Search Results - "Anupriya, K"

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  1. 1

    Highly Ordered Mesoporous Sulfurized Polyacrylonitrile Cathode Material for High-Rate Lithium Sulfur Batteries by Liu, Ying, Haridas, Anupriya K, Cho, Kwon-Koo, Lee, Younki, Ahn, Jou-Hyeon

    Published in Journal of physical chemistry. C (30-11-2017)
    “…A highly ordered mesoporous sulfurized polyacrylonitrile (MSPAN) composite has been synthesized via in situ polymerization of polyacrylonitrile (PAN) in an…”
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    Journal Article
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    Freestanding porous sulfurized polyacrylonitrile fiber as a cathode material for advanced lithium sulfur batteries by Liu, Ying, Haridas, Anupriya K., Lee, Younki, Cho, Kwon-Koo, Ahn, Jou-Hyeon

    Published in Applied surface science (01-04-2019)
    “…Freestanding porous sulfurized polyacrylonitrile/vapor grown carbon fiber (SVF) composite was prepared through a facile electrospinning process followed by…”
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    Boosting High Energy Density Lithium-Ion Storage via the Rational Design of an FeS-Incorporated Sulfurized Polyacrylonitrile Fiber Hybrid Cathode by Haridas, Anupriya K, Heo, Jungwon, Liu, Ying, Ahn, Hyo-Jun, Zhao, Xiaohui, Deng, Zhao, Agostini, Marco, Matic, Aleksandar, Cho, Kwon-Koo, Ahn, Jou-Hyeon

    Published in ACS applied materials & interfaces (21-08-2019)
    “…In order to satisfy the escalating energy demands, it is inevitable to improve the energy density of current Li-ion batteries. As the development of…”
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  5. 5

    Advances in Strategic Inhibition of Polysulfide Shuttle in Room-Temperature Sodium-Sulfur Batteries via Electrode and Interface Engineering by Haridas, Anupriya K., Huang, Chun

    Published in Batteries (Basel) (01-04-2023)
    “…Room-temperature sodium-sulfur batteries (RT-NaSBs) with high theoretical energy density and low cost are ideal candidates for next-generation stationary and…”
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  6. 6

    A Hierarchically Ordered Mesoporous-Carbon-Supported Iron Sulfide Anode for High-Rate Na-Ion Storage by Haridas, Anupriya K., Angulakshmi, Natarajan, Stephan, Arul Manuel, Lee, Younki, Ahn, Jou-Hyeon

    Published in Molecules (Basel, Switzerland) (18-07-2021)
    “…Sodium-ion batteries (SIBs) are promising alternatives to lithium-based energy storage devices for large-scale applications, but conventional lithium-ion…”
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  7. 7

    Simple and scalable gelatin-mediated synthesis of a novel iron sulfide/graphitic carbon nanoarchitecture for sustainable sodium-ion storage by Haridas, Anupriya K., Sadan, Milan K., Liu, Ying, Jung, Hyun Young, Lee, Younki, Ahn, Hyo-Jun, Ahn, Jou-Hyeon

    Published in Journal of alloys and compounds (20-12-2022)
    “…Transition metal sulfide (TMS)-based sodium-ion batteries (SIBs) are inherently different from traditional intercalation-based ones because of their ability to…”
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  8. 8

    Facile synthesis of ceria nanoparticles by precipitation route for UV blockers by Anupriya, K., Vivek, E., Subramanian, B.

    Published in Journal of alloys and compounds (25-03-2014)
    “…•Homogenous precipitation was employed to prepare ceria nanoparticles.•An increase in the specific surface area was observed.•TEM showed particle sizes of…”
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  9. 9

    Spray pyrolysis-deposited nanoengineered TiO2 thick films for ultra-high areal and volumetric capacity lithium ion battery applications by Haridas, Anupriya K., Gangaja, Binitha, Srikrishnarka, Pillalamarri, Unni, Gautam E., Nair, A. Sreekumaran, Nair, Shantikumar V., Santhanagopalan, Dhamodaran

    Published in Journal of power sources (31-03-2017)
    “…Energy storage technologies are sensitively dependent on electrode film quality, thickness and process scalability. In Li-ion batteries, using additive-free…”
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  10. 10

    Biomass-Derived Graphitic Carbon Encapsulated Fe/Fe3C Composite as an Anode Material for High-Performance Lithium Ion Batteries by Liu, Ying, Li, Xueying, Haridas, Anupriya K., Sun, Yuanzheng, Heo, Jungwon, Ahn, Jou-Hyeon, Lee, Younki

    Published in Energies (Basel) (01-02-2020)
    “…Lithium ion (Li-ion) batteries have been widely applied to portable electronic devices and hybrid vehicles. In order to further enhance performance, the search…”
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  11. 11

