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2020

Journal Articles

11.

T. Mo; S. Bi; Y. Zhang; V. Presser; X. Wang; Y. Gogotsi; G. Feng

Ion structure transition enhances the charging dynamics in subnanometer pores Journal Article

ACS nano, 14 (2), pp. 2395-2403, 2020.

Links | BibTeX | Tags: carbon, energy storage, ionic liquids, supercapacitor

2019

Journal Articles

10.

S. Fleischmann; M. Widmaier; A. Schreiber; H. Shim; F.M. Stiemke; T.J.S. Schubert; V. Presser

High voltage asymmetric hybrid supercapacitors using lithium- and sodium-containing ionic liquids Journal Article

Energy Storage Materials, 16 (1), pp. 391-399, 2019.

Links | BibTeX | Tags: batteries, carbon, energy storage, ionic liquids

2018

PhD Theses

9.

B. Krüner

Polymer-derived carbides and carbons with and without nitrogen-doping for electrochemical energy applications PhD Thesis

Saarland University, 2018.

Links | BibTeX | Tags: carbon, energy storage, ionic liquids, water desalination

2017

Journal Articles

8.

N. Jäckel; S. P. Emge; B. Krüner; B. Roling; V. Presser

Quantitative information about electrosorption of ionic liquids in carbon nanopores from electrochemical dilatometry and quartz crystal microbalance measurements Journal Article

The Journal of Physical Chemistry C, 121 (35), pp. 19120-19128, 2017.

Links | BibTeX | Tags: carbon, energy storage, in-situ, ionic liquids, supercapacitor

2016

Journal Articles

7.

N. Jäckel; P. Simon; Y. Gogotsi; V. Presser

The increase in capacitance by subnanometer pores in carbon Journal Article

ACS Energy Letters, 1 (6), pp. 1262-1265, 2016.

Links | BibTeX | Tags: carbon, energy storage, ionic liquids, supercapacitor

6.

N. Jäckel; B. Krüner; K. L. van Aken; M. Alhabeb; B. Anasori; F. Kaasik; Y. Gogotsi; V. Presser

Electrochemical in situ tracking of volumetric changes in twodimensional metal carbides (MXenes) in ionic liquids Journal Article

ACS Applied Materials & Interfaces, 8 (47), pp. 32089-32093, 2016.

Links | BibTeX | Tags: energy storage, in-situ, ionic liquids, MXene

2015

Journal Articles

5.

J.-K. Ewert; D. Weingarth; C. Denner; M. Friedrich; M. Zeiger; A. Schreiber; N. Jäckel; V. Presser; R. Kempe

Enhanced capacitance of nitrogen-doped hierarchical porous carbide-derived carbon in matched ionic liquids Journal Article

Journal of Materials Chemistry A, 3 (37), pp. 18906-18912, 2015.

Links | BibTeX | Tags: carbon, energy storage, ionic liquids, supercapacitor

2014

Journal Articles

4.

D. Weingarth; R. Drumm; A. Foelske-Schmitz; R. Kötz; V. Presser

An electrochemical in situ study of freezing and thawing of ionic liquids in carbon nanopores Journal Article

Physical Chemistry Chemical Physics, 16 (39), pp. 21219-21224, 2014.

Links | BibTeX | Tags: carbon, energy storage, ionic liquids, supercapacitor

2013

Journal Articles

3.

G. Feng; S. Li; V. Presser; P.T. Cummings

Molecular insights into carbon supercapacitors based on room-temperature ionic liquids Journal Article

The Journal of Physical Chemistry Letters, 4 (19), pp. 3367-3376, 2013.

Links | BibTeX | Tags: carbon, energy storage, ionic liquids, supercapacitor

2012

Journal Articles

2.

S. Kondrat; C.R. Perez; V. Presser; Y. Gogotsi; A. A. Kornyshev

Effect of pore size and its dispersity on the energy storage in nanoporous supercapacitors Journal Article

Energy & Environmental Science, 5 (4), pp. 6474-6479, 2012.

Links | BibTeX | Tags: carbon, energy storage, ionic liquids, supercapacitor

2011

Journal Articles

1.

R. Lin; P.-L. Taberna; S. Fantini; V. Presser; C. R. Perez; F. Malbosc; N. L. Rupesinghe; K. B. K. Teo; Y. Gogotsi; P. Simon

Capacitive energy storage from -50 to 100 °C using an ionic liquid electrolyte Journal Article

The Journal of Physical Chemistry, 2 (19), pp. 2396-2401, 2011.

Links | BibTeX | Tags: carbon, energy storage, ionic liquids, supercapacitor