Παρακολούθηση
Dong Wang
Dong Wang
Η διεύθυνση ηλεκτρονικού ταχυδρομείου έχει επαληθευτεί στον τομέα tu-ilmenau.de
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Παρατίθεται από
Παρατίθεται από
Έτος
A Near Infrared Light Triggered Hydrogenated Black TiO2 for Cancer Photothermal Therapy
W Ren, Y Yan, L Zeng, Z Shi, A Gong, P Schaaf, D Wang, J Zhao, B Zou, ...
Advanced healthcare materials 4, 1526–1536, 2015
3922015
Slightly hydrogenated TiO2 with enhanced photocatalytic performance
Y Yan, M Han, AL Konkin, T Koppe, D Wang, T Andreu, G Chen, U Vetter, ...
Journal of Materials Chemistry A 2, 12708 - 12716, 2014
2312014
Understanding the fast lithium storage performance of hydrogenated TiO 2 nanoparticles
Y Yan, B Hao, D Wang, G Chen, E Markweg, A Albrecht, P Schaaf
Journal of Materials Chemistry A 1 (46), 14507-14513, 2013
1712013
Nanoporous gold nanoparticles
D Wang, P Schaaf
Journal of Materials Chemistry 22 (12), 5344-5348, 2012
1412012
A review on photothermal conversion of solar energy with nanomaterials and nanostructures: from fundamentals to applications
P Cheng, D Wang, P Schaaf
Advanced Sustainable Systems 6 (9), 2200115, 2022
1392022
Formation of precise 2D Au particle arrays via thermally induced dewetting on pre-patterned substrates
D Wang, R Ji, P Schaaf
Beilstein journal of nanotechnology 2 (1), 318-326, 2011
1242011
Substitutionally Dispersed High‐Oxidation CoOx Clusters in the Lattice of Rutile TiO2 Triggering Efficient Co-Ti Cooperative Catalytic Centers for Oxygen Evolution Reactions
Y Yan, C Liu, H Jian, X Cheng, T Hu, D Wang, L Shang, G Chen, P Schaaf, ...
Advanced Functional Materials 31 (9), 2009610, 2021
1102021
Effect of length scale on fatigue life and damage formation in thin Cu films
D Wang, CA Volkert, O Kraft
Materials Science and Engineering: A 493 (1-2), 267-273, 2008
952008
Nonlinear plasmon-exciton coupling enhances sum-frequency generation from a hybrid metal/semiconductor nanostructure
JH Zhong, J Vogelsang, JM Yi, D Wang, L Wittenbecher, S Mikaelsson, ...
Nature communications 11, 1464, 2020
822020
Solid‐state dewetting for fabrication of metallic nanoparticles and influences of nanostructured substrates and dealloying
D Wang, P Schaaf
physica status solidi (a) 210 (8), 1544-1551, 2013
742013
Nanoporous Gold Nanoparticles and Au/Al2O3 Hybrid Nanoparticles with Large Tunability of Plasmonic Properties
W Rao, D Wang, T Kups, E Baradács, B Parditka, Z Erdélyi, P Schaaf
ACS Applied Materials & Interfaces 9, 6273–6281, 2017
662017
Ordered arrays of nanoporous gold nanoparticles
D Wang, R Ji, A Albrecht, P Schaaf
Beilstein Journal of Nanotechnology 3 (1), 651-657, 2012
662012
Ni–Au bi-metallic nanoparticles formed via dewetting
D Wang, P Schaaf
Materials Letters 70, 30-33, 2012
622012
Mesoscopically bi-continuous Ag-Au hybrid nanosponges with tunable plasmon resonances as bottom-up substrates for surface-enhanced Raman spectroscopy
Y Yan, AI Radu, W Rao, H Wang, G Chen, K Weber, D Wang, ...
Chemistry of Materials 28, 7673–7682, 2016
532016
Optical Plasmon of Individual Gold Nanosponges
C Vidal, D Wang, P Schaaf, C Hrelescu, TA Klar
ACS Photonics 2, 1436-1442, 2015
522015
Solid-state dewetting of Au/Ni bilayers: The effect of alloying on morphology evolution
A Herz, D Wang, T Kups, P Schaaf
Journal of Applied Physics 116 (4), 2014
522014
Thermal dewetting of thin Au films deposited onto line-patterned substrates
D Wang, P Schaaf
Journal of Materials Science 47, 1605-1608, 2012
492012
Plasma Hydrogenated TiO2/Nickel Foam as an Efficient Bifunctional Electrocatalyst for Overall Water Splitting
Y Yan, X Cheng, W Zhang, G Chen, H Li, A Konkin, Z Sun, S Sun, D Wang, ...
ACS Sustainable Chemistry & Engineering 7 (1), 885-894, 2019
482019
Two-dimensional nanoparticle arrays formed by dewetting of thin gold films deposited on pre-patterned substrates
D Wang, P Schaaf
Journal of Materials Science: Materials in Electronics 22, 1067-1070, 2011
472011
Photo-Thermoelectric Conversion Using Black Silicon with Enhanced Light Trapping Performance far beyond the Band Edge Absorption
P Cheng, H Wang, B Müller, J Müller, D Wang, P Schaaf
ACS Applied Materials & Interfaces 13, 1818-1826, 2021
432021
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