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Tobias Keplinger
Tobias Keplinger
ETH Zürich
Подтвержден адрес электронной почты в домене agrobiogel.com
Название
Процитировано
Процитировано
Год
Structure–property–function relationships of natural and engineered wood
C Chen, Y Kuang, S Zhu, I Burgert, T Keplinger, A Gong, T Li, L Berglund, ...
Nature Reviews Materials 5 (9), 642-666, 2020
9482020
Imaging of plant cell walls by confocal Raman microscopy
N Gierlinger, T Keplinger, M Harrington
Nature protocols 7 (9), 1694-1708, 2012
3772012
Delignified and Densified Cellulose Bulk Materials with Excellent Tensile Properties for Sustainable Engineering
M Frey, D Widner, JS Segmehl, K Casdorff, T Keplinger, I Burgert
ACS Applied Materials & Interfaces, 2018
2632018
Scalable aesthetic transparent wood for energy efficient buildings
R Mi, C Chen, T Keplinger, Y Pei, S He, D Liu, J Li, J Dai, E Hitz, B Yang, ...
Nature communications 11 (1), 3836, 2020
2572020
Hybrid wood materials with improved fire retardance by bio-inspired mineralisation on the nano-and submicron level
V Merk, M Chanana, T Keplinger, S Gaan, I Burgert
Green Chemistry 17 (3), 1423-1428, 2015
1812015
Green Synthesis of Hierarchical Metal–Organic Framework/Wood Functional Composites with Superior Mechanical Properties
K Tu, B Puértolas, M Adobes‐Vidal, Y Wang, J Sun, J Traber, I Burgert, ...
Advanced Science 7 (7), 1902897, 2020
1632020
A versatile strategy for grafting polymers to wood cell walls
T Keplinger, E Cabane, M Chanana, P Hass, V Merk, N Gierlinger, ...
Acta biomaterialia 11, 256-263, 2015
1522015
Renewable and functional wood materials by grafting polymerization within cell walls
E Cabane, T Keplinger, V Merk, P Hass, I Burgert
ChemSusChem 7 (4), 1020-1025, 2014
1252014
Plant material features responsible for bamboo's excellent mechanical performance: a comparison of tensile properties of bamboo and spruce at the tissue, fibre and cell wall levels
X Wang, T Keplinger, N Gierlinger, I Burgert
Annals of botany 114 (8), 1627-1635, 2014
1062014
Plant micro-and nanomechanics: experimental techniques for plant cell-wall analysis
I Burgert, T Keplinger
Journal of experimental botany 64 (15), 4635-4649, 2013
1062013
Nanofibrillated cellulose composites and wood derived scaffolds for functional materials
T Keplinger, X Wang, I Burgert
Journal of Materials Chemistry A 7 (7), 2981-2992, 2019
1032019
Luminescent and Hydrophobic Wood Films as Optical Lighting Materials
Q Fu, K Tu, C Goldhahn, T Keplinger, M Adobes-Vidal, M Sorieul, ...
ACS nano 14 (10), 13775-13783, 2020
1012020
Functionalized wood with tunable tribopolarity for efficient triboelectric nanogenerators
J Sun, K Tu, S Büchele, SM Koch, Y Ding, SN Ramakrishna, S Stucki, ...
Matter 4 (9), 3049-3066, 2021
972021
Wood derived cellulose scaffolds—processing and mechanics
T Keplinger, FK Wittel, M Rüggeberg, I Burgert
Advanced Materials 33 (28), 2001375, 2021
922021
Tunable Wood by Reversible Interlocking and Bioinspired Mechanical Gradients
M Frey, G Biffi, M Adobes‐Vidal, M Zirkelbach, Y Wang, K Tu, AM Hirt, ...
Advanced Science 6 (10), 1802190, 2019
912019
Review of Wood Modification and Wood Functionalization Technologies
SL Zelinka, M Altgen, L Emmerich, N Guigo, T Keplinger, M Kymäläinen, ...
Forests 13 (7), 1004, 2022
892022
Functional lignocellulosic material for the remediation of copper (II) ions from water: Towards the design of a wood filter
S Vitas, T Keplinger, N Reichholf, R Figi, E Cabane
Journal of hazardous materials 355, 119-127, 2018
872018
Delignified Wood–Polymer Interpenetrating Composites Exceeding the Rule of Mixtures
M Frey, L Schneider, K Masania, T Keplinger, I Burgert
ACS applied materials & interfaces 11 (38), 35305-35311, 2019
862019
Roadmap on soft robotics: multifunctionality, adaptability and growth without borders
B Mazzolai, A Mondini, E Del Dottore, L Margheri, F Carpi, K Suzumori, ...
Multifunctional Materials 5 (3), 032001, 2022
842022
Sustainable wood electronics by iron-catalyzed laser-induced graphitization for large-scale applications
CH Dreimol, H Guo, M Ritter, T Keplinger, Y Ding, R Günther, E Poloni, ...
Nature Communications 13 (1), 3680, 2022
772022
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