    Abstract 48: Calcinosis cutis with hyperphosphatemia; A red herring or an etiology? by Patra, Shinjan, Patra, Suman, Nehra, Hardev, Anupriya, K, Mittal, Madhukar, Shukla, Ravindra

    “…Introduction: Calcinosis cutis is an uncommon diseasethat results inprogressive deposition ofinsoluble calcium salts (crystals of calcium phosphate,…”
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  12. 12

    Electrospun Interconnected Bead-Like P2-NaxCoyMn1−yO2 (x = 0.66, y = 0.1) Cathode Material for Stable Sodium-Ion Storage by Haridas, Anupriya K., Sadan, Milan K., Kim, Joo-Hyung, Lee, Younki, Ahn, Jou-Hyeon

    Published in Batteries (Basel) (01-11-2022)
    “…The development of high-rate and long-cycle-life Na-based cathode materials, on par with the performance of commercialized lithium-based cathodes, is crucial…”
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  13. 13

    Nano silicon encapsulated in modified copper as an anode for high performance lithium ion battery by Ha, Jong-Keun, Haridas, Anupriya K., Cho, Gyu-Bong, Ahn, Hyo-Jun, Ahn, Jou-Hyeon, Cho, Kwon-Koo

    Published in Applied surface science (01-07-2019)
    “…Silicon, owing to its exceptionally high theoretical capacity of 4200 mAh/g, is one of the potential anode materials explored by the lithium ion battery…”
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  14. 14

    Realizing High‐Performance Li/Na‐Ion Half/Full Batteries via the Synergistic Coupling of Nano‐Iron Sulfide and S‐doped Graphene by Haridas, Anupriya K., Sadan, Milan K., Kim, Huihun, Heo, Jungwon, Sik Kim, Sun, Choi, Chang‐Ho, Young Jung, Hyun, Ahn, Hyo‐Jun, Ahn, Jou‐Hyeon

    Published in ChemSusChem (22-04-2021)
    “…Iron sulfide (FeS) anodes are plagued by severe irreversibility and volume changes that limit cycle performances. Here, a synergistically coupled hybrid…”
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  15. 15

    Rapid Identification of Rust Resistance Genes Through Cultivar-Specific De Novo Chromosome Assemblies by Thind, Anupriya K, Wicker, Thomas, Krattinger, Simon G

    “…"Map-based cloning" is a frequently used approach to isolate rust resistance genes. A critical step during map-based cloning is the transition from genetic…”
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  16. 16

    Effect of Cross-Linking and Surface Treatment on the Functional Properties of Electrospun Polybenzimidazole Separators for Lithium Metal Batteries by Jung, Ji Hye, Vijayakumar, Vijayalekshmi, Haridas, Anupriya K., Ahn, Jou-Hyeon, Nam, Sang Yong

    Published in ACS omega (27-12-2022)
    “…In this work, electrospun PBI separators with a highly porous structure and nanofiber diameter of about 90–150 nm are prepared using a multi-nozzle under…”
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  17. 17

    Spray pyrolysis-deposited TiO2 thin films as high-performance lithium ion battery anodes by Gangaja, Binitha, Haridas, Anupriya K., Nair, Shantikumar, Santhanagopalan, Dhamodaran

    Published in Ionics (01-08-2018)
    “…Focusing on additive-free electrodes, thin films are of typical interest as electrodes for lithium ion battery application. Herein, we report the fabrication…”
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  18. 18

    Functionalization of fabrics with PANI/CuO nanoparticles by precipitation route for anti-bacterial applications by Thampi, V. V. Anusha, Thanka Rajan, S., Anupriya, K., Subramanian, B.

    “…The present work aims at developing copper oxide nanocrystals immobilized onto the fabrics for the improvement of antimicrobial activity. The CuO nanocrytstals…”
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  19. 19

    In-Situ Construction of Iron Sulfide Nanoparticle Loaded Graphitic Carbon Capsules from Waste Biomass for Sustainable Lithium-Ion Storage by Haridas, Anupriya K, Jeon, Jinwoo, Heo, Jungwon, Liu, Ying, Saroha, Rakesh, Joo, Jong Hoon, Ahn, Hyo-Jun, Cho, Kwon-Koo, Ahn, Jou-Hyeon

    Published in ACS sustainable chemistry & engineering (01-04-2019)
    “…Iron sulfide (FeS) has gained reasonable attention as a potential electrode material for lithium-ion batteries owing to its high specific capacity. However,…”
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  20. 20

    Overcoming copper-induced conversion reactions in nickel disulphide anodes for sodium-ion batteries by Sadan, Milan K, Kim, Taehong, Haridas, Anupriya K, Yu, Hooam, Cumming, Denis, Ahn, Jou-Hyeon, Ahn, Hyo-Jun

    Published in Nanoscale advances (30-04-2024)
    “…Employing copper (Cu) as an anode current collector for metal sulphides is perceived as a general strategy to achieve stable cycle performance in sodium-ion…”
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