Skip to main content

A python package for creating stack layers of 2D systems.

Project description

stacking_2d_systems

stacking_2d_systems is a Python package designed to create different stacking configurations of 2D systems. It allows users to easily generate various configurations of 2D materials — such as AA and AB stacking — and apply custom translations along the x, y, or xy directions.

This package is especially useful for researchers who wish to create different stacking arrangement to match experimental Powder X-ray Diffraction (PXRD) with different stacking patterns of computationally generated structures.


Features

  • AB and AA Stacking Generate AB- and AA-stacked bilayer structures from a single monolayer input file.

  • Custom Translations Create slip-stacked configurations by translating the second layer along the x, y, or xy directions.

  • Batch Generation Automatically generate all possible stacking configurations with one command.

  • User-Friendly CLI Generate stacking configurations directly from the terminal — no Python coding required.

  • Flexible Python Library Use the CreateStack class in your Python scripts for full control and integration into custom workflows.

Installation

From PyPI

Install directly from PyPI:

```bash
    pip install stacking_2d_systems
```

From GitHub

```bash
    git clone https://github.com/bafgreat/stacking_2d_systems.git
    cd stacking_2d_systems
    pip install .
```

Usage

Command-Line Interface (CLI)

The stacking_2d_systems package provides a user-friendly command-line tool called create-stack for generating stacking configurations without needing to write Python code.

```bash
    create-stack path/to/monolayer.cif --stacking <type> [options]
```

Available Options

filename: Path to the input monolayer structure file (e.g., .cif).

--interlayer-dist: Distance between the layers in the bilayer structure. Default is 3.2.

--output-dir: The folder, which specifies where the generated files should be saved. The default is the current working directory where the code is run.

--stacking: Type of stacking configuration to generate. Options include: - ab: Generates an AB-stacked bilayer. - aa: Generates an AA-stacked bilayer. - x: Translates the second layer along the x-axis. - y: Translates the second layer along the y-axis. - xy: Translates the second layer along both x and y directions. - all: Generates all stacking configurations (AB, AA, x, y, xy). --max-length: Maximum translation length along the specified axis (x, y, or xy). If not specified, defaults to half of the corresponding cell dimension

Examples

  1. Generate AB Stacking

     ```bash
         create-stack path/to/monolayer.cif --stacking ab
     ```
    

if you wish to that the stack files should written in a particular directory

```bash
    create-stack path/to/monolayer.cif --stacking ab --output-dir path/to/output
```
  1. Generate AA Stacking

    create-stack path/to/monolayer.cif --stacking aa
    
  2. Custom Stacking Along the x-axis To translate the second layer along the x-axis with a maximum translation length of 5.0 Angstroms:

        create-stack path/to/monolayer.cif --stacking x --max-length 5.0
    

This code will generate a series of files like monolayer_x_0.5.cif, monolayer_x_1.0.cif, etc.

4.Generate All Stacking Configurations To automatically create AB, AA, and all custom translations along x, y, and xy

    ```bash
        create-stack path/to/monolayer.cif --stacking all
    ```

This code will generate all stacking configurations. At the maximum length for the custom translations will be half the size of the lattice length. i.e for translation along x, the maximum length is a/2.0 and b/2.0 along y and a+b/2.0 for xy.

Library Usage

To have full control over the stacking process, the CreateStack class can be used directly in Python scripts.

```Python

from stacking_2d_systems.slip_layers import CreateStack

# Initialize the stack with a monolayer structure and interlayer distance
stack = CreateStack('path/to/monolayer.cif', interlayer_dist=3.2)

# Create an AB-stacked structure
stack.create_ab_stacking()

# Create an AA-stacked structure
stack.create_aa_stacking()

# Create custom stacking along the x-axis with a max length of 5.0 units
stack.stack_along_x(max_length=5.0)
# Create custom stacking along the y-axis
stack.stack_along_y()
 # Create custom stacking along the xy-axis
stack.stack_along_xy()
```

Methods in CreateStack

  • create_ab_stacking(): Generates an AB-stacked structure and saves it as *_ab.cif.
  • create_aa_stacking(): Generates an AA-stacked structure and saves it as *_aa.cif.
  • stack_along_x(max_length): Generates a series of x-axis translated structures.
  • stack_along_y(max_length): Generates a series of y-axis translated structures.
  • stack_along_xy(max_length): Generates a series of xy-diagonal translated structures.

Contact

If you have any questions or need further help, feel free to contact the project maintainer at bafgreat@gmail.com.

License

MIT License

Project details


Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

stacking_2d_systems-0.1.2.tar.gz (15.3 kB view details)

Uploaded Source

Built Distribution

If you're not sure about the file name format, learn more about wheel file names.

stacking_2d_systems-0.1.2-py3-none-any.whl (15.7 kB view details)

Uploaded Python 3

File details

Details for the file stacking_2d_systems-0.1.2.tar.gz.

File metadata

  • Download URL: stacking_2d_systems-0.1.2.tar.gz
  • Upload date:
  • Size: 15.3 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: poetry/1.8.3 CPython/3.9.9 Darwin/24.3.0

File hashes

Hashes for stacking_2d_systems-0.1.2.tar.gz
Algorithm Hash digest
SHA256 bf6a60997c69728edb7b5cc97679caa62d369967c17d2702e22d7d3ccfa8fcb0
MD5 863f1a4a78fba8317a0988a9bd563618
BLAKE2b-256 c071dcb4648edcaec7f6920c70e5d5c4632c5fdd09088b9405246af0bd0562e1

See more details on using hashes here.

File details

Details for the file stacking_2d_systems-0.1.2-py3-none-any.whl.

File metadata

File hashes

Hashes for stacking_2d_systems-0.1.2-py3-none-any.whl
Algorithm Hash digest
SHA256 95f45316f12a68c4fa46895f7a80aa0d5a0e1cf8b7eccc68ec51d88f8e02b7fe
MD5 7ae6a079deecc51adf091694996a4082
BLAKE2b-256 cb276b159d020f21eed0f95f632e119dccc3543dadc3297d8b5535f04be1baaf

See more details on using hashes here.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page