Facile synthesis of interconnected layered porous carbon framework for high-performance supercapacitors
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Y. Kim | S. Thangarasu | N. Murugan | Sahil S. Magdum | T. Oh | Yu Rim Choi | Sol Bin Seo | S. Seo | Sadhasivam Thangarasu
[1] F. Ran,et al. Recent progress on biomass waste derived activated carbon electrode materials for supercapacitors applications—A review , 2022, Journal of Energy Storage.
[2] P. Ajayan,et al. Biomass Derived Hierarchical Porous Carbon for Supercapacitor Application and Dilute Stream Co2 Capture , 2022, SSRN Electronic Journal.
[3] Y. Kim,et al. Interconnected hierarchical nanoarchitectonics of porous carbon nanosheets derived from renewable biomass for efficient oxygen evolution reaction , 2022, Journal of Alloys and Compounds.
[4] Simrandeep Kour,et al. A Review on Challenges to Remedies of MnO2 based Transition-metal oxide, hydroxide, and layered double hydroxide Composites for Supercapacitor Applications , 2022, Materials Today Communications.
[5] S. Zhai,et al. Template-assisted synthesis of porous carbon derived from biomass for enhanced supercapacitor performance , 2022, Diamond and Related Materials.
[6] M. Minakshi,et al. Activation-Induced Surface Modulation of Biowaste-Derived Hierarchical Porous Carbon for Supercapacitors. , 2022, ChemPlusChem.
[7] Yijun Zhong,et al. Unveiling the cooperative roles of pyrrolic-N and carboxyl groups in biomass-derived hierarchical porous carbon nanosheets for high energy-power Zn-ion hybrid supercapacitors , 2022, Applied Surface Science.
[8] Rubing Zhang,et al. Synthesis of biomass-derived N,O-codoped hierarchical porous carbon with large surface area for high-performance supercapacitor , 2021, Journal of Energy Storage.
[9] Shuyan Gao,et al. Hierarchical porous biomass-derived carbon framework with ultrahigh surface area for outstanding capacitance supercapacitor , 2021 .
[10] Haibo Lin,et al. Lignin Derived Porous Carbons: Synthesis Methods and Supercapacitor Applications , 2021, Small methods.
[11] C. Lokhande,et al. Novel electrodes for supercapacitor: conducting polymers, metal oxides, chalcogenides, carbides, nitrides, MXenes, and their composites with graphene , 2021, Journal of Alloys and Compounds.
[12] T. Bhaskar,et al. Biomass derived functional carbon materials for supercapacitor applications. , 2021, Chemosphere.
[13] Yuxuan Liu,et al. Hierarchically porous carbon derived from tobacco waste by one-step molten salt carbonization for supercapacitor , 2021, Carbon Letters.
[14] Hong Wang,et al. Biomass-Derived Carbon Materials: Controllable Preparation and Versatile Applications. , 2021, Small.
[15] M. Vinayagam,et al. Biomass-derived porous activated carbon nanofibers from Sapindus trifoliatus nut shells for high-performance symmetric supercapacitor applications , 2021, Carbon Letters.
[16] M. Balachandran,et al. Crumpled and porous graphene for supercapacitor applications: a short review , 2021, Carbon Letters.
[17] Wei-Ren Liu,et al. Probe on hard carbon electrode derived from orange peel for energy storage application , 2021, Carbon Letters.
[18] Mohsen Mohammadi,et al. Transition metal oxide-based electrode materials for flexible supercapacitors: A review , 2020 .
[19] Rishika Chakraborty,et al. Inherent Oxygen‐ and Nitrogen‐Doped Porous Carbon Derived from Biomass of Tamarind Leaf for High‐Performance Supercapacitor Application , 2020 .
[20] A. Gopalakrishnan,et al. Green synthesis of nitrogen, sulfur-co-doped worm-like hierarchical porous carbon derived from ginger for outstanding supercapacitor performance , 2020 .
[21] S. Hashmi,et al. Optimization of hierarchical porous carbon derived from a biomass pollen-cone as high-performance electrodes for supercapacitors , 2020 .
[22] Xiangyang Li,et al. Large-sized and ultrathin biomass-derived hierarchically porous carbon nanosheets prepared by a facile way for high-performance supercapacitors , 2020 .
[23] Dongfang Guo,et al. Recent advances and challenges in biomass-derived porous carbon nanomaterials for supercapacitors , 2020, Chemical Engineering Journal.
[24] Zhuangjun Fan,et al. One-step synthesis of biomass derived O, N-codoped hierarchical porous carbon with high surface area for supercapacitors , 2020 .
[25] P. Agnihotri,et al. Vertically aligned carbon nanotubes-coated aluminium foil as flexible supercapacitor electrode for high power applications , 2020, Carbon Letters.
[26] Zhentao Bian. Nitrogen and Oxygen Co-doped Hierarchical Porous Carbon Derived from Pine Mushroom Biomass for High-Performance Supercapacitor , 2020 .
[27] Mojtaba Mahyari,et al. Fabrication of polyaniline–carrot derived carbon dots/polypyrrole–graphene nanocomposite for wide potential window supercapacitor , 2020, Carbon Letters.
[28] Qihao Sun,et al. Biomass Straw Based Activated Porous Carbon Materials for High-Performance Supercapacitors , 2020 .
[29] Yi Wang,et al. Simple and green fabrication of a biomass-derived N and O self-doped hierarchical porous carbon via a self-activation route for supercapacitor application , 2020, Carbon Letters.
[30] Honglei Zhang,et al. Plane tree bark-derived mesopore-dominant hierarchical carbon for high-voltage supercapacitors , 2020 .
