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Effect of MoS2 Nanosheets on ACNT-MoS2 Nanohybrids

Binoy Bera, Diptonil Banerjee

Abstract


Here amorphous carbon nanotube – molybdenum disulfide nanohybrids were prepared using hydrothermal method. Here the amount of thiourea and hexaammonium heptamolybdate tetrahydrate were taken in two different amount such as 2.34g:1.28g and 4.68g:2.46g. The amount of amorphous carbon nanotube were kept at 0.5g of fixed amount. Finally the two as prepared nanohybrids were characterized by using field emission scanning electron microscope method.

 


Keywords


Amorphous carbon nanotube – MoS2 nanohybrids, hydrothermal, FE-SEM analysis.

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References


Binoy Bera, Madhumita Das Sarkar. PVDF based Piezoelectric Nanogenerator as a new kind of device for generating power from renewable resources. IOSR Journal of Polymer and Textile Engineering (IOSR-JPTE). Volume 4, Issue 2 (Mar. - Apr. 2017), PP 01-05.

N. G. Prikhod’ko, B. T. Lesbaev, M. Auelkhankyzy, And Z. A. Mansurov. Synthesis Of Graphene Films In A Flame. Russian Journal Of Physical Chemistry B, 2014, Vol. 8, No. 1, Pp. 61–64.

R. Giorgi, Th. Dikonimos, M. Falconieri, S. Gagliardi, N. Lisi, P. Morales, L. Pilloni And E. Salernitano. Synthesis Of Graphene Films On Copper Substrates By Cvd Of Different Precursors. Nicola Lisi, 15 January 2014.

S. Santra, N. S. Das; N. Besra, D. Banerjee, K. K. Chattopadhyay, Graphene anchored P-type CuBO2 nanocrystals for transparent cold cathode. Langmuir 33 (2017) 9961-71

Gunho Jo, Minhyeok Choe, Sangchul Lee, Woojin Park, Yung Ho Kahng And Takhee Lee. The Application Of Graphene As Electrodes In Electrical And Optical Devices. Nanotechnology 23 (2012) 112001 (19pp).

D. Das, D. Banerjee, D. Pahari, U.K. Ghorai, S. Sarkar, N.S. Das, K.K. Chattopadhyay, Defect Induced Tuning of Photoluminescence Property in Graphitic Carbon Nitride Nanosheets through Synthesis Conditions. J. Luminescence 185 (2017) 155-165

D. Banerjee, P. Bhowmick, D. Pahari, S. Santra, S. Sarkar, B. Das, K. K. Chattopadhyay, Pseudo First Ordered Adsorption of Noxious Textile Dyes by Low-Temperature Synthesized Amorphous Carbon Nanotubes Physica E 87 (2017) 68-76.

Joseph K. Papp, Jason D. Forster, Colin M. Burke, Hyo Won Kim, Alan C. Luntz, Robert M. Shelby, Jeffrey J. Urban, and Bryan D. McCloskey. Poly(vinylidene fluoride) (PVDF) Binder Degradation in Li–O2 Batteries: A Consideration for the Characterization of Lithium Superoxide. J. Phys. Chem. Lett., 2017, 8 (6), pp 1169–1174. DOI: 10.1021/acs.jpclett.7b00040.

Binoy Bera, Madhumita Das Sarkar. Gold Nanoparticle Doped PVDF Nanofiber Preparation of Concurrently Harvesting Light and Mechanical Energy. IOSR Journal of Applied Physics (IOSR-JAP).Volume 9, Issue 3 Ver. III (May - June 2017), PP 05-12.

Xiaomei Caia, Tingping Lei, Daoheng Sund and Liwei Linde, A critical analysis of the α, β and γ phases in poly(vinylidene fluoride) using FTIR. DOI: 10.1039/C7RA01267E (Paper) RSC Adv., 2017, 7, 15382-15389.

