(7)x1) Ti3Sn
Who Should Attend
- computational chemists, computational physicists, material scientists
Target Audiences
- computational chemists, computational physicists, material scientists
*** NOTE *** I have had to disable the materials modeling community. Please be advised that this perk is not longer available
In this course, we will learn how to build heterostructures of 2D materials using VESTA. This course will touch on several of the key concepts to heterostructure building, such as:
1. Obtaining starting materials from materials project database, such as the crystallographic information files.
2. Extracting monolayer, bilayer, and many layer systems from each of the bulk crystals.
3. Full vs. Root integer supercells.
4. Select transformations of the hexagonal lattice.
5. Interfacing two hexagonal lattice systems together to make a heterostructure.
6. Compute lattice-mismatch between two hexagonal lattice systems will be covered.
The materials we will consider for this course are the following: Graphene, h-BN (hexagonal boron nitride), MoSe2, GaN, and Ti3Sn.
Specifically, we will be building the following heterostructures:
1. 1x1x1 Graphene interfaced with 1x1x1 hexagonal boron nitride
2. Root(28)xRoot(28)x1 Graphene interfaced with Root(27)xRoot(27)x1 hexagonal boron nitride
3. 2x2x1 MoSe2 interfaced with Root(7)xRoot(7)x1 x 1 Graphene
4. 5x5x1 GaN interfaced with Root(7)xRoot(7)x1 Ti3Sn
We will be building the following monolayer systems:
1. 1-layer Graphene and 3-layer Graphene
2. Monolayer hexagonal boron nitride
3. Monolayer GaN
4. Monolayer MoSe2
5. Monolayer and bilayer Ti3Sn
Happy Learning! Please feel free to ask any questions you may have along the way. Please join our Slack community (last slide) if you are interested in Learning more.
Course Curriculum
Chapter 1: Introduction
Lecture 1: Overview + Key Information
Lecture 2: Downloading Unit Cell Files
Lecture 3: Making Graphene Monolayer
Lecture 4: Making h-BN and GaN Monolayers
Lecture 5: Making Ti3Sn and MoSe2 Monolayers
Lecture 6: Making Multi-layer Graphene Slab
Lecture 7: Build h-BN / Graphene Heterostructure – Part 1
Lecture 8: Build h-BN / Graphene Heterostructure – Part 2
Lecture 9: Build MoSe2 / Graphene Heterostructure
Lecture 10: Build GaN / Ti3Sn Heterostructure
Instructors
-
Brendan Smith
Building Computational Material Models
Rating Distribution
- 1 stars: 0 votes
- 2 stars: 0 votes
- 3 stars: 5 votes
- 4 stars: 13 votes
- 5 stars: 31 votes
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