Challenges in unconventional catalysis. A. Bogaerts, G. Centi, V. Hessel and E. Rebrov | |
The 2022 Plasma Roadmap: Low temperature plasma science and technology. I. Adamovich, S. Agarwal, E. Ahedo, L.L. Alves, S. Baalrud, N. Babaeva, A. Bogaerts, A. Bourdon, P.J. Bruggeman, C. Canal, E.H. Choi, S. Coulombe, Z. Donkó, D.B. Graves, S. Hamaguchi, D. Hegemann, M. Hori, H.-H. Kim, G.M.W. Kroesen, M.J. Kushner, A. Laricchiuta, X. Li, T.E. Magin, S. Mededovic Thagard, V. Miller, A.B. Murphy, G.S. Oehrlein, N. Puac, R.M. Sankaran, S. Samukawa, M. Shiratani, M. Šimek, N. Tarasenko, K. Terashima, E. Thomas Jr., J. Trieschmann, S. Tsikata, M.M. Turner, I.J. van der Walt, M.C.M. van de Sanden and T. von Woedtke | |
Science popularization article: Plasma and plasma catalysis for sustainable chemistry. | |
From the Birkeland–Eyde process towards energy-efficient plasma-based NOX synthesis: a techno-economic analysis. | |
Plasma-driven catalysis: green ammonia synthesis with intermittent electricity. | |
The 2020 plasma catalysis roadmap. | |
Plasma technology for CO2 conversion: A personal perspective on prospects and gaps. | |
Plasma technology: An emerging technology for energy storage. | |
Plasma physics of liquids - A focused review. | |
Plasma technology - a novel solution for CO2 conversion? | |
Plasma catalysis: synergistic effects at the nanoscale. | |
Modeling plasma-based CO2 and CH4 conversion in mixtuires with N2, O2 and H2O: The bigger plasma chemistry picture. | |
Special issue: plasma conversion. | |
Plasma nanoscience: from nano-solids in plasmas to nano-plasmas in solids. | |
PECVD growth of carbon nanotubes: from experiment to simulation. | |
Gas discharge plasmas and their applications. |