Polyaniline-Coated Activated Carbon Aerogel/Sulfur Composite for High-performance Lithium-Sulfur Battery

Abstract An activated carbon aerogel (ACA-500) with high surface area (1765 m2 g−1), pore volume (2.04 cm3 g−1), and hierarchical porous nanonetwork structure is prepared through direct activation of organic aerogel (RC-500) with a low potassium hydroxide ratio (1:1). Based on this substrate, a poly...

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التفاصيل البيبلوغرافية
الحاوية / القاعدة:Nanoscale Research Letters
المؤلفون الرئيسيون: Zhiwei Tang, Jinglin Jiang, Shaohong Liu, Luyi Chen, Ruliang Liu, Bingna Zheng, Ruowen Fu, Dingcai Wu
التنسيق: مقال
اللغة:الإنجليزية
منشور في: SpringerOpen 2017-12-01
الموضوعات:
الوصول للمادة أونلاين:http://link.springer.com/article/10.1186/s11671-017-2372-6
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author Zhiwei Tang
Jinglin Jiang
Shaohong Liu
Luyi Chen
Ruliang Liu
Bingna Zheng
Ruowen Fu
Dingcai Wu
author_facet Zhiwei Tang
Jinglin Jiang
Shaohong Liu
Luyi Chen
Ruliang Liu
Bingna Zheng
Ruowen Fu
Dingcai Wu
author_sort Zhiwei Tang
collection DOAJ
container_title Nanoscale Research Letters
description Abstract An activated carbon aerogel (ACA-500) with high surface area (1765 m2 g−1), pore volume (2.04 cm3 g−1), and hierarchical porous nanonetwork structure is prepared through direct activation of organic aerogel (RC-500) with a low potassium hydroxide ratio (1:1). Based on this substrate, a polyaniline (PANi)-coated activated carbon aerogel/sulfur (ACA-500-S@PANi) composite is prepared via a simple two-step procedure, including melt-infiltration of sublimed sulfur into ACA-500, followed by an in situ polymerization of aniline on the surface of ACA-500-S composite. The obtained ACA-500-S@PANi composite delivers a high reversible capacity up to 1208 mAh g−1 at 0.2C and maintains 542 mAh g−1 even at a high rate (3C). Furthermore, this composite exhibits a discharge capacity of 926 mAh g−1 at the initial cycle and 615 mAh g−1 after 700 cycles at 1C rate, revealing an extremely low capacity decay rate (0.48‰ per cycle). The excellent electrochemical performance of ACA-500-S@PANi can be attributed to the synergistic effect of hierarchical porous nanonetwork structure and PANi coating. Activated carbon aerogels with high surface area and unique three-dimensional (3D) interconnected hierarchical porous structure offer an efficient conductive network for sulfur, and a highly conductive PANi-coating layer further enhances conductivity of the electrode and prevents the dissolution of polysulfide species.
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spelling doaj-art-5dea5d2045924f408dee2734bfd5a38b2025-08-19T23:26:48ZengSpringerOpenNanoscale Research Letters1931-75731556-276X2017-12-011211910.1186/s11671-017-2372-6Polyaniline-Coated Activated Carbon Aerogel/Sulfur Composite for High-performance Lithium-Sulfur BatteryZhiwei Tang0Jinglin Jiang1Shaohong Liu2Luyi Chen3Ruliang Liu4Bingna Zheng5Ruowen Fu6Dingcai Wu7Materials Science Institute, PCFM Lab and GDHPRC Lab, School of Chemistry, Sun Yat-sen UniversityMaterials Science Institute, PCFM Lab and GDHPRC Lab, School of Chemistry, Sun Yat-sen UniversityMaterials Science Institute, PCFM Lab and GDHPRC Lab, School of Chemistry, Sun Yat-sen UniversityMaterials Science Institute, PCFM Lab and GDHPRC Lab, School of Chemistry, Sun Yat-sen UniversityMaterials Science Institute, PCFM Lab and GDHPRC Lab, School of Chemistry, Sun Yat-sen UniversityMaterials Science Institute, PCFM Lab and GDHPRC Lab, School of Chemistry, Sun Yat-sen UniversityMaterials Science Institute, PCFM Lab and GDHPRC Lab, School of Chemistry, Sun Yat-sen UniversityMaterials Science Institute, PCFM Lab and GDHPRC Lab, School of Chemistry, Sun Yat-sen UniversityAbstract An activated carbon aerogel (ACA-500) with high surface area (1765 m2 g−1), pore volume (2.04 cm3 g−1), and hierarchical porous nanonetwork structure is prepared through direct activation of organic aerogel (RC-500) with a low potassium hydroxide ratio (1:1). Based on this substrate, a polyaniline (PANi)-coated activated carbon aerogel/sulfur (ACA-500-S@PANi) composite is prepared via a simple two-step procedure, including melt-infiltration of sublimed sulfur into ACA-500, followed by an in situ polymerization of aniline on the surface of ACA-500-S composite. The obtained ACA-500-S@PANi composite delivers a high reversible capacity up to 1208 mAh g−1 at 0.2C and maintains 542 mAh g−1 even at a high rate (3C). Furthermore, this composite exhibits a discharge capacity of 926 mAh g−1 at the initial cycle and 615 mAh g−1 after 700 cycles at 1C rate, revealing an extremely low capacity decay rate (0.48‰ per cycle). The excellent electrochemical performance of ACA-500-S@PANi can be attributed to the synergistic effect of hierarchical porous nanonetwork structure and PANi coating. Activated carbon aerogels with high surface area and unique three-dimensional (3D) interconnected hierarchical porous structure offer an efficient conductive network for sulfur, and a highly conductive PANi-coating layer further enhances conductivity of the electrode and prevents the dissolution of polysulfide species.http://link.springer.com/article/10.1186/s11671-017-2372-6Activated carbon aerogelHierarchical porous carbonPolyaniline coatingLithium-sulfur battery
spellingShingle Zhiwei Tang
Jinglin Jiang
Shaohong Liu
Luyi Chen
Ruliang Liu
Bingna Zheng
Ruowen Fu
Dingcai Wu
Polyaniline-Coated Activated Carbon Aerogel/Sulfur Composite for High-performance Lithium-Sulfur Battery
Activated carbon aerogel
Hierarchical porous carbon
Polyaniline coating
Lithium-sulfur battery
title Polyaniline-Coated Activated Carbon Aerogel/Sulfur Composite for High-performance Lithium-Sulfur Battery
title_full Polyaniline-Coated Activated Carbon Aerogel/Sulfur Composite for High-performance Lithium-Sulfur Battery
title_fullStr Polyaniline-Coated Activated Carbon Aerogel/Sulfur Composite for High-performance Lithium-Sulfur Battery
title_full_unstemmed Polyaniline-Coated Activated Carbon Aerogel/Sulfur Composite for High-performance Lithium-Sulfur Battery
title_short Polyaniline-Coated Activated Carbon Aerogel/Sulfur Composite for High-performance Lithium-Sulfur Battery
title_sort polyaniline coated activated carbon aerogel sulfur composite for high performance lithium sulfur battery
topic Activated carbon aerogel
Hierarchical porous carbon
Polyaniline coating
Lithium-sulfur battery
url http://link.springer.com/article/10.1186/s11671-017-2372-6
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