【摘 要】
:
在电化学储能的研究中,硫以其较高的理论容量(1675 mAh/g)和能量密度(2600Wh)引起了科学家们的广泛关注.硫在自然界中储量丰富,无毒而且是一种环境友好性的材料.因此,锂硫电池有望成为继锂电池之后的新一代储能装置.目前在锂硫电池的研究主要集中在提高硫的利用率和减缓多硫化合物穿梭效应导致的不可逆沉积.
【机 构】
:
曲阜师范大学化工系 清华大学化工系
【出 处】
:
2013年能源颗粒前沿研讨会暨第三届全国能源颗粒材料学术研讨会
论文部分内容阅读
在电化学储能的研究中,硫以其较高的理论容量(1675 mAh/g)和能量密度(2600Wh)引起了科学家们的广泛关注.硫在自然界中储量丰富,无毒而且是一种环境友好性的材料.因此,锂硫电池有望成为继锂电池之后的新一代储能装置.目前在锂硫电池的研究主要集中在提高硫的利用率和减缓多硫化合物穿梭效应导致的不可逆沉积.
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