RISS 학술연구정보서비스

검색
다국어 입력

http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.

변환된 중국어를 복사하여 사용하시면 됩니다.

예시)
  • 中文 을 입력하시려면 zhongwen을 입력하시고 space를누르시면됩니다.
  • 北京 을 입력하시려면 beijing을 입력하시고 space를 누르시면 됩니다.
닫기
    인기검색어 순위 펼치기

    RISS 인기검색어

      KCI등재 SCIE SCOPUS

      Waste plastic-derived FWCNT-NiMgAl composite for supercapacitor application

      한글로보기

      https://www.riss.kr/link?id=A108589204

      • 0

        상세조회
      • 0

        다운로드
      서지정보 열기
      • 내보내기
      • 내책장담기
      • 공유하기
      • 오류접수

      부가정보

      다국어 초록 (Multilingual Abstract)

      In this work, we report a direct preparation of a few-walled carbon nanotube (FWCNTs) and NiMgAl composites namely FWCNT-NiMgAl by pyrolysis of waste high-density polyethylene (HDPE) plastic at 800 °C with NiMgAl-layered double hydroxide (LDH) as cat...

      In this work, we report a direct preparation of a few-walled carbon nanotube (FWCNTs) and NiMgAl composites namely FWCNT-NiMgAl by pyrolysis of waste high-density polyethylene (HDPE) plastic at 800 °C with NiMgAl-layered double hydroxide (LDH) as catalysts. The composite formation is carried out in a single step using our lab-developed pyrolysis reactor. The NiMgAl-LDH catalyst was prepared by co-precipitation method and the FWCNTs were grown on the NiMgAl-LDH catalyst with FWCNT yield of 10% and FWCNT-NiMgAl composite yield of 55% whose quality is determined by Raman ID/IG ratio of 2.57. The average outer and inner diameter of the FWCNT are found to be 5.5 nm and 2.9 nm, respectively, from TEM and 2.92 nm from the outer RBM (radial breathing mode) band, which indicates the formation of a few-walled CNTs. FWCNT-NiMgAl is used for the fabrication of flexible supercapacitor electrodes on a polyethylene terephthalate (PET) sheet which achieved a specific capacitance of 432 Fg−1 in a wide potential range (ΔV = 2) at a scan rate of 5 mV s−1 in 2 M KOH electrolyte with a high energy density of 240 Wh kg−1, whereas NiMgAl displayed a capacitance of 200 Fg−1 with an energy density of 111 Wh kg−1. The diffusion-type charge storage mechanism (pseudocapacitance) is found to be dominant with contributions of 73.2% and 69.75% for NiMgAl and FWCNT-NiMgAl, respectively. The highest specific capacitance and energy density are obtained for NiMgAl in 2 M KCl and for FWCNT-NiMgAl in 2 M NaOH electrolytes. However, the largest potential window is observed in KOH electrolyte for both NiMgAl and FWCNT-NiMgAl with value of ΔV = 2 V. The electrode material shows good stability in acidic electrolytes and also shows good capacitive stability at high frequencies maintaining a phase angle of 70°. The present work is a novel approach to fabricate low-cost multifunctional carbon composite nanomaterials and will contribute to the research on low-cost waste-derived CNT composite preparation and its application in flexible energy storage devices.

      더보기

      참고문헌 (Reference) 논문관계도

      1 Ardizzone S, "“Inner” and “Outer”active surface of RuO2electrodes" 35 : 263-267, 1990

      2 Khan J, "Zno/NiO coated multi-walled carbon nanotubes for textile dyes degradation" 11 : 880-896, 2018

      3 Nath D, "X-ray diffraction analysis by Williamson–Hall, Halder–Wagner and size-strain plot methods of CdSe nanoparticles-a comparative study" 239 : 122021-122030, 2020

      4 Nath A, "Waste plasticderived NiO-MWCNT composite as visible light photocatalyst for degradation of methylene blue dye" 6 : 1-14, 2021

      5 Das HJ, "Waste derived low cost PbO-Carbon nanocomposite and its energy storage application" 47 : 1072-1077, 2021

      6 Ghai Viney ; Chatterjee Kingshuk ; Agnihotri Prabhat K., "Vertically aligned carbon nanotubes-coated aluminium foil as flexible supercapacitor electrode for high power applications" 한국탄소학회 31 (31): 473-481, 2021

