Segui
Dawei Xi
Dawei Xi
School of Engineering and Applied Science, Harvard University
Email verificata su g.harvard.edu
Titolo
Citata da
Citata da
Anno
Integrated contact lens sensor system based on multifunctional ultrathin MoS2 transistors
S Guo, K Wu, C Li, H Wang, Z Sun, D Xi, S Zhang, W Ding, ME Zaghloul, ...
Matter 4 (3), 969-985, 2021
1032021
Efficient Photoelectrochemical Conversion of Methane into Ethylene Glycol by WO3 Nanobar Arrays
J Ma, K Mao, J Low, Z Wang, D Xi, W Zhang, H Ju, Z Qi, R Long, X Wu, ...
Angewandte Chemie 133 (17), 9443-9447, 2021
952021
Limiting the Uncoordinated N Species in M–Nx Single‐Atom Catalysts toward Electrocatalytic CO2 Reduction in Broad Voltage Range
D Xi, J Li, J Low, K Mao, R Long, J Li, Z Dai, T Shao, Y Zhong, Y Li, Z Li, ...
Advanced Materials 34 (25), 2104090, 2022
632022
Scalable fabrication of highly active and durable membrane electrodes toward water oxidation
Y Li, S Chen, D Xi, Y Bo, R Long, C Wang, L Song, Y Xiong
Small 14 (1), 1702109, 2018
292018
A High Potential, Low Capacity Fade Rate Iron Complex Posolyte for Aqueous Organic Flow Batteries
J Gao, K Amini, TY George, Y Jing, T Tsukamoto, D Xi, RG Gordon, ...
Advanced Energy Materials 12 (44), 2202444, 2022
202022
A phenazine-based high-capacity and high-stability electrochemical CO2 capture cell with coupled electricity storage
S Pang, S Jin, F Yang, M Alberts, L Li, D Xi, RG Gordon, P Wang, MJ Aziz, ...
Nature Energy 8 (10), 1126-1136, 2023
192023
Light-driven flow synthesis of acetic acid from methane with chemical looping
W Zhang, D Xi, Y Chen, A Chen, Y Jiang, H Liu, Z Zhou, H Zhang, Z Liu, ...
Nature Communications 14 (1), 3047, 2023
122023
A carbon-efficient bicarbonate electrolyzer
Z Zhang, D Xi, Z Ren, J Li
Cell Reports Physical Science 4 (11), 2023
42023
Electrochemically induced CO2 capture enabled by aqueous quinone flow chemistry
Y Jing, K Amini, D Xi, S Jin, A Alfaraidi, E Kerr, R Gordon, M Aziz
22023
Mild pH-decoupling aqueous flow battery with practical pH recovery
D Xi, AM Alfaraidi, J Gao, T Cochard, LCI Faria, Z Yang, TY George, ...
Nature Energy, 1-12, 2024
12024
High-Capacity and High-Stability Electrochemical CO2 Capture Cell with Coupled Electricity Storage
P Wang, S Pang, S Jin, F Yang, M Alberts, L Li, D Xi, R Gordon, M Aziz, ...
12023
In Situ Techniques for Quinone-Mediated Electrochemical Carbon Capture and Release in Aqueous Environments
K Amini, T Cochard, Y Jing, J Sosa, D Xi, M Alberts, M Emanuel, E Kerr, ...
2024
Electrochemically Induced CO2 Capture Enabled By Aqueous Organic Redox Chemistry
Y Jing, K Amini, D Xi, M Jin, A Alfaraidi, RG Gordon, MJ Aziz
Electrochemical Society Meeting Abstracts 244, 1390-1390, 2023
2023
In Situ Investigation of Electrochemically Mediated Carbon Capture and Release Via Quinone Chemistry in Aqueous Media
K Amini, T Cochard, Y Jing, JD Sosa, D Xi, M Alberts, RG Gordon, MJ Aziz
Electrochemical Society Meeting Abstracts 244, 2658-2658, 2023
2023
An Extremely Stable and Soluble NH2-Substituted Anthraquinone Electrolyte for Aqueous Redox Flow Batteries
AM Alfaraidi, D Xi, N Ni, TY George, T Tsukamoto, RG Gordon, MJ Aziz, ...
ACS Applied Energy Materials 6 (24), 12259-12266, 2023
2023
Iron Complex Posolyte Species Possessing Low Capacity Fade Rate Combined with Large Positive Redox Potential for Aqueous Organic Flow Batteries
K Amini, J Gao, TY George, Y Jing, T Tsukamoto, D Xi, RG Gordon, ...
Electrochemical Society Meeting Abstracts 243, 738-738, 2023
2023
High Voltage Long-Lifetime Mild pH-Decoupling Aqueous Flow Battery with in-Situ pH Recovery
D Xi, A Alfaraidi, J Gao, T Cochard, LI Faria, TY George, K Amini, JD Sosa, ...
Electrochemical Society Meeting Abstracts 243, 834-834, 2023
2023
Low Voltage Electrochemical Aqueous Hydrogen Storage
T Wang, D Xi, MJ Aziz
Electrochemical Society Meeting Abstracts 243, 451-451, 2023
2023
Long Lifetime Mild pH-decoupling Aqueous Flow Battery with Practical in Situ pH Recovery
D Xi, A Alfaraidi, J Gao, T Cochard, L Faria, T George, T Wang, R Gordon, ...
2023
A carbon-efficient bicarbonate electrolyzer
J Li, Z Zhang, D Xi, Z Ren
2023
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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