English

ALD W-Doped SnO$_2$ TFTs for Indium-Free BEOL Electronics

Applied Physics 2026-04-14 v1 Materials Science

Abstract

This work reports back-end-of-line (BEOL) compatible, thin-film transistors (TFTs) with sub-10 nm tungsten-doped tin oxide (TWO) channels deposited by atomic layer deposition (ALD) at 150 ^\circC. TFTs with undoped SnOx_{\mathrm{x}}, undoped WOx_{\mathrm{x}}, and W-doped SnOx_{\mathrm{x}} channels with W concentrations of 5% and 10% were investigated. TFT with 10% W doping exhibited the best electrostatic control and overall device performance. Post-fabrication O2_{\mathrm{2}} annealing at 300 ^\circC for 5 minutes significantly enhanced device characteristics, reducing the subthreshold swing (SS) by nearly 2×\times, increasing the Ion_{\mathrm{on}}/Ioff_{\mathrm{off}} ratio from 10710^7 to 10910^9, decreasing hysteresis by nearly 3×\times and positive bias stress-induced threshold shift by over 2×\times to a low value of 93 mV at a stress field of 4 MV/cm. Kinetic Monte Carlo simulations using GinestraTM^{\mathrm{TM}} support the experimental observations and attribute the bias instability to charge trapping in the gate dielectric and at the interface. This work demonstrates low-temperature ALD-grown TWO TFTs as a promising indium-free platform for BEOL and monolithic 3D integration.

Keywords

Cite

@article{arxiv.2604.11333,
  title  = {ALD W-Doped SnO$_2$ TFTs for Indium-Free BEOL Electronics},
  author = {Mansi Anil Patil and Devarshi Dhoble and Shivaram Kubakaddi and Mamta Raturi and Marco A Villena and Gaurav Thareja and Saurabh Lodha},
  journal= {arXiv preprint arXiv:2604.11333},
  year   = {2026}
}