English

Sustainability-Driven Exploration of Topological Material

Materials Science 2023-08-21 v1

Abstract

Topological materials are at the forefront of quantum materials research, offering tremendous potential for next-generation energy and information devices. However, current investigation of these materials remains largely focused on performance and often neglects the crucial aspect of sustainability. Recognizing the pivotal role of sustainability in addressing global pollution, carbon emissions, resource conservation, and ethical labor practices, we present a comprehensive evaluation of topological materials based on their sustainability and environmental impact. Our approach involves a hierarchical analysis encompassing cost, toxicity, energy demands, environmental impact, social implications, and resilience to imports. By applying this framework to over 16,000 topological materials, we establish a sustainable topological materials database. Our endeavor unveils environmental-friendly topological materials candidates which have been previously overlooked, providing insights into their environmental ramifications and feasibility for industrial scalability. The work represents a critical step toward industrial adoption of topological materials, offering the potential for significant technological advancements and broader societal benefits.

Keywords

Cite

@article{arxiv.2308.09526,
  title  = {Sustainability-Driven Exploration of Topological Material},
  author = {Artittaya Boonkird and Nathan Drucker and Manasi Mandal and Thanh Nguyen and Jingjie Yeo and Vsevolod Belosevich and Ellan Spero and Christine Ortiz and Qiong Ma and Liang Fu and Tomas Palacios and Mingda Li},
  journal= {arXiv preprint arXiv:2308.09526},
  year   = {2023}
}
R2 v1 2026-06-28T11:58:44.217Z