      7 Pande SA, "Vanadium oxide anchored MWCNTs nanostructure for superior symmetric electrochemical supercapacitors" 182 : 107972-, 2019

      8 Zhuo C, "Upcycling waste plastics into carbon nanomaterials : a review" 131 : 1-14, 2014

      9 "United Nations Report on Plastic Pollution" United Nations

      10 Li P, "Two-dimensional layered double hydroxide derived from vermiculite wastewater supported highly dispersed Ni nanoparticles for CO methanation" 7 : 1-10, 2017

      1 Ardizzone S, "“Inner” and “Outer”active surface of RuO2electrodes" 35 : 263-267, 1990

      2 Khan J, "Zno/NiO coated multi-walled carbon nanotubes for textile dyes degradation" 11 : 880-896, 2018

      3 Nath D, "X-ray diffraction analysis by Williamson–Hall, Halder–Wagner and size-strain plot methods of CdSe nanoparticles-a comparative study" 239 : 122021-122030, 2020

      4 Nath A, "Waste plasticderived NiO-MWCNT composite as visible light photocatalyst for degradation of methylene blue dye" 6 : 1-14, 2021

      5 Das HJ, "Waste derived low cost PbO-Carbon nanocomposite and its energy storage application" 47 : 1072-1077, 2021

      6 Ghai Viney ; Chatterjee Kingshuk ; Agnihotri Prabhat K., "Vertically aligned carbon nanotubes-coated aluminium foil as flexible supercapacitor electrode for high power applications" 한국탄소학회 31 (31): 473-481, 2021

      7 Pande SA, "Vanadium oxide anchored MWCNTs nanostructure for superior symmetric electrochemical supercapacitors" 182 : 107972-, 2019

      8 Zhuo C, "Upcycling waste plastics into carbon nanomaterials : a review" 131 : 1-14, 2014

      9 "United Nations Report on Plastic Pollution" United Nations

      10 Li P, "Two-dimensional layered double hydroxide derived from vermiculite wastewater supported highly dispersed Ni nanoparticles for CO methanation" 7 : 1-10, 2017

      11 Verma R, "Toxic pollutants from plastic waste-—a review" 35 : 701-708, 2016

      12 Mehmandoust M, "Three-dimensional porous reduced graphene oxide decorated with carbon quantum dots and platinum nanoparticles for highly selective determination of azo dye compound tartrazine" 158 : 112698-, 2021

      13 Conway BE, "The role and utilization of pseudocapacitance for energy storage by supercapacitors" 66 : 1-14, 1997

      14 Mahato M, "The pyrolysis reactor apparatus and the process of MWCNT/H2 production using plastic waste. India E-2/115/2022/KOL 2022"

      15 Korkmaz S, "The production of rGO/RuO2 aerogel supercapacitor and analysis of its electrochemical performances" 47 : 34514-34520, 2021

      16 Sankar KV, "The preparation of MnFe2O4decorated flexible graphene wrapped with PANI and its electrochemical performances for hybrid supercapacitors" 4 : 17555-17566, 2014

      17 Tudor VC, "The issue of plastic and microplastic pollution in soil" 56 : 484-487, 2019

      18 Holzwarth U, "The Scherrer equation versus the ’Debye–Scherrer equation" 6 : 534-, 2011

      19 George R, "Synthesis of nanotubular nio-cnt composite and its application in temperature independent CO2gas sensors fabricated using interdigitated silver electrode" 14 : 213-224, 2019

      20 Rezaee S, "Synthesis of multiwalled carbon nanotubes on Cu–Fe nano-catalyst substrate" 7 : 3640-3644, 2017

      21 Aboul-Enein AA, "Synthesis of multi-walled carbon nanotubes via pyrolysis of plastic waste using a two-stage process" 26 : 443-450, 2018

      22 Kim DW, "Synthesis of activated carbon nanotube/copper oxide composites and their electrochemical performance" 530 : 6-10, 2012

