{"id":48489,"date":"2024-06-13T09:45:09","date_gmt":"2024-06-13T08:45:09","guid":{"rendered":"https:\/\/www.innovationnewsnetwork.com\/?p=48489"},"modified":"2024-06-13T10:04:12","modified_gmt":"2024-06-13T09:04:12","slug":"standford-researchers-developing-liquid-battery-for-energy-storage","status":"publish","type":"post","link":"https:\/\/www.innovationnewsnetwork.com\/standford-researchers-developing-liquid-battery-for-energy-storage\/48489\/","title":{"rendered":"Standford researchers developing \u2018liquid battery’ for energy storage"},"content":{"rendered":"

A research team at Stanford University is advancing liquid battery technology for renewable energy storage.<\/h2>\n

The liquid battery technology, known as liquid organic hydrogen carriers (LOHCs), can expertly store electrical energy in liquid fuels.<\/p>\n

This technological breakthrough could prove vital, storing renewable power for the electricity grid to accelerate the green transition.<\/p>\n

What are liquid batteries?<\/h3>\n

Lithium-ion batteries are the commonly used technology employed to store electricity for the grid and power everyday technologies such as smartphones and electric vehicles.<\/p>\n

Due to the growing demand for energy storage<\/a>, researchers are exploring solutions that can supplement lithium-ion technology.<\/p>\n

LOHCs emerge as promising candidates, as they can store and release hydrogen using catalysts and elevated temperatures.<\/p>\n

In the future, LOHCs could function as a liquid battery, storing energy and efficiently returning it as usable fuel.<\/p>\n

Research focus<\/h3>\n

The research team is exploring using isopropanol and acetone for hydrogen energy storage and release.<\/p>\n

Isopropanol, also known as rubbing alcohol, serves as a high-density liquid hydrogen form, allowing for easy storage and transport via existing infrastructure. This form can be utilised in fuel cells or to release hydrogen without emitting CO2.<\/p>\n

Production challenges<\/h3>\n

Producing isopropanol using electricity is currently inefficient. The typical process involves converting protons and electrons from water into hydrogen gas, which a catalyst then transforms into isopropanol.<\/p>\n

However, hydrogen gas’ low energy density makes it less desirable. Daniel Marron, a recent Stanford PhD graduate and lead author of the study, developed a catalyst system to address this issue.<\/a><\/p>\n

His system combines protons and electrons with acetone to produce isopropanol without generating hydrogen gas, using iridium as the catalyst.<\/p>\n

A significant breakthrough in the research was the discovery of cobaltocene’s effectiveness as a co-catalyst.<\/p>\n

Cobaltocene, a cobalt compound traditionally used as a reducing agent, proved to efficiently deliver protons and electrons directly to the iridium catalyst, bypassing hydrogen gas production.<\/p>\n

Accelerating the development of LOHCs<\/h3>\n

Given cobalt’s high demand in batteries, the Stanford team aims to leverage their new insights into cobaltocene’s properties to develop alternative catalysts.<\/p>\n

They are investigating the use of more abundant, non-precious metals like iron to create more affordable and scalable LOHC systems.<\/p>\n

The team is confident that their liquid battery breakthrough could evolve into an effective solution for the energy storage sector or for individual solar and wind farms.<\/p>\n","protected":false},"excerpt":{"rendered":"

A research team at Stanford University is advancing liquid battery technology for renewable energy storage.<\/p>\n","protected":false},"author":15,"featured_media":48490,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"_monsterinsights_skip_tracking":false,"_monsterinsights_sitenote_active":false,"_monsterinsights_sitenote_note":"","_monsterinsights_sitenote_category":0,"footnotes":""},"categories":[24204],"tags":[24161,24413,628],"acf":[],"yoast_head":"\nStandford researchers developing \u2018liquid battery' for energy storage<\/title>\n<meta name=\"description\" content=\"A research team at Stanford University is advancing liquid battery technology for renewable energy storage.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" 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