Search Results - "Mathis, Tyler"

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  1. 1

    Energy Storage Data Reporting in Perspective—Guidelines for Interpreting the Performance of Electrochemical Energy Storage Systems by Mathis, Tyler S., Kurra, Narendra, Wang, Xuehang, Pinto, David, Simon, Patrice, Gogotsi, Yury

    Published in Advanced energy materials (01-10-2019)
    “…Due to the tremendous importance of electrochemical energy storage, numerous new materials and electrode architectures for batteries and supercapacitors have…”
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  2. 2

    Titanium Carbide MXene Shows an Electrochemical Anomaly in Water-in-Salt Electrolytes by Wang, Xuehang, Mathis, Tyler S, Sun, Yangyunli, Tsai, Wan-Yu, Shpigel, Netanel, Shao, Hui, Zhang, Danzhen, Hantanasirisakul, Kanit, Malchik, Fyodor, Balke, Nina, Jiang, De-en, Simon, Patrice, Gogotsi, Yury

    Published in ACS nano (28-09-2021)
    “…Identifying and understanding charge storage mechanisms is important for advancing energy storage. Well-separated peaks in cyclic voltammograms (CVs) are…”
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  3. 3

    Modified MAX Phase Synthesis for Environmentally Stable and Highly Conductive Ti3C2 MXene by Mathis, Tyler S, Maleski, Kathleen, Goad, Adam, Sarycheva, Asia, Anayee, Mark, Foucher, Alexandre C, Hantanasirisakul, Kanit, Shuck, Christopher E, Stach, Eric A, Gogotsi, Yury

    Published in ACS nano (27-04-2021)
    “…One of the primary factors limiting further research and commercial use of the two-dimensional (2D) titanium carbide MXene Ti3C2, as well as MXenes in general,…”
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  4. 4

    Thickness-independent capacitance of vertically aligned liquid-crystalline MXenes by Xia, Yu, Mathis, Tyler S., Zhao, Meng-Qiang, Anasori, Babak, Dang, Alei, Zhou, Zehang, Cho, Hyesung, Gogotsi, Yury, Yang, Shu

    Published in Nature (London) (01-05-2018)
    “…The scalable and sustainable manufacture of thick electrode films with high energy and power densities is critical for the large-scale storage of…”
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  5. 5

    Selective Etching of Silicon from Ti3SiC2 (MAX) To Obtain 2D Titanium Carbide (MXene) by Alhabeb, Mohamed, Maleski, Kathleen, Mathis, Tyler S., Sarycheva, Asia, Hatter, Christine B., Uzun, Simge, Levitt, Ariana, Gogotsi, Yury

    Published in Angewandte Chemie (International ed.) (04-05-2018)
    “…Until now, MXenes could only be produced from MAX phases containing aluminum, such as Ti3AlC2. Here, we report on the synthesis of Ti3C2 (MXene) through…”
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  6. 6

    Maximizing ion accessibility in MXene-knotted carbon nanotube composite electrodes for high-rate electrochemical energy storage by Gao, Xiang, Du, Xuan, Mathis, Tyler S., Zhang, Mengmeng, Wang, Xuehang, Shui, Jianglan, Gogotsi, Yury, Xu, Ming

    Published in Nature communications (02-12-2020)
    “…Improving the accessibility of ions in the electrodes of electrochemical energy storage devices is vital for charge storage and rate performance. In…”
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  7. 7

    Tuning the Electrochemical Performance of Titanium Carbide MXene by Controllable In Situ Anodic Oxidation by Tang, Jun, Mathis, Tyler S., Kurra, Narendra, Sarycheva, Asia, Xiao, Xu, Hedhili, Mohamed N., Jiang, Qiu, Alshareef, Husam N., Xu, Baomin, Pan, Feng, Gogotsi, Yury

    Published in Angewandte Chemie (International ed.) (02-12-2019)
    “…MXenes are a class of two‐dimensional (2D) transition metal carbides, nitrides and carbonitrides that have shown promise for high‐rate pseudocapacitive energy…”
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  8. 8

    Additive‐Free Aqueous MXene Inks for Thermal Inkjet Printing on Textiles by Uzun, Simge, Schelling, Marion, Hantanasirisakul, Kanit, Mathis, Tyler S., Askeland, Ron, Dion, Genevieve, Gogotsi, Yury

    “…Direct printing of functional inks onto flexible substrates allows for scalable fabrication of wearable electronics. However, existing ink formulations for…”
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  9. 9

    Direct Assessment of Nanoconfined Water in 2D Ti 3 C 2 Electrode Interspaces by a Surface Acoustic Technique by Shpigel, Netanel, Levi, Mikhael D, Sigalov, Sergey, Mathis, Tyler S, Gogotsi, Yury, Aurbach, Doron