      23 Gandhi AS, "Short-range magnon excitation in NiO nanoparticles" 117 : 18666-18674, 2013

      24 Guo G, "Sandwiched nanoarchitecture of reduced graphene oxide/ZnO nanorods/reduced graphene oxide on flexible PET substrate for supercapacitor" 99 : 083111-, 2011

      25 Srivastava N, "Realizing NiO nanocrystals from a simple chemical method" 33 : 653-656, 2010

      26 Dresselhaus MS, "Raman spectroscopy of carbon nanotubes" 409 : 47-99, 2005

      27 Botti S, "Raman spectroscopy" IntechOpen 203-219, 2018

      28 Raza I, "Properties of light weight multi walled carbon nano tubes(MWCNTs)nano-composites" 4 : 195-202, 2021

      29 Jiang L, "Production of aqueous colloidal dispersions of carbon nanotubes" 260 : 89-94, 2003

      30 Wu C, "Processing real-world waste plastics by pyrolysis-reforming for hydrogen and high-value carbon nanotubes" 48 : 819-826, 2014

      31 Karaman C, "Preparation of high surface area nitrogen doped graphene for the assessment of morphologic properties and nitrogen content impacts on supercapacitors" 868 : 114197-114207, 2020

      32 Zheng Y, "Preparation and electrochemical properties of multiwalled carbon nanotubes-nickel oxide porous composite for supercapacitors" 42 : 1740-1747, 2007

      33 Fan Z, "Preparation and characterization of manganese oxide/CNT composites as supercapacitive materials" 15 : 1478-1483, 2006

      34 Mei B-A, "Physical Interpretations of nyquist plots for EDLC electrodes and devices" 122 : 194-206, 2018

      35 Lan Y, "Phosphorization boosts the capacitance of mixed metal nanosheet arrays for high performance supercapacitor electrodes" 10 : 11775-11781, 2018

      36 Tauc J, "Optical properties and electronic structure of amorphous germanium" 15 : 627-637, 1966

      37 Chiang IDNK, "Novel bimetallic tinmanganese oxides/carbon nanotube nanocomposite and their charge storage properties" 75 : 24-39, 2014

      38 Lee JY, "Nickel oxide/carbon nanotubes nanocomposite for electrochemical capacitance" 150 : 153-157, 2005

      39 Roy A, "NiO-CNT composite for high performance supercapacitor electrode and oxygen evolution reaction" 283 : 327-337, 2018

      40 Zhi M, "Nanostructured carbonmetal oxide composite electrodes for supercapacitors : a review" 5 : 72-88, 2013

      41 Davar F, "Nanoparticles Ni and NiO : synthesis, characterization and magnetic properties" 476 : 797-801, 2009

      42 Karimi-Maleh H, "Nanochemistry approach for the fabrication of Fe and N co-decorated biomass-derived activated carbon frameworks : a promising oxygen reduction reaction electrocatalyst in neutral media" 12 : 429-439, 2022

      43 Zhao X, "Multiple splitting of G-band modes from individual multiwalled carbon nanotubes" 81 : 2550-2552, 2002

      44 Osswald S, "Monitoring oxidation of multiwalled carbon nanotubes by Raman spectroscopy" 38 : 728-736, 2007

      45 Karthikeyan K, "Microwave assisted green synthesis of MgO-carbon nanotube composites as electrode material for high power and energy density supercapacitors" 1 : 4105-4111, 2013

      46 Olivatto GP, "Microplastic contamination in surface waters in Guanabara Gay, Rio de Janeiro, Brazil" 139 : 157-162, 2018

      47 Mirabootalebi SO, "Methods for synthesis of carbon nanotubes—review" 6 : 49-57, 2017

      48 Prasek J, "Methods for carbon nanotubes synthesis—review" 21 : 15872-15884, 2011

      49 Senapati S, "Measurement of elastic modulus of CNT composites : a nondestructive study" 30 : 290-296, 2021

      50 Mironova-Ulmane N, "Magnon and phonon excitations in nanosized NiO" 50 : 61-72, 2019

      51 Su Y, "Large-scale synthesis of few-walled carbon nanotubes by DC arc discharge in low-pressure flowing air" 48 : 3232-3235, 2013

      52 Salunkhe RR, "Large-scale synthesis of coaxial carbon nanotube/Ni(OH)2composites for asymmetric supercapacitor application" 11 : 211-218, 2015

