1 |
Xiao
Zhou, Hong-Bao Li, Zhengkun Yang,* and An-Wu Xu,*
Steering the Assembly and Disassembly of Active Pd Sites in
Organometallic Networks for Electrocatalytic Performance and
Organic Transformation, Adv. Funct. Mater.,
2021, 31, 2009557. |
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2 |
Shafaq Sahar, Akif Zeb, Cong Ling, Amna Raja, Gang Wang,
Naseeb Ullah, Xiao-Ming Lin, and An-Wu Xu*, A Hybrid
VOx Incorporated Hexacyanoferrate Nanostructured Hydrogel as
a Multienzyme Mimetic via Cascade Reactions, ACS Nano
2020, 14, 3, 3017-3031. |
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3 |
Kuang Liang, Ewa M. Spiesz, Dominik T. Schmieden, An-Wu
Xu,* Anne S. Meyer,* and Marie-Eve Aubin-Tam*,
Bioproduced Polymers Self-Assemble with Graphene Oxide into
Nanocomposite Films with Enhanced Mechanical Performance,
ACS Nano 2020, 14, 14731−14739. |
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4 |
Yi-Fan Jiang, Nan Jiang, Kuang Liang, Cheng-Zong Yuan,
Xiao-Xiang Fang and An-Wu Xu*, A simple and general
route to prepare functional mesoporous double-metal
oxy(hydroxide), J. Mater. Chem. A, 2019, 7,
7932-7938. |
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5 |
Xiao-Xiang Fang, Liu-Bo Ma, Kuang Liang, Sheng-Jie Zhao,
Yi-Fan Jiang, Cong Ling, Tan Zhao, Tuck-Yun Cheang* and
An-Wu Xu*, The doping of phosphorus atoms into graphitic
carbon nitride for highly enhanced photocatalytic hydrogen
evolution, J. Mater. Chem. A, 2019, 7, 11506-11512. |
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6 |
Cheng-Zong Yuan, Hong-Bao Li*, Yi-Fan Jiang, Kuang Liang,
Sheng-Jie Zhao, Xiao-Xiang Fang, Liu-Bo Ma, Tan Zhao, Cong
Lin and An-Wu Xu*,Tuning the activity of N-doped
carbon for CO2 reduction via in situ encapsulation of nickel
nanoparticles into nano-hybrid carbon substrates, J.
Mater. Chem. A, 2019, 7, 6894-6900. |
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7 |
Zheng Kun Yang, Cheng-Zong Yuan and An-Wu Xu*, A
rationally designed Fe-tetrapyridophenazine complex: a
promising precursor to a single-atom Fe catalyst for an
efficient oxygen reduction reaction in high-power Zn¨Cair
cells, Nanoscale, 2018, 10, 16145-16152. |
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8 |
Zheng Kun Yang, Cheng-Zong Yuan, and An-Wu Xu*,
Confined Pyrolysis within a Nanochannel to Form a Highly
Efficient Single Iron Site Catalyst for Zn−Air Batteries,
ACS Energy Lett. 2018, 3, 2383¨C2389. |
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9 |
Na Xue, Rui-Jin Yu*, Cheng-Zong Yuan, Xiao Xie, Yi-Fan
Jiang, Hong-Yan Zhou, Tuck-Yun Cheang* and An-Wu Xu*,
In situ redox deposition of palladium nanoparticles on
oxygen-deficient tungsten oxide as efficient hydrogenation
catalysts, RSC Adv., 2017, 7, 2351-2357. |
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10 |
Cheng-Zong Yuan, Sheng-Liang Zhong, Yi-Fan Jiang, Zheng Kun
Yang, Zhi-Wei Zhao, Sheng-Jie Zhao, Nan Jiang and An-Wu
Xu*, Direct growth of cobalt-rich cobalt phosphide
catalysts on cobalt foil: an efficient and self-supported
bifunctional electrode for overall water splitting in
alkaline media, J. Mater. Chem. A, 2017, 5,
10561-10566. |
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11 |
Cheng-Zong Yuan, Zhong-Ti Sun, Yi-Fan Jiang, Zheng-Kun Yang,
Nan Jiang, Zhi-Wei Zhao, Umair Yaqub Qazi, Wen-Hua Zhang,*
An-Wu Xu,*
One©\Step In Situ Growth of Iron¨CNickel Sulfide Nanosheets on
FeNi Alloy Foils: High©\Performance and Self©\Supported
Electrodes for Water Oxidation,
Small 2017, 13, 1604161. |
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12 |
Ya-Nan Liu, Cong-Cong Shen, Nan Jiang, Zhi-Wei Zhao, Xiao
Zhou, Sheng-Jie Zhao, and An-Wu Xu*, g‑C3N4
Hydrogen-Bonding Viologen for Significantly Enhanced
Visible-Light Photocatalytic H2 Evolution, ACS Catal.
