Showing 101 - 120 results of 453 for search '"graphene"', query time: 0.06s Refine Results
  1. 101

    Room temperature ferroelectricity in monolayer graphene sandwiched between hexagonal boron nitride by Fanrong Lin, Xiaoyu Xuan, Zhonghan Cao, Zhuhua Zhang, Ying Liu, Minmin Xue, Yang Hang, Xin Liu, Yizhou Zhao, Libo Gao, Wanlin Guo, Yanpeng Liu

    Published 2025-01-01
    “…The ferroelectricity also exists in similarly sandwiched bilayer and trilayer graphene, yet the polarization is slightly decreased with odd-even parity. …”
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  2. 102
  3. 103

    Performance of Novel Randomly Oriented High Graphene Carbon in Lithium Ion Capacitors by Rahul S. Kadam, Kishor P. Gadkaree

    Published 2018-01-01
    “…This data clearly shows advantage of the randomly oriented graphene platelet structure of ROHG in lithium ion capacitor performance.…”
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  4. 104
  5. 105

    Optical memory and counter using a graphene based hybrid plasmonic temporal integrator by Faezeh Bahrami-Chenaghlou, Amir Habibzadeh-Sharif, Afshin Ahmadpour

    Published 2025-02-01
    “…Due to the valuable features of graphene hybrid plasmonic technology, the footprint of these INTs is equal to 4 × 3.5 µm2 for GHP-ADRR and 5.4 × 3.6 µm2 for GHP-PRR. …”
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  6. 106

    Graphene Oxide as a Nanocarrier for Controlled Loading and Targeted Delivery of Typhonium giganteum Drugs by Xiaohua Gu, Rui Cao, Fu Li, Yan Li, Hongge Jia, Hui Yu

    Published 2018-01-01
    “…In this study, Typhonium giganteum containing dual-function nanofibers composed of poly(butylene carbonate), polylactic acid, and graphene oxide (PBC/PLA/GO) were successfully fabricated by electrospinning. …”
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  7. 107

    Simultaneous Determination of Hydroquinone, Catechol and Resorcinol at Graphene Doped Carbon Ionic Liquid Electrode by Li Ma, Guang-Chao Zhao

    Published 2012-01-01
    “…A new composite electrode has been prepared with doping graphene into the paste consisting graphite and ionic liquid, n-octyl-pyridinum hexafluorophosphate (OPFP). …”
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  8. 108

    Design and Fabrication of Flexible Nanoantenna-Based Sensor Using Graphene-Coated Carbon Cloth by Senthil Kumar Kandasamy, S. Maheswaran, S. Anbu Karuppusamy, J. Indra, R. Anand, P. Rega, A. Kavitha, K. Immanuvel Arokia James, Kasthuri Nehru, K. Kathiresan

    Published 2022-01-01
    “…A graphene substrate with a thickness of h = 0.5 cm is formed which is then used for fabricating a graphene nanoantenna working at 5 GHz. …”
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  9. 109
  10. 110
  11. 111

    Comparison of Electronic Structure and Magnetic Properties of Few Layer Graphene and Multiwall Carbon Nanotubes by Sekhar Chandra Ray

    Published 2016-01-01
    “…A comparative study has been made for the non-catalyst based few layer graphene (FLG) and Fe-catalyst based multiwall carbon nanotubes (MWCNTs). …”
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  12. 112

    Tuning Rheological Performance of Silica Concentrated Shear Thickening Fluid by Using Graphene Oxide by Wenchao Huang, Yanzhe Wu, Ling Qiu, Cunku Dong, Jie Ding, Dan Li

    Published 2015-01-01
    “…The addition of a small amount of graphene oxide into a traditional colloidal silica-based shear thickening fluid (STF) can lead to a significant change in viscosity, critical shear rate, storage modulus, and loss modulus of STF. …”
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  13. 113

    Substrate, temperature, and magnetic field dependence of electric polarization in mixed-stacking tetralayer graphenes by Patrick Johansen Sarsfield, Aitor Garcia-Ruiz (艾飛宇), Vladimir I. Fal'ko

    Published 2024-12-01
    “…Polytypes of tetralayer graphene (TLG: Bernal, rhombohedral, and mixed stacking) are crystalline structures with different symmetries. …”
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  14. 114
  15. 115

    Graphene-Based Full-Duplex Antenna for Future Generation Communication in THz Frequency Range by Avez Syed, Mansour H. Almalki

    Published 2023-01-01
    “…A proximity-coupled graphene patch-based full-duplex antenna is proposed for terahertz (THz) applications. …”
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  16. 116

    Direct probing of energy gaps and bandwidth in gate-tunable flat band graphene systems by Jin Jiang, Qixuan Gao, Zekang Zhou, Cheng Shen, Mario Di Luca, Emily Hajigeorgiou, Kenji Watanabe, Takashi Taniguchi, Mitali Banerjee

    Published 2025-02-01
    “…Here, we report a technique to investigate the nuanced intricacies of band structures in dual-gated multilayer graphene systems. We utilize the Landau levels of a decoupled monolayer graphene to extract the electric field-dependent bilayer graphene charge neutrality point gap. …”
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  17. 117

    Facile Synthesis of Graphene Oxide/Titanate Nanotube Composites and Their Application for Cobalt(II) Removal by Min-Da Xu, Zhen Jin, Wen-Jie Xie, De-Cai Wang, Guang-Song Xu, Ai-Jing Wang, Ran Zhang, Jian Huang

    Published 2022-01-01
    “…In this work, the novel graphene oxide/titanate nanotubes (GTNT) composites were synthesized through a facile and high-yield alkaline hydrothermal method. …”
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  18. 118

    Microwave Synthesis of Zinc Oxide/Reduced Graphene Oxide Hybrid for Adsorption-Photocatalysis Application by Fatin Saiha Omar, Huang Nay Ming, Syed Muhamad Hafiz, Lim Hong Ngee

    Published 2014-01-01
    “…This work reports on synthesis of zinc oxide/reduced graphene oxide (ZnO/rGO) nanocomposites in the presence of diethylenetriamine (DETA) via a facile microwave method. …”
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  19. 119

    Development of a mussel-inspired conductive graphene coated cotton yarn for wearable sensors by Guanliang He, Chuang Zhu, Yuze Shi, Yingjia Yu, Yi Wu, Constantinos Soutis, Le Cao, Xuqing Liu

    Published 2025-02-01
    “…Summary: Graphene-based flexible yarn sensors are promising due to their exceptional conductivity and user-friendly properties, but ensuring stable graphene adsorption on fibers for long-term durability remains challenging. …”
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  20. 120

    Adsorption of Phenols from Different Solvents on Graphene: Semi-Empirical Quantum Mechanical Calculations by Pablo Húmpola, Héctor S. Odetti, Alberto G. Albesa, José L. Vicente

    Published 2013-04-01
    “…Our results raise doubts that phenol is primarily adsorbed in flat position on the graphene layers, and consequently whether the adsorption forces are controlled by π–π dispersion interactions between the aromatic ring of phenol and the graphene layer structure. …”
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