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基于共生菌群的细菌纤维素作为独立电极用于更安全、更绿色和更清洁的储能技术。

SCOBY-based bacterial cellulose as free standing electrodes for safer, greener and cleaner energy storage technology.

作者信息

Hamsan Muhamad Hafiz, Abdul Halim Norhana, Demon Siti Zulaikha Ngah, Sa'aya Nurul Syahirah Nasuha, Kadir Mohd Fakhrul Zamani, Abidin Zul Hazrin Zainal, Ahmad Poad Nursaadah, Abu Kasim Nurul Farhana, Razali Nur Amira Mamat, Aziz Shujahadeen B, Ahmad Khairol Amali, Miskon Azizi, Nor Norazman Mohamad

机构信息

Department of Physics, Centre for Defence Foundation Studies, National Defence University of Malaysia, Sungai Besi Camp, Kuala Lumpur 57000, Malaysia.

Centre for Tropicalization, National Defence University of Malaysia, Sungai Besi Camp, Sungai Besi, 57000 Kuala Lumpur, Malaysia.

出版信息

Heliyon. 2022 Oct 13;8(10):e11048. doi: 10.1016/j.heliyon.2022.e11048. eCollection 2022 Oct.

Abstract

Bacterial Cellulose (BC) derived from local market or symbiotic culture of bacteria and yeast (SCOBY) was employed as the polymer matrix for hydroxyl multi-walled carbon nanotube (MWCNT-OH)-based electrochemical double-layer capacitor (EDLC). Chitosan (CS)-sodium iodide (NaI)-glycerol (Gly) electrolyte systems were used as the polymer electrolyte. CS-NaI-Gly electrolyte possesses conductivity, potential stability and ionic transference number of (1.20 ± 0.26) × 10 S cm, 2.5 V and 0.99, respectively. For the electrodes, MWCNT-OH was observed to be well dispersed in the matrix of BC which was obtained via FESEM analysis. The inclusion of MWCNT-OH reduced the crystallinity of the BC polymeric structure. From EIS measurement, it was verified that the presence of MWCNT-OH decreased the electron transfer resistance of BC-based electrodes. Cyclic voltammetry (CV) showed that the shape of the CV plots changed to a rectangular-like shape plot as more MWCNT were added, thus verifying the capacitive behavior. Various amount of MWCNT-OH was used in the fabrication of the EDLC where it was discovered that more MWCNT-OH leads to a better EDLC performance. The EDLC was tested for 5000 complete charge-discharge cycles. The optimum performance of this low voltage EDLC was obtained with 0.1 g MWCNT where the average specific capacitance was 8.80 F g. The maximum power and energy density of the fabricated EDLC were 300 W kg and 1.6 W h kg, respectively.

摘要

从当地市场获取的细菌纤维素(BC)或细菌与酵母共生培养物(SCOBY)被用作基于羟基多壁碳纳米管(MWCNT - OH)的电化学双层电容器(EDLC)的聚合物基体。壳聚糖(CS) - 碘化钠(NaI) - 甘油(Gly)电解质体系用作聚合物电解质。CS - NaI - Gly电解质的电导率、电位稳定性和离子迁移数分别为(1.20 ± 0.26) × 10 S cm、2.5 V和0.99。对于电极,通过场发射扫描电子显微镜(FESEM)分析观察到MWCNT - OH在BC基体中分散良好。MWCNT - OH的加入降低了BC聚合物结构的结晶度。通过电化学阻抗谱(EIS)测量验证,MWCNT - OH的存在降低了基于BC的电极的电子转移电阻。循环伏安法(CV)表明,随着加入更多的MWCNT,CV曲线形状变为类似矩形的曲线,从而验证了电容行为。在EDLC的制备中使用了不同量的MWCNT - OH,发现加入更多MWCNT - OH会使EDLC性能更好。对该EDLC进行了5000次完整的充放电循环测试。使用0.1 g MWCNT时,该低压EDLC获得了最佳性能,平均比电容为8.80 F g。所制备的EDLC的最大功率密度和能量密度分别为300 W kg和1.6 W h kg。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1358/9587280/6aaf458c4f4e/gr1.jpg

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