2017, 7, 8228¨C8234. |
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13 |
Zheng Kun Yang, Zhi-Wei Zhao, Kuang Liang, Xiao Zhou,
Cong-Cong Shen, Ya-Nan Liu, Xin Wang and An-Wu Xu*,
Synthesis of nanoporous structured iron carbide/Fe¨CN¨Ccarbon
composites for efficient oxygen reduction reaction in Zn¨Cair
batteries, J. Mater. Chem. A, 2016, 4, 19037-19044. |
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14 |
Xiao Xie, Ruijin Yu, Na Xue, Ammar Bin Yousaf, Hong Du,
Kuang Liang, Nan Jiang and An-Wu Xu*, P doped
molybdenum dioxide on Mo foil with high electrocatalytic
activity for the hydrogen evolution reaction, J. Mater.
Chem. A, 2016, 4, 1647-1652. |
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15 |
Cheng-Zong Yuan, Yi-Fan Jiang, Zhou Wang, Xiao Xie,
Zheng-Kun Yang, Ammar Bin Yousaf and An-Wu Xu*,
Cobalt phosphate nanoparticles decorated with nitrogen-doped
carbon layers as highly active and stable electrocatalysts
for the oxygen evolution reaction, J. Mater. Chem. A,
2016, 4, 8155-8160. |
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16 |
Zheng Kun Yang, Ling Lin, An-Wu Xu,* 2D
Nanoporous Fe−N/C Nanosheets as Highly Efficient
Non-Platinum Electrocatalysts for Oxygen Reduction Reaction
in Zn-Air Battery, Small 2016, 12, 5710¨C5719. |
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17 |
Ling Lin, Zheng Kun Yang, Yi-Fan Jiang, and An-Wu Xu*,
Nonprecious Bimetallic (Fe,Mo)−N/C Catalyst for Efficient
Oxygen Reduction Reaction, ACS Catal. 2016, 6,
4449¨C4454. |
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18 |
Ling Lin, Gui-Qi Gao, Qing Zhu and An-Wu Xu*, Plasmon
enhanced photocurrent in strongly coupled Ag@perylene
core¨Cshell nanowires, J. Mater. Chem. A, 2015, 3,
12845-12851. |
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19 |
Hong Du, Xiao Xie, Qing Zhu, Ling Lin, Yi-Fan Jiang,
Zheng-Kun Yang, Xiao Zhou and An-Wu Xu*, Metallic
MoO2 cocatalyst significantly enhances visible-light
photocatalytic hydrogen production over MoO2/Zn0.5Cd0.5S
heterojunction, Nanoscale, 2015, 7, 5752-5759. |
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20 |
Xiao Xie, Ling Lin, Rui-Yang Liu, Yi-Fan Jiang, Qing Zhu and
An-Wu Xu*, The synergistic effect of metallic
molybdenum dioxide nanoparticle decorated graphene as an
active electrocatalyst for an enhanced hydrogen evolution
reaction, J. Mater. Chem. A, 2015, 3, 8055-8061. |
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21 |
Cong-Min Fan, Michelle D. Regulacio, Chen Ye, Suo Hon Lim,
Shun Kuang Lua, Qing-Hua Xu, Zhili Dong, An-Wu Xu*
and Ming-Yong Han*, Colloidal nanocrystals of orthorhombic
Cu2ZnGeS4: phase-controlled synthesis, formation mechanism
and photocatalytic behavior, Nanoscale, 2015, 7,
3247-3253. |
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22 |
Hong-Li Guo, Qing Zhu, Xi-Lin Wu, Yi-Fan Jiang, Xiao Xie and
An-Wu Xu *, Oxygen deficient ZnO1−x nanosheets with
high visible light photocatalytic activity, Nanoscale,
2015, 7, 7216-7223. |
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23 |
Cong-Cong Shen, Qing Zhu, Zhi-Wei Zhao