[31] Junqing Pan,et al. A new biomass derived rod-like porous carbon from tea-waste as inexpensive and sustainable energy material for advanced supercapacitor application , 2020 .
[32] Shaobin Wang,et al. Porous Carbons: Structure‐Oriented Design and Versatile Applications , 2020, Advanced Functional Materials.
[33] Y. Kim,et al. Hybridized double-walled carbon nanotubes and activated carbon as free-standing electrode for flexible supercapacitor applications , 2020, Carbon Letters.
[34] D. Kalpana,et al. S-doped activated mesoporous carbon derived from the Borassus flabellifer flower as active electrodes for supercapacitors , 2020 .
[35] Dongxuan Guo,et al. Oxygen enriched carbon with hierarchical porous structure derived from biomass waste for high-performance symmetric supercapacitor with decent specific capacity , 2019 .
[36] Junqing Pan,et al. Highly ordered hierarchical porous carbon derived from biomass waste mangosteen peel as superior cathode material for high performance supercapacitor , 2019 .
[37] Junqing Pan,et al. Hollow-tubular porous carbon derived from cotton with high productivity for enhanced performance supercapacitor , 2019, Journal of Power Sources.
[38] Chang Q. Sun,et al. Waste bones derived nitrogen-doped carbon with high micropore ratio towards supercapacitor applications. , 2019, Journal of colloid and interface science.
[39] Xuan Liu,et al. Biomass derived interconnected hierarchical micro-meso-macro- porous carbon with ultrahigh capacitance for supercapacitors , 2019, Carbon.
[40] Xiaoping Yang,et al. Camphor wood waste-derived microporous carbons as high-performance electrode materials for supercapacitors , 2019, Carbon Letters.
[41] H. Park,et al. Chlorella-derived activated carbon with hierarchical pore structure for energy storage materials and adsorbents , 2019, Carbon Letters.
[42] Huijun Zhao,et al. Hierarchical Porous Carbon Materials Derived from Kelp for Superior Capacitive Applications , 2019, ACS Sustainable Chemistry & Engineering.
[43] Shizhen Li,et al. Biomass‐Derived Materials for Electrochemical Energy Storage and Conversion: Overview and Perspectives , 2019, ENERGY & ENVIRONMENTAL MATERIALS.
[44] P. Chu,et al. Biomass-derived robust three-dimensional porous carbon for high volumetric performance supercapacitors , 2019, Journal of Power Sources.
[45] Yi Lin,et al. Heteroatom-Doped Sheet-Like and Hierarchical Porous Carbon Based on Natural Biomass Small Molecule Peach Gum for High-Performance Supercapacitors , 2019, ACS Sustainable Chemistry & Engineering.
[46] Huaping Zhao,et al. In Situ Encapsulation of Iron Complex Nanoparticles into Biomass‐Derived Heteroatom‐Enriched Carbon Nanotubes for High‐Performance Supercapacitors , 2018, Advanced Energy Materials.
[47] Dunmin Lin,et al. Biomass-derived nitrogen and oxygen co-doped hierarchical porous carbon for high performance symmetric supercapacitor , 2018, Journal of Solid State Chemistry.
[48] Wei Li,et al. CO2-activated porous self-templated N-doped carbon aerogel derived from banana for high-performance supercapacitors , 2018, Applied Surface Science.
[49] C. Sharma,et al. Facile Synthesis of Corn Silk Derived Nanoporous Carbon for an Improved Supercapacitor Performance , 2018 .
[50] Jun Lu,et al. Recent Progress in Biomass‐Derived Electrode Materials for High Volumetric Performance Supercapacitors , 2018, Advanced Energy Materials.
[51] Jun Lu,et al. High Volumetric Capacitance, Ultralong Life Supercapacitors Enabled by Waxberry‐Derived Hierarchical Porous Carbon Materials , 2018 .
[52] Y. Liu,et al. Pomelo peels-derived porous activated carbon microsheets dual-doped with nitrogen and phosphorus for high performance electrochemical capacitors , 2018 .
[53] Jie Wang,et al. Biomass derived nitrogen doped carbon with porous architecture as efficient electrode materials for supercapacitors , 2017 .
[54] Gang Wang,et al. Flute type micropores activated carbon from cotton stalk for high performance supercapacitors , 2017 .
[55] Bing Sun,et al. Nitrogen-Doped Porous Carbon Nanosheets from Eco-Friendly Eucalyptus Leaves as High Performance Electrode Materials for Supercapacitors and Lithium Ion Batteries. , 2017, Chemistry.
[56] Zheng Hu,et al. Porous 3D Few‐Layer Graphene‐like Carbon for Ultrahigh‐Power Supercapacitors with Well‐Defined Structure–Performance Relationship , 2017, Advanced materials.
[57] Dewei Wang,et al. From Trash to Treasure: Direct Transformation of Onion Husks into Three-Dimensional Interconnected Porous Carbon Frameworks for High-Performance Supercapacitors in Organic Electrolyte , 2016 .
[58] Pingping Yu,et al. A Novel Sustainable Flour Derived Hierarchical Nitrogen‐Doped Porous Carbon/Polyaniline Electrode for Advanced Asymmetric Supercapacitors , 2016 .
[59] Wenping Sun,et al. 2D transition metal oxides/hydroxides for energy-storage applications , 2016 .
[60] Christopher R. Swartz,et al. Hemp-derived activated carbons for supercapacitors , 2016 .
[61] Lele Peng,et al. Two dimensional nanomaterials for flexible supercapacitors. , 2014, Chemical Society reviews.
[62] Chang Yu,et al. Efficient preparation of biomass-based mesoporous carbons for supercapacitors with both high energy density and high power density , 2013 .