Du Ran
Du Ran
Beijing Institute of Technology; Pre: PKU, TU Dresden, HKU
Verified email at - Homepage
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Robust superhydrophobic foam: a graphdiyne‐based hierarchical architecture for oil/water separation
X Gao, J Zhou, R Du, Z Xie, S Deng, R Liu, Z Liu, J Zhang
Advanced Materials 28 (1), 168-173, 2016
Scalable seashell-based chemical vapor deposition growth of three-dimensional graphene foams for oil–water separation
L Shi, K Chen, R Du, A Bachmatiuk, MH Rümmeli, K Xie, Y Huang, ...
Journal of the American Chemical Society 138 (20), 6360-6363, 2016
Synthesis of hierarchical graphdiyne-based architecture for efficient solar steam generation
X Gao, H Ren, J Zhou, R Du, C Yin, R Liu, H Peng, L Tong, Z Liu, J Zhang
Chemistry of Materials 29 (14), 5777-5781, 2017
Direct synthesis of graphdiyne nanowalls on arbitrary substrates and its application for photoelectrochemical water splitting cell
X Gao, J Li, R Du, J Zhou, MY Huang, R Liu, J Li, Z Xie, LZ Wu, Z Liu, ...
Advanced materials 29 (9), 1605308, 2017
Boron nitride aerogels with super‐flexibility ranging from liquid nitrogen temperature to 1000° C
G Li, M Zhu, W Gong, R Du, A Eychmüller, T Li, W Lv, X Zhang
Advanced Functional Materials 29 (20), 1900188, 2019
CMP Aerogels: Ultrahigh‐Surface‐Area Carbon‐Based Monolithic Materials with Superb Sorption Performance
R Du, N Zhang, H Xu, N Mao, W Duan, J Wang, Q Zhao, Z Liu, J Zhang
Advanced materials 26 (47), 8053-8058, 2014
Three‐dimensional nitrogen‐doped graphene nanoribbons aerogel as a highly efficient catalyst for the oxygen reduction reaction
L Chen, R Du, J Zhu, Y Mao, C Xue, N Zhang, Y Hou, J Zhang, T Yi
Small 11 (12), 1423-1429, 2015
Unveiling reductant chemistry in fabricating noble metal aerogels for superior oxygen evolution and ethanol oxidation
R Du, J Wang, Y Wang, R Hübner, X Fan, I Senkovska, Y Hu, S Kaskel, ...
Nature communications 11 (1), 1590, 2020
Microscopic dimensions engineering: stepwise manipulation of the surface wettability on 3D substrates for oil/water separation
R Du, X Gao, Q Feng, Q Zhao, P Li, S Deng, L Shi, J Zhang
Advanced Materials 28 (5), 936-942, 2016
Porosity engineering of MOF‐based materials for electrochemical energy storage
R Du, Y Wu, Y Yang, T Zhai, T Zhou, Q Shang, L Zhu, C Shang, Z Guo
Advanced Energy Materials 11 (20), 2100154, 2021
Nitrogen‐Doped Carbon Nanotube Aerogels for High‐Performance ORR Catalysts
R Du, N Zhang, J Zhu, Y Wang, C Xu, Y Hu, N Mao, H Xu, W Duan, ...
Small 11 (32), 3903-3908, 2015
Hierarchical hydrogen bonds directed multi‐functional carbon nanotube‐based supramolecular hydrogels
R Du, J Wu, L Chen, H Huang, X Zhang, J Zhang
small 10 (7), 1387-1393, 2014
Specific ion effects directed noble metal aerogels: Versatile manipulation for electrocatalysis and beyond
R Du, Y Hu, R Hübner, JO Joswig, X Fan, K Schneider, A Eychmüller
Science Advances 5 (5), eaaw4590, 2019
Engineering self‐supported noble metal foams toward electrocatalysis and beyond
R Du, X Jin, R Hübner, X Fan, Y Hu, A Eychmüller
Advanced Energy Materials 10 (11), 1901945, 2020
Engineering multimetallic aerogels for pH‐universal HER and ORR electrocatalysis
R Du, W Jin, R Hübner, L Zhou, Y Hu, A Eychmüller
Advanced Energy Materials 10 (12), 1903857, 2020
Emerging noble metal aerogels: state of the art and a look forward
R Du, X Fan, X Jin, R Huebner, Y Hu, A Eychmüller
Matter 1 (1), 39-56, 2019
Macroscopic carbon nanotube‐based 3D monoliths
R Du, Q Zhao, N Zhang, J Zhang
Small 11 (27), 3263-3289, 2015
Identifying sp–sp 2 carbon materials by Raman and infrared spectroscopies
J Wang, S Zhang, J Zhou, R Liu, R Du, H Xu, Z Liu, J Zhang, Z Liu
Physical Chemistry Chemical Physics 16 (23), 11303-11309, 2014
Three dimensional CNTs aerogel/MoSx as an electrocatalyst for hydrogen evolution reaction
S Reddy, R Du, L Kang, N Mao, J Zhang
Applied Catalysis B: Environmental 194, 16-21, 2016
Promoting the electrocatalytic performance of noble metal aerogels by ligand‐directed modulation
X Fan, S Zerebecki, R Du, R Hübner, G Marzum, G Jiang, Y Hu, ...
Angewandte Chemie 132 (14), 5755-5760, 2020
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