Data underlying the publication: Packing of inhibitor molecules during area-selective atomic layer deposition studied using random sequential adsorption simulations
doi: 10.4121/33df3424-ed9b-49cb-910e-64a6d37aa6b0
This dataset includes raw and processed data published in manuscript "Packing of inhibitor molecules during area-selective atomic layer deposition studied using random sequential adsorption simulations". Area-selective atomic layer deposition (ALD) can be achieved by functionalization of the area where no growth is desired with inhibitor molecules. The packing of these inhibitor molecules, in terms of molecule arrangement and surface density, plays a vital role in deactivating the surface by blocking the precursor adsorption. Here, we performed random sequential adsorption (RSA) simulations to investigate the packing of small molecule inhibitors (SMIs) on a surface to predict how effective the SMI blocks precursor adsorption. We demonstrated that RSA simulations provide an insightful and straightforward method for screening SMIs in terms of their potential for area-selective ALD. This Dataset includes all the simulation and experimental data used in the manuscript. In the 'Processed data" folder, the reader can find the Matlab code to run RSA simulations, original figure files and data files. The "Raw data" folder includes all Matlab input and outputs without any editing.
- 2023-08-07 first online, published, posted
- European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation programme (Grant Agreement No. 949202)
- ANID FONDECYT (Agencia Nacionalde Investigación y Desarrollo - Fondo Nacional de DesarrolloCientífico y Tecnológico) 11180906
Universidad Técnica Federico Santa María, Department of Chemical and Environmental Engineering, Santiago, Chile
DATA
- 620 bytesMD5:
6824ef8eec4db374b3c2c4c8543e51ab
README.txt - 4,436,090,168 bytesMD5:
8d0a699bfb5196f7adf365a5ac816c07
2022-Packing_of_inhibitor_molecules_during_ASALD.zip -
download all files (zip)
4,436,090,788 bytes unzipped