الوضع الليلي
0
Greener batteries
10:46:56 2023-04-24 635

Our modern rechargeable batteries, such as lithium-ion batteries, are anything but sustainable. One alternative is organic batteries with redox-organic electrode materials (OEMs), which can be synthesized from natural "green" materials. In the journal Angewandte Chemie, a Chinese team has now introduced a new OEM for aqueous organic high-capacity batteries that can be easily and cheaply recycled.

Traditional inorganic electrode materials in commercial batteries involve a whole spectrum of problems: limited resources, toxic elements, environmental problems, partly unacceptable mining conditions, limited capacity, difficulties in recycling, and high costs. No sustainable batteries can be developed on a large scale based on these electrodes, though they are needed for an energy transition.

Organic batteries with OEMs are still at the very beginning of their long road toward practical application. A team led by Chengliang Wang at Huazhong University of Science and Technology has now taken a significant step in this direction. The goal is to use OEMs in batteries with aqueous electrolytes. These are "greener," more sustainable, and less expensive than the conventional organic electrolytes in lithium-ion batteries.

The team chose to use azobenzene, a material that can be produced inexpensively on a large scale and is insoluble in water while being highly soluble in organic solvents. Whereas most other functional groups can only transfer one electron, the azo group (-N=N-) in this molecule is able to reversibly transfer two electrons, which contributes to a high capacity. Comprehensive analyses demonstrated that, during the discharge process, the azobenzene is converted to hydroazobenzene after absorbing two of the electrons -- through the rapid, reversible binding of two protons (H+). Prototype coin cells and laminated pouch cells of various sizes with azobenzene OEMs and zinc counter-electrodes reached capacities on the scale of ampere hours, which were retained over 200 charge/discharge cycles.

In contrast to polymeric OEMs, the small azobenzene molecules can be inexpensively recycled with a simple extraction using commercial organic solvents. The electrode material is air stable in both its charged and discharged states and can be recycled in yields of over 90% in every state of charge. The recycled products could be directly reused as OEMs with no loss of capacity.

 

Reality Of Islam

A Mathematical Approach to the Quran

10:52:33   2024-02-16  

mediation

2:36:46   2023-06-04  

what Allah hates the most

5:1:47   2023-06-01  

allahs fort

11:41:7   2023-05-30  

striving for success

2:35:47   2023-06-04  

Imam Ali Describes the Holy Quran

5:0:38   2023-06-01  

livelihood

11:40:13   2023-05-30  

silence about wisdom

3:36:19   2023-05-29  

Can Vitamin D Slow Aging?

almerja.com
8:21:27   2025-09-01  
MOST VIEWS

Importance of Media

9:3:43   2018-11-05

Illuminations

your life

2:11:12   2022-10-15

their choice

11:11:59   2023-02-01

the quran

3:18:29   2022-12-24

knowing what to say

6:0:8   2023-03-19

friendship

2:13:43   2022-05-27

friendship

2:42:26   2023-02-02

use you time well

4:26:43   2022-02-21



IMmORTAL Words
LATEST Drinking Too Little Puts Your Long-Term Health at Risk Inexpensive New Liquid Battery Could Replace $10,000 Lithium Systems The Surprising Teamwork Trick Ants Use to Double Their Strength Stress and Its Effect on a Persons Behavior Interpretation of Sura Maryam (Mary) - Verses 18-20 Youth and Social Responsibility Ultra vs. Minimally Processed Food: Simple Tips to Make Better Choices Ultrabroadband 6G Chip Clocks Speeds 10 Times Faster Than 5G Study Confirms Abrupt Changes in Antarctica – And the World Will Feel Them You Always Have a Choice Interpretation of Sura Maryam (Mary) - Verses 16-17 Youth and Financial Responsibility