
Publications of Jonas Pampel
All genres
Journal Article (11)
1.
Journal Article
188, pp. 325 - 335 (2022)
Mechanistic insights into the reversible lithium storage in an open porous carbon via metal cluster formation in all solid-state batteries. Carbon 2.
Journal Article
17 (48), 2006767 (2021)
Influence of pore architecture and chemical structure on the sodium storage in nitrogen-doped hard carbons. Small 3.
Journal Article
28, pp. 101 - 111 (2020)
Nanoporous nitrogen doped carbons with enhanced capacity for sodium ion battery anodes. Energy Storage Materials 4.
Journal Article
130, pp. 768 - 774 (2018)
Nanoscopic carbon electrodes: structure, electrical properties and application for electrochemistry. Carbon 5.
Journal Article
8 (9), 1701771 (2018)
Facile metal coordination of active site imprinted nitrogen doped carbons for the conservative preparation of non-noble metal oxygen reduction electrocatalysts. Advanced Energy Materials 6.
Journal Article
5 (3), pp. 2415 - 2420 (2017)
Efficiency of Ni nanoparticles supported on hierarchical porous nitrogen-doped carbon for hydrogenolysis of Kraft lignin in flow and batch systems. ACS Sustainable Chemistry & Engineering 7.
Journal Article
4 (3), pp. 493 - 501 (2017)
Ionothermal template transformations for preparation of tubular porous nitrogen doped carbons. Materials Horizons 8.
Journal Article
10 (4), pp. 4364 - 4371 (2016)
Nitro lignin-derived nitrogen-doped carbon as an efficient and sustainable electrocatalyst for oxygen reduction. ACS Nano 9.
Journal Article
107, pp. 288 - 296 (2016)
Glucose derived ionothermal carbons with tailor-made porosity. Carbon 10.
Journal Article
6 (8), 1502389 (2016)
Opening of bottleneck pores for the improvement of nitrogen doped carbon electrocatalysts. Advanced Energy Materials 11.
Journal Article
325, pp. 1 - 6 (2016)
High-power lithium ion batteries based on preorganized necklace type Li4Ti5O12/VACNT nano-composites. Journal of Power Sources Thesis - PhD (1)
12.
Thesis - PhD
Ionothermal carbon materials: advanced synthesis and electrochemical applications. Dissertation, Universität Potsdam, Potsdam (2016)