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单壁碳纳米管在铅酸电池中的掺杂:新视野。

Single-Wall Carbon Nanotube Doping in Lead-Acid Batteries: A New Horizon.

机构信息

Department of Chemistry, Bar-Ilan University , Ramat-Gan 590002, Israel.

出版信息

ACS Appl Mater Interfaces. 2017 Feb 1;9(4):3634-3643. doi: 10.1021/acsami.6b13377. Epub 2017 Jan 23.

Abstract

The addition of single-wall carbon nanotubes (SWCNT) to lead-acid battery electrodes is the most efficient suppresser of uncontrolled sulfation processes. Due to the cost of SWCNT, we studied the optimization loading of SWCNT in lead-acid battery electrodes. We optimized the SWCNT loading concentrations in both the positive and negative plates, separately. Loadings of 0.01% and 0.001% in the positive and negative active masses were studied, respectively. Two volts of lead-acid laboratory cells with sulfuric acid, containing silica gel-type electrolytes, were cycled in a 25% and 50% depth-of-discharge (DOD) cycling with a charging rate of C and 2C, respectively, and discharge rates of C/2 and C, respectively. All tests successfully demonstrated an excellent service life up to about 1700 and 1400 cycles for 25% and 50% DOD operations, respectively, at a low loading level of SWCNT. This performance was compared with CNT-free cells and cells with a multiwall carbon nanotube (MWCNT) additive. The outstanding performance of the lead-acid cells with the SWCNT additive is due to the oxidative stability of the positive plates during charging and the efficient reduction in sulfation in both plates while forming conducting active-material matrices.

摘要

向铅酸电池电极中添加单壁碳纳米管 (SWCNT) 是抑制失控硫酸盐化过程最有效的方法。由于 SWCNT 的成本原因,我们研究了在铅酸电池电极中优化 SWCNT 的负载量。我们分别优化了正、负极板中 SWCNT 的负载浓度。分别研究了正极和负极活性物质中 0.01%和 0.001%的负载量。在 25%和 50%的放电深度 (DOD) 循环中,使用含有硅胶电解质的硫酸循环了两个 2V 的铅酸实验室电池,充电速率分别为 C 和 2C,放电速率分别为 C/2 和 C。所有测试均成功证明,在低 SWCNT 负载水平下,25%和 50%DOD 操作的循环寿命分别达到约 1700 和 1400 次,性能优异。将其与不含 CNT 的电池和含有多壁碳纳米管 (MWCNT) 添加剂的电池进行了比较。添加 SWCNT 的铅酸电池具有出色的性能,这是由于在充电过程中正板的氧化稳定性以及在形成导电活性材料基质时在两个极板上有效减少了硫酸盐化。

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