2016
DOI: 10.1021/acsnano.6b06597
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High-Capacitance Mechanism for Ti3C2Tx MXene by in Situ Electrochemical Raman Spectroscopy Investigation

Abstract: MXenes represent an emerging family of conductive two-dimensional materials. Their representative, TiCT, has been recognized as an outstanding member in the field of electrochemical energy storage. However, an in-depth understanding of fundamental processes responsible for the superior capacitance of TiCT MXene in acidic electrolytes is lacking. Here, to understand the mechanism of capacitance in TiCT MXene, we studied electrochemically the charge/discharge processes of TiCT electrodes in sulfate ion-containin… Show more

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Cited by 468 publications
(349 citation statements)
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References 28 publications
(54 reference statements)
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“…However, the expansion upon intercalation for cathodic potentials (−0.1 to −0.8 V/Ag) is not significant compared to the cycling of Ti 3 C 2 T x with other electrolytes, [46] and suggests the origin of the optical peak shift is not because of the intercalation/deintercalation of H + ions alone. [33] The scattering peak at 723 cm −1 is assigned to the out-of-plane vibration of a CTi bond surrounded by an O-termination, such as in Ti 3 C 2 O 2 , whereas the peak at 708 cm −1 corresponds to that of C-Ti in a Ti 3 C 2 O(OH) environment. The pseudocapacitive mechanism relies on the reduction and oxidation of Ti-O/Ti-OH terminations, and the variation of the oxidation state of Ti in Ti 3 C 2 T x .…”
Section: Understanding the Mechanism Involved In The Electrochromic Cmentioning
confidence: 99%
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“…However, the expansion upon intercalation for cathodic potentials (−0.1 to −0.8 V/Ag) is not significant compared to the cycling of Ti 3 C 2 T x with other electrolytes, [46] and suggests the origin of the optical peak shift is not because of the intercalation/deintercalation of H + ions alone. [33] The scattering peak at 723 cm −1 is assigned to the out-of-plane vibration of a CTi bond surrounded by an O-termination, such as in Ti 3 C 2 O 2 , whereas the peak at 708 cm −1 corresponds to that of C-Ti in a Ti 3 C 2 O(OH) environment. The pseudocapacitive mechanism relies on the reduction and oxidation of Ti-O/Ti-OH terminations, and the variation of the oxidation state of Ti in Ti 3 C 2 T x .…”
Section: Understanding the Mechanism Involved In The Electrochromic Cmentioning
confidence: 99%
“…The pseudocapacitive mechanism relies on the reduction and oxidation of Ti-O/Ti-OH terminations, and the variation of the oxidation state of Ti in Ti 3 C 2 T x . [33] Adv. [33] The scattering peak at 723 cm −1 is assigned to the out-of-plane vibration of a CTi bond surrounded by an O-termination, such as in Ti 3 C 2 O 2 , whereas the peak at 708 cm −1 corresponds to that of C-Ti in a Ti 3 C 2 O(OH) environment.…”
Section: Understanding the Mechanism Involved In The Electrochromic Cmentioning
confidence: 99%
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“…[9][10][11] However, as for supercapacitor applications, the explorations are extremely scarce. [15,16] However, although breakthroughs were made by pristine MXene films, development of the energy storage performances of MXene-based flexible supercapacitors is still in its infancy.Advanced 2D materials have spurred great interest as a new paradigm in pursuing improved energy storage performance. [14] As a result, the multistacked MXene "paper" freestanding electrodes demonstrate excellent energy storage performances, which are on the topmost level among conventional freestanding electrodes based on graphene and carbon nanotube.…”
mentioning
confidence: 99%
“…[14] As a result, the multistacked MXene "paper" freestanding electrodes demonstrate excellent energy storage performances, which are on the topmost level among conventional freestanding electrodes based on graphene and carbon nanotube. [15,16] However, although breakthroughs were made by pristine MXene films, development of the energy storage performances of MXene-based flexible supercapacitors is still in its infancy.…”
mentioning
confidence: 99%