Additive-free MXene inks and direct printing of micro-supercapacitors

Чернила на основе MXene без добавок и прямая печать микросуперконденсаторов
Jonathan N. Coleman, Yury Gogotsi, Babak Anasori, Chuanfang Zhang, Cormac Ó Coileáin, Lorcan McKeon, Matthias P. Kremer, Sang‐Hoon Park, Oskar Ronan, Andrés Seral‐Ascaso, Sebastian Barwich, Niall McEvoy, Hannah C. Nerl, Valeria Nicolosi
2019-04-17

Additive-free MXene inksDirect printingInkjet and extrusion printingMicro-supercapacitorsTitanium carbide (Ti3C2Tx)
Abstract Direct printing of functional inks is critical for applications in diverse areas including electrochemical energy storage, smart electronics and healthcare. However, the available printable ink formulations are far from ideal. Either surfactants/additives are typically involved or the ink concentration is low, which add complexity to the manufacturing and compromises the printing resolution. Here, we demonstrate two types of two-dimensional titanium carbide (Ti 3 C 2 T x ) MXene inks, aqueous and organic in the absence of any additive or binary-solvent systems, for extrusion printing and inkjet printing, respectively. We show examples of all-MXene-printed structures, such as micro-supercapacitors, conductive tracks and ohmic resistors on untreated plastic and paper substrates, with high printing resolution and spatial uniformity. The volumetric capacitance and energy density of the all-MXene-printed micro-supercapacitors are orders of magnitude greater than existing inkjet/extrusion-printed active materials. The versatile direct-ink-printing technique highlights the promise of additive-free MXene inks for scalable fabrication of easy-to-integrate components of printable electronics.
1
Additive-free MXene inks enable high-resolution, spatially uniform printing on untreated plastic and paper substrates.
2
All-MXene structures, including micro-supercapacitors, conductive tracks, and ohmic resistors, are directly printed using the inks.
3
Printed MXene micro-supercapacitors achieve volumetric capacitance and energy density orders of magnitude higher than existing inkjet- and extrusion-printed active materials.
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The direct-printing approach supports scalable fabrication of easily integrated components for printable electronics.
5
The study develops aqueous and organic Ti3C2Tx MXene inks without additives or binary-solvent systems for extrusion and inkjet printing.

Additive-free aqueous and organic Ti3C2Tx MXene inks and the all-MXene-printed micro-supercapacitors

Printability, printing resolution and electrochemical energy-storage performance of the MXene inks and printed micro-supercapacitors

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2019-04-17
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Authors
Jonathan N. Coleman
Yury Gogotsi
Babak Anasori
Chuanfang Zhang
Cormac Ó Coileáin
Lorcan McKeon
Matthias P. Kremer
Sang‐Hoon Park
Oskar Ronan
Andrés Seral‐Ascaso
Sebastian Barwich
Niall McEvoy
Hannah C. Nerl
Valeria Nicolosi
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