    Published in Journal of the American Chemical Society (18-07-2018)
    “…Although significant progress has been achieved in understanding of ion-exchange mechanisms in the new family of 2D transition metal carbides and nitrides…”
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  10. 10

    Direct Assessment of Nanoconfined Water in 2D Ti3C2 Electrode Interspaces by a Surface Acoustic Technique by Shpigel, Netanel, Levi, Mikhael D, Sigalov, Sergey, Mathis, Tyler S, Gogotsi, Yury, Aurbach, Doron

    Published in Journal of the American Chemical Society (18-07-2018)
    “…Although significant progress has been achieved in understanding of ion-exchange mechanisms in the new family of 2D transition metal carbides and nitrides…”
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    Journal Article
  11. 11

    Optimizing Ion Pathway in Titanium Carbide MXene for Practical High‐Rate Supercapacitor by Tang, Jun, Mathis, Tyler, Zhong, Xiongwei, Xiao, Xu, Wang, Hao, Anayee, Mark, Pan, Feng, Xu, Baomin, Gogotsi, Yury

    Published in Advanced energy materials (01-01-2021)
    “…The lengthened ion pathway in restacked 2D materials greatly limits the electrochemical performance of practically dense film electrodes (mass loading >10 mg…”
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  12. 12

    Delamination of MXenes using bovine serum albumin by Seredych, Mykola, Maleski, Kathleen, Mathis, Tyler S., Gogotsi, Yury

    “…Delamination of two-dimensional materials is a requisite step for exploiting their unique properties. Herein, we report on the formation of stable colloidal…”
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  13. 13

    Nanodiamonds suppress the growth of lithium dendrites by Cheng, Xin-Bing, Zhao, Meng-Qiang, Chen, Chi, Pentecost, Amanda, Maleski, Kathleen, Mathis, Tyler, Zhang, Xue-Qiang, Zhang, Qiang, Jiang, Jianjun, Gogotsi, Yury

    Published in Nature communications (25-08-2017)
    “…Lithium metal has been regarded as the future anode material for high-energy-density rechargeable batteries due to its favorable combination of negative…”
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  14. 14
  15. 15

    Hydrogen-Bond Restructuring of Water-in-Salt Electrolyte Confined in Ti3C2Tx MXene Monitored by Operando Infrared Spectroscopy by Lounasvuori, Mailis, Mathis, Tyler S, Gogotsi, Yury, Petit, Tristan

    Published in The journal of physical chemistry letters (16-02-2023)
    “…Highly concentrated water-in-salt aqueous electrolytes exhibit a wider potential window compared to conventional, dilute aqueous electrolytes. Coupled with…”
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  16. 16

    Vibrational signature of hydrated protons confined in MXene interlayers by Lounasvuori, Mailis, Sun, Yangyunli, Mathis, Tyler S., Puskar, Ljiljana, Schade, Ulrich, Jiang, De-En, Gogotsi, Yury, Petit, Tristan

    Published in Nature communications (10-03-2023)
    “…The hydration structure of protons has been studied for decades in bulk water and protonated clusters due to its importance but has remained elusive in planar…”
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  17. 17

    Probing the In Situ Pseudocapacitive Charge Storage in Ti3C2 MXene Thin Films with X‑ray Reflectivity by Sobyra, Thomas B, Mathis, Tyler S, Gogotsi, Yury, Fenter, Paul

    Published in ACS applied materials & interfaces (15-09-2021)
    “…MXenes are a large family of two-dimensional materials that are attractive for energy storage due to their high-rate charging capabilities as well as for…”
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  18. 18
  19. 19

    Hydrogen-Bond Restructuring of Water-in-Salt Electrolyte Confined in Ti 3 C 2 T x MXene Monitored by Operando Infrared Spectroscopy by Lounasvuori, Mailis, Mathis, Tyler S, Gogotsi, Yury, Petit, Tristan

    Published in The journal of physical chemistry letters (16-02-2023)
    “…Highly concentrated water-in-salt aqueous electrolytes exhibit a wider potential window compared to conventional, dilute aqueous electrolytes. Coupled with…”
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    Journal Article
  20. 20

    Influences from solvents on charge storage in titanium carbide MXenes by Wang, Xuehang, Mathis, Tyler S., Li, Ke, Lin, Zifeng, Vlcek, Lukas, Torita, Takeshi, Osti, Naresh C., Hatter, Christine, Urbankowski, Patrick, Sarycheva, Asia, Tyagi, Madhusudan, Mamontov, Eugene, Simon, Patrice, Gogotsi, Yury

    Published in Nature energy (01-03-2019)
    “…Pseudocapacitive energy storage in supercapacitor electrodes differs significantly from the electrical double-layer mechanism of porous carbon materials, which…”
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