      53 Arunkumar M, "Importance of electrode preparation methodologies in supercapacitor applications" 2 : 8039-8050, 2017

      54 Tlili O, "Hydrogen market penetration feasibility assessment : mobility and natural gas markets in the US, Europe, China and Japan" 44 : 16048-16068, 2019

      55 강천수 ; 고영일 ; Fujisawa Kazunori ; Yokokawa Taiki ; 김진희 ; 한종훈 ; 위재형 ; 김융암 ; Muramatsu Hiroyuki ; Hayashi Takuya, "Hybridized double-walled carbon nanotubes and activated carbon as free-standing electrode for flexible supercapacitor applications" 한국탄소학회 30 (30): 527-534, 2020

      56 Iqbal N, "Highly flexible NiCo2O4/CNTs doped carbon nanofibers for CO2adsorption and supercapacitor electrodes" 476 : 87-93, 2016

      57 Kariper IA, "High energy supercapacitors based on functionalized carbon nanotubes : effect of atomic oxygen doping via various radiation sources" 324 : 124497-124507, 2022

      58 Wang B, "Hierarchical NiAl layered double hydroxide/multiwalled carbon nanotube/nickel foam electrodes with excellent pseudocapacitive properties" 6 : 16304-16311, 2014

      59 Birjega R, "Growth and characterization of ternary Ni, Mg–Al and Ni–Al layered double hydroxides thin films deposited by pulsed laser deposition" 614 : 36-41, 2016

      60 Hou Y, "Functionalized few-walled carbon nanotubes for mechanical reinforcement of polymeric composites" 3 : 1057-1062, 2009

      61 Chai R, "Foam-structured NiO–MgO–Al2O3 nanocomposites derived from NiMgAl-LDHs in situ grown onto Ni-foam : a promising catalyst for high-throughput catalytic oxy-methane reforming" 9 : 268-272, 2016

      62 Chen WQ, "Few-walled carbon nanotubes derived from shoe waste plastics : effect of feedstock composition on synthesis, properties and application as CO2reduction electrodes" 356 : 131868-, 2022

      63 Nakar D, "Few-wall carbon nanotube coils" 20 : 953-962, 2020

      64 Indu Kaushal ; Ashok K. Sharma ; Priya Saharan ; Vinit Kumar ; Surender Duhan, "Facile synthesis and electrochemical investigations of Tin‑doped MnO2/carbon nanotube composites" 한국탄소학회 29 (29): 69-79, 2019

      65 Luo K, "Facile fabrication of nickel aluminum layered double hydroxide/carbon nanotube electrodes toward high-performance supercapacitors" 5 : 24693-24699, 2020

      66 Qian C, "Fabrication of small diameter few-walled carbon nanotubes with enhanced field emission property" 6 : 1346-1349, 2006

      67 Kumar N, "Fabrication of carbon nanotube/cobalt oxide nanocomposites via electrophoretic deposition for supercapacitor electrodes" 51 : 2320-2329, 2016

      68 Arani HF, "Enhancement in graphitization of coal tar pitch by functionalized carbon nanotubes" 7 : 5533-5540, 2017

      69 Ranjithkumar R, "Enhanced electrochemical studies of ZnO/CNT nanocomposite for supercapacitor devices" 568 : 51-59, 2019

      70 Pal B, "Electrolyte selection for supercapacitive devices : a critical review" 1 : 3807-3835, 2019

      71 Simon R, "Electrolyte dependent performance of graphene–mixed metal oxide composites for enhanced supercapacitor applications" 2 : 1898-, 2020

      72 Rao A, "Effect of van der waals interactions on the Raman modes in single walled carbon nanotubes" 86 : 3895-3898, 2001

      73 Mallick P, "Effect of CuO addition on the structural and optical properties of NiO nanoparticles" 3 : 52-55, 2013

      74 Atchudan R, "Direct growth of iron oxide nanoparticles filled multiwalled carbon nanotube via chemical vapour deposition method as high-performance supercapacitors" 44 : 2349-2360, 2019