S. Abdalla, A. Obaid, F. M. Al-Marzouki. Preparation and characterization of poly(vinylidene fluoride): A high dielectric performance nano-composite for electrical storage. Results in Physics. Volume 6, 2016, Pages 617-626.

Lina Wang, Ying Ma, Min Yang, Yanxing Qi. Titanium plate supported MoS2nanosheet arrays for supercapacitorapplication. Applied Surface Science xxx (2016) xxx–xxx. http://dx.doi.org/10.1016/j.apsusc.2016.11.193.

Yuanhong Xu, Jingquan Liu. Graphene as Transparent Electrodes: Fabrication and New Emerging Applications. Volume12,Issue11March16,2016, Pages 1400–1419. DOI: 10.1002/smll.201502988

Martin Pumera, Graphene-based nanomaterials for energy storage, Energy Environ. Sci., 2011,4, 668-674. DOI:10.1039/C0EE00295J.

Yue Zhang, Qunwei Tang, Benlin He and Peizhi Yang. Graphene enabled all-weather solar cells for electricity harvest from sun and rain. J. Mater. Chem. A, 2016,4, 13235-13241. DOI:10.1039/C6TA05276B.

Hyunmin Kim, Jong-Hyun Ahn Graphene for flexible and wearable device applications. Carbon. Volume 120, August 2017, Pages 244-257. https://doi.org/10.1016/j.carbon.2017.05.041.

BrunoF. Machado and Philippe Serp. Graphene-based materials for catalysis.

Catal. Sci. Technol., 2012,2, 54-75 . DOI:10.1039/C1CY00361E.

John R. Miller, R. A. Outlaw, B. C. Holloway. Graphene Double-Layer Capacitor with ac Line-Filtering Performance. Science 24 Sep 2010: Vol. 329, Issue 5999, pp. 1637-1639. DOI: 10.1126/science.1194372.

DianaBerman, AliErdemir, Anirudha V. Sumant. Graphene: a new emerging lubricant. Materials Today, Volume 17, Issue 1, January–February 2014, Pages 31-42.

Mehmet Copuroglu, Pinar Aydogan, Emre O. Polat, Coskun Kocabas, and Sefik Süzer. Gate-Tunable Photoemission from Graphene Transistors. Nano Lett., 2014, 14 (5), pp 2837–2842. DOI: 10.1021/nl500842y.

Yi Han, Zhen Xu, Chao Gao. Ultrathin Graphene Nanofiltration Membrane for Water Purification. Advanced Functional Materials. Volume 23, Issue 29. August 7, 2013. Pages 3693–3700. DOI: 10.1002/adfm.201202601.

Gonçalo da Cunha Rodrigues, Pavel Zelenovskiy, Konstantin Romanyuk, Sergey Luchkin, Yakov Kopelevich & Andrei Kholkin. Strong piezoelectricity in single-layer graphene deposited on SiO2 grating substrates. Nat. Commun. 7:7572 doi: 10.1038/ncomms8572 (2015).

B. Bera. Literature Review on Electrospinning Process (A Fascinating Fiber Fabrication Technique). Imperial Journal of Interdisciplinary Research (IJIR). Vol-2, Issue-8, 2016.

B. Bera, Madhumita.Das Sarkar. Piezoelectricity in PVDF and PVDF Based Piezoelectric Nanogenerator: A Concept . IOSR Journal of Applied Physics (IOSR-JAP). Volume 9, Issue 3 Ver. I, PP 95-99.

Binoy Bera, Dipankar Mandal, Madhumita Das Sarkar. Sensor Made of PVDF/graphene Electrospinning Fiber and Comparison between Electrospinning PVDF Fiber and PVDF/graphene Fiber. Imperial Journal of Interdisciplinary Research (IJIR). Vol-2, Issue-5, 2016.

Binoy Bera. Preparation of polymer nanofiber and its application. Asian journal of physical and chemical sciences. volume 2, issue 4, 1-4, 2017. article no. AJOPACS. 35651.

