Skip to main content

Solid-state batteries– a better, longer-lasting class of Li-ion electrolytes?

In 2016, Li-ion batteries (LIB) have been on the market, virtually unchanged, for the last 25 years. While this anniversary marks and underscores their worldwide success and diffusion in consumer electronics and, more recently, electric vehicles (EV), the underlying technology begins to show its limitations in terms of safety, performance, form factor and cost, according to a new research report by IDTechEx Research.
November 8, 2016 Read time: 3 mins

In 2016, Li-ion batteries (LIB) have been on the market, virtually unchanged, for the last 25 years. While this anniversary marks and underscores their worldwide success and diffusion in consumer electronics and, more recently, electric vehicles (EV), the underlying technology begins to show its limitations in terms of safety, performance, form factor and cost, according to a new research report by 6582 IDTechEx Research.
 
The report, Solid-State and Polymer Batteries 2017-2027: Technology, Markets, Forecasts examines the solid-state electrolyte industry by giving a 10-year forecast through 2027 in terms of numbers of devices sold, capacity production and market size, predicted to reach over US$7 billion by 2027.
 
The first lithium-based solid-state battery was the lithium-iodine battery, where a sheet of lithium metal is placed in contact with solid iodine. These primary batteries were commercialised in the early 70’s to power pacemaker devices, but it wasn’t until a few years ago that sulphide-based materials, belonging to the thio-LISICON family, finally demonstrated that solid-state batteries can be made rechargeable and possibly outperform their liquid counterparts.
 
Recently ARPA-E programme director Paul Albertus announced the US-backed Ionics initiative, a three-pronged roadmap to support R&D on solid-state batteries. With a total investment of US$37 million, Ionics is poised to become the foundry of US-labelled next generation batteries, because solid-state batteries can enable smaller, safer, and better energy storage devices. This can be achieved by leveraging on the remarkable properties of the solid materials that have been developed over the last years, like garnets, thio-LISICONs, and perovskites.
 
Companies like Ford Motor, Toyota, Samsung, and Toshiba are already actively working on solid electrolytes, while many hail the technological achievements of French company Bolloré as an initial step on rechargeable lithium metal polymer batteries. At the same time, consumers demand better, long-lasting batteries that will not catch fire in their hands like the Samsung Galaxy Note 7, and solid-state electrolytes have the potential to solve those issues.
 
These and other factors, including the surge in popularity of electric cars, wearable devices and drones, are pushing the battery industry towards solid-state electrolytes. Solid-state batteries can be made thinner, flexible, and contain more energy per unit weight than conventional Li-ion.
 
The IDTechEx Research report covers both inorganic solid electrolytes and polymer electrolytes, with an analysis of where these two chemistries will most likely find applications. An analysis on thio-LISICONs and the other 7 solid electrolyte chemistries (garnet, halides, perovskites, argyrodites, LiPON, hydrides, NASICON-like) and polymer electrolytes is given. Additionally, comparisons are made between liquid-based Li-ion batteries and solid-based batteries, as well as between thin film and bulk solid-state batteries.

Related Content

  • February 5, 2016
    Ten per cent growth expected in global ITS market
    According to the latest research by Research and Markets, the global intelligent transportation systems (ITS) market is poised to grow at CAGR of over 10 per cent during 2015-2020. The report, Global Intelligent Transportation Systems Market by System, by Application and Competition Forecast and Opportunities, 2010-2020, says that, with the market being too fragmented, a large number of players are engaged in offering ITS solutions across the globe.
  • February 4, 2013
    Technology overcomes EV range challenges
    According to new analysis from Frost and Sullivan, Strategic Analysis of Global Market for Range Extenders, major challenges currently faced by the electric vehicle (EV) revolve around the inability to provide long range in a single charge as well as the lengthy charging times that can vary from thirty minutes to ten hours. This has limited the number of adopters for EVs. Range extender technology overcomes these challenges, strategically positioned to make strong gains in the EV market. Currently, the mark
  • July 19, 2012
    Digital Light Processing transforms travel information
    David Crawford investigates the potential of new projection technology. Fifty years on from its invention of the microchip, US company Texas Instruments (TI) has compressed the technology into a surface area of just 4.3mm. As such, it forms the heart of a new Pico Digital Light Processing (DLP) system that is set to transform travel information delivery for millions of users on the move - by making it projectable.
  • November 30, 2012
    Growth of China’s hybrid and electric powered vehicles market
    New analysis from Frost and Sullivan, Strategic Analysis of the Chinese Hybrid and Electric Transit Bus Market, finds that the total hybrid and electric transit bus sales in China are expected to reach over 12,000 units by 2018, from 3,374 units in 2011. By 2018, the hybrid and electric powertrain penetration in transit buses is anticipated to be more than 14 percent. The total transit bus sales are likely to exceed 80,000 units by 2018, cementing China's domination of the global transit bus market. This is