      75 Jorio A, "Determination of nanotubes properties by Raman spectroscopy" 362 : 2311-, 2004

      76 Du X, "Design of modular catalysts derived from NiMgAl-LDH@m-SiO2 with dual confinement effects for dry reforming of methane" 49 : 6770-6772, 2013

      77 Jing C, "Design and fabrication of hydrotalcite-like ternary NiMgAl layered double hydroxide nanosheets as battery-type electrodes for high-performance supercapacitors" 9 : 9604-9612, 2019

      78 Veksha A, "Converting polyolefin plastics into few-walled carbon nanotubes via a tandem catalytic process : importance of gas composition and system configuration" 435 : 128949-, 2022

      79 Askari MB, "Comparison of optical properties and photocatalytic behavior of TiO2/MWCNT, CdS/MWCNT and TiO2/CdS/MWCNT nano-composites" 157 : 230-239, 2018

      80 Aboutalebi SH, "Comparison of GO, GO/MWCNTs composite and MWCNTs as potential electrode materials for supercapacitors" 4 : 1855-, 2011

      81 Kong J, "Chemical vapor deposition of methane for single-walled carbon nanotubes" 292 : 567-574, 1998

      82 Xu H, "Characterization of multiwalled carbon nanotubes dispersing in water and association with biological effects" 2011 : 12-, 2011

      83 Xie X, "Characterization of a manganese dioxide/carbon nanotube composite fabricated using an in situ coating method" 45 : 2365-2373, 2007

      84 Farshbaf M, "Carbon quantum dots : recent progress on synthesis, surface modification and applications" 46 : 1331-1348, 2018

      85 Gupta VK, "Carbon nanotubes—from research to applications" IntechOpen 295-312, 2011

      86 Wang J, "Carbon nanotubes(CNTs)production from catalytic pyrolysis of waste plastics : the influence of catalyst and reaction pressure" 351 : 50-57, 2020

      87 Borsodi N, "Carbon nanotubes synthesized from gaseous products of waste polymer pyrolysis and their application" 120 : 304-313, 2016

      88 Das R, "Carbon nanotubes characterization by X-ray powder diffraction—a review" 11 : 1-13, 2015

      89 Zaporotskova IV, "Carbon nanotubes : sensor properties a review" 2 : 95-105, 2016

      90 Qian H, "Carbon nanotube-based hierarchical composites : a review" 20 : 4751-4762, 2010

      91 Frackowiak E, "Carbon materials for the electrochemical storage of energy" 39 : 937-950, 2001

      92 Zolfaghari A, "Capacitive behavior of nanostructured MnO2prepared by sonochemistry method" 52 : 2806-2814, 2007

      93 Singh KK, "Bulk synthesis of multi-walled carbon nanotubes by AC arc discharge method" 231 : 141-151, 2017

      94 Zhao G, "Biomass-based N, P, and S self-doped porous carbon for high-performance supercapacitors" 7 : 12052-12060, 2019

      95 Salunkhe RR, "Binary metal hydroxide nanorods and multi-walled carbon nanotube composites for electrochemical energy storage applications" 22 : 21630-21635, 2012

      96 Boukhalfa S, "Atomic layer deposition of vanadium oxide on carbon nanotubes for high-power supercapacitor electrodes" 5 : 6872-6879, 2012

      97 Vilatela JJ, "A spray pyrolysis method to grow carbon nanotubes on carbon fibres, steel and ceramic bricks" 15 : 2858-2864, 2015

      98 Zhao X, "A novel hybrid supercapacitor with a carbon nanotube cathode and an iron oxide/carbon nanotube composite anode" 19 : 8755-8760, 2009

      99 Li M, "A comparative study of Ni-Mn layered double hydroxide/carbon composites with different morphologies for supercapacitors Phys" 18 : 30068-30078, 2016

      더보기

      분석정보

      View

      상세정보조회

      0

      Usage

      원문다운로드

      0

      대출신청

      0

      복사신청

      0

      EDDS신청

      0

      동일 주제 내 활용도 TOP

      더보기

      주제

      연도별 연구동향

      연도별 활용동향

      연관논문

      연구자 네트워크맵

      공동연구자 (7)

      유사연구자 (20) 활용도상위20명

      이 자료와 함께 이용한 RISS 자료

      나만을 위한 추천자료

      해외이동버튼