Binoy Bera. Literature Review on Triboelectric Nanogenerator. Imperial Journal of Interdisciplinary Research(IJIR). 2(10):1263-1271·January2016.

Binoy Bera. Preparation of MoS2 nanosheets and PVDF nanofiber. Asian journal of physical and chemical sciences. volume 2, issue 4, 1-9, 2017.article no. AJOPACS. 35176.

Binoy Bera. Nanoporous Silicon Prepared by Vapour Phase Strain Etch and Sacrificial Technique. IJCA Proceedings on International Conference on Microelectronic Circuit and System MICRO 2015(1):42-45, December 2015.

BinoyBera, Dipankar Mandal, Madhumita Das Sarkar. Porous Silicon and its Nanoparticle as Biomaterial: A Review. Imperial Journal of Interdisciplinary Research (IJIR). Vol-2, Issue-11, 2016. (4).

Binoy Bera, Diptonil Banerjee. Preparation and Characterization of Amorphous Carbon Nanotube-MoS2 Nanohybrid. International Journal of Research in Engineering, Science and Management Volume-2, Issue-8, August-2019, 5-8p.

Binoy Bera. A Review on Polymer, Graphene and Carbon Nanotube: Properties, Synthesis and Applications. Imperial Journal of Interdisciplinary Research (IJIR). Vol-3, Issue-10, 2017.

Hari Sarkar, Binoy Bera, Sudakshina Kundu. Sleep Mode Transistor Sizing Effect of MTCMOS Inverter Circuit on Performance in Deep Submicron Technology. Global Journal of Trends in Engineering (GJTE). Vol(2)-Issue(4), 2015.

Binoy Bera, Madhumita Das Sarkar. Piezoelectric Effect, Piezotronics and Piezophototronics: A Review. Imperial Journal of Interdisciplinary Research (IJIR). Vol-2, Issue-11, 2016.

Binoy Bera. Synthesis, Properties and Applications of Amorphous Carbon Nanotube and MoS2 Nanosheets: A Review. Nano Trends: A Journal of Nanotechnology and Its Applications. 2019; 21(1): 36–52p.

J.M. Tarascon, M. Armand. Issues and challenges facing rechargeable lithiumbatteries, Nature 414 (2001) 359–367.

A.S. Arico, P. Bruce, B. Scrosati, J.M. Tarascon, W. van Schalkwijk. Nanostructured materials for advanced energy conversion and storagedevices, Nat. Mater. 4 (2005) 366–377.

X. Li, Y. Feng, M. Li, W. Li, H. Wei, D. Song. Smart hybrids of Zn2GeO4nanoparticles and ultrathin g-C3N4 layers: synergistic lithium storage andexcellent electrochemical performance, Adv. Funct. Mater. 25 (2015)6858–6866.

M. Armand, J.M. Tarascon. Building better batteries, Nature 451 (2008)652–657.

B. Kang, G. Ceder. Battery materials for ultrafast charging and discharging,Nature 458 (2009) 190–193.

X. Li, W. Li, M. Li, P. Cui, D. Chen, T. Gengenbach, L. Chu, H. Liu, G. Song. Glucose-assisted synthesis of the hierarchical TiO2 nanowire@MoS2nanosheet nanocomposite and its synergistic lithium storage performance, J.Mater. Chem. A 3 (2015) 2762–2769.

D. Larcher, S. Beattie, M. Morcrette, K. Edstrom, J.-C. Jumas, J.-M. Tarascon. Recent findings and prospects in the field of pure metals as negativeelectrodes for Li-ion batteries, J. Mater. Chem. 17 (2007) 3759–3772.

Y. Feng, X. Li, Z. Shao, H. Wang. Morphology-dependent performance of Zn2GeO4 as a high-performance anode material for rechargeable lithium ionbatteries, J. Mater. Chem. A 3 (2015) 15274–15279.

L. Chu, M. Li, X. Li, Y. Wang, Z. Wan, S. Dou, D. Song, Y. Li, B. Jiang. Highperformance NiO microsphere anode assembled from porous nanosheets forlithium-ion batteries, RSC Adv. 5 (2015) 49765–49770.

