PDF

Perspective: Challenges and opportunities for high-quality battery production at scale

Peter M. Attia, Eric Moch

2021Englishbatteriesenergy storageelectrochemistrymanufacturingquality controlsafety

Abstract

Language:

As the impacts of climate change become increasingly apparent, the need for widespread electrification is now internationally recognized. Consequently, global battery production is expected to surge significantly in the coming decade, yet challenges persist in producing batteries at gigawatt-hour scales and managing manufacturing variances. This perspective highlights both challenges and opportunities to enhance battery quality during production processes. The discussion begins with an examination of the interplay between various battery failure modes and their root causes, revealing critical insights into how these factors influence safety and reliability. Following this, we delve into the tensions faced during cell production, emphasizing the necessity of managing quality to prevent safety incidents and maintain the financial viability of manufacturers. As battery technologies evolve and applications expand, addressing these quality issues becomes paramount to support a safe and sustainable transition to global electrification.

Download

Cite This Work

@article{82963f4c-c34b-4d24-8945-9fd4bff0cf11,
  title={Perspective: Challenges and opportunities for high-quality battery production at scale},
  author={Peter M. Attia and Eric Moch},
  year={2021},
  language={English}
}
TY  - JOUR
TI  - Perspective: Challenges and opportunities for high-quality battery production at scale
AU  - Peter M. Attia
AU  - Eric Moch
PY  - 2021
LA  - English
ER  -

Similar Items

COURS ACCUMULATTEURS BATTERIES 4

Yaya Dagal D

This document presents an educational module on electrochemical energy storage systems—primary cells, accumulators, and batteries—with specific emphas

2021enPDF

New material allows for better hydrogen-based batteries and fuel cells

Riken

This article reports the development of a room-temperature hydride ion (H⁻)-conducting solid electrolyte, representing a significant advance toward pr

2023enPDF

Polymer-air battery research investigates advanced energy storage solutions

Raven Wuebker

This article reports recent advances in the development of polymer–air batteries as safer, more sustainable alternatives to conventional metal–air and

2023enPDF

Team finds major storage capacity in water-based batteries

Raven Wuebker

This article reports recent advances in the development of metal-free, water-based batteries as a safer and more sustainable alternative to convention

2023enPDF

RUBIN TP

2025enPDF

Cooperation and Storage Tradeoffs in Power-Grids

Subhash Lakshminarayana, Tony Q. S. Quek

One of the most important challenges in smart grid systems is the integration of renewable energy resources into its design. In this work, two differe

2011EnglishPDF