P. Cui, B. Xie, X. Li, M. Li, Y. Li, Y. Wang, Z. Liu, X. Liu, J. Huang, D. Song, J.M.Mbengue. Anatase/TiO2-B hybrid microspheres constructed from ultrathinnanosheets: facile synthesis and application for fast lithium ion storage,CrystEngComm 17 (2015) 7930–7937.

T. Stephenson, Z. Li, B. Olsen, D. Mitlin. Lithium ion battery applications ofmolybdenum disulfide (MoS2) nanocomposites, Energ. Environ. Sci. 7 (2014)209–231.

H. Hwang, H. Kim, J. Cho. MoS2 nanoplates consisting of disorderedgraphene-like layers for high rate lithium battery anode materials, Nano Lett.11 (2011) 4826–4830.

R. Dominko, D. Arcon, A. Mrzel, A. Zorko, P. Cevc, P. Venturini, M. Gaberscek,M. Ramskar, D. Mihailovic. Dichalcogenide nanotube electrodes for Li-ionbatteries, ChemInform 34 (2003) 1531–1534.

H. Li, W. Li, L. Ma, W. Chen, J. Wang. Electrochemical lithiation/delithiationperformances of 3D flowerlike MoS2 powders prepared by ionic liquidassisted hydrothermal route, J. Alloy Compd. 471 (2009) 442–447.

Y. Kim, J.B. Goodenough. Lithium insertion into transition-metalmonosulfides: tuning the position of the metal 4s band, J. Phys. Chem. C 112(2008) 15060–15064.

X. Wang, Q. Xiang, B. Liu, L. Wang, T. Luo, D. Chen, G. Shen. TiO2 modified FeSnanostructures with enhanced electrochemical performance for lithium-ionbatteries, Sci. Rep. 3 (2013) 10454–10461.

L. Ji, M. Rao, H. Zheng, L. Zhang, Y. Li, W. Duan, J. Guo, E.J. Cairns, Y. Zhang. Graphene oxide as a sulfur immobilizer in high performance lithium/sulfurcells, J. Am. Chem. Soc. 133 (2011) 18522–18525.

Q. Fan, P.J. Chupas, M.S. Whittingham. Characterization of amorphous andcrystalline tin–cobalt anodes, Electrochem. Solid State 10 (2007).

T. Matsuyama, A. Hayashi, T. Ozaki, S. Mori, M. Tatsumisago. Electrochemicalproperties of all-solid-state lithium batteries with amorphous MoS3electrodes prepared by mechanical milling, J. Mater. Chem. A 3 (2015)14142–14147.

E. Hüger, L. Dörrer, J. Rahn, T. Panzner, J. Stahn, G. Lilienkamp, H. Schmidt. Lithium transport through nanosized amorphous silicon layers, Nano Lett. 13(2013) 1237–1244.

X. Li, X. Meng, J. Liu, D. Geng, Y. Zhang, M.N. Banis, Y. Li, J. Yang, R. Li, X. Sun,M. Cai, M.W. Verbrugge. Tin oxide with controlled morphology andcrystallinity by atomic layer deposition onto graphene nanosheets forenhanced lithium storage, Adv. Funct. Mater. 22 (2012) 1647–1654.

H. Ghassemi, M. Au, N. Chen, P.A. Heiden, R.S. Yassar. In situ electrochemicallithiation/delithiation observation of individual amorphous Si nanorods, ACSNano 5 (2011) 7805–7811.

Y. Jiang, D. Zhang, Y. Li, T. Yuan, N. Bahlawane, C. Liang, W. Sun, Y. Lu, M. Yan. Amorphous Fe2O3 as a high-capacity, high-rate and long-life anode materialfor lithium ion batteries, Nano Energy 4 (2014) 23–30.




DOI: https://doi.org/10.37628/ijan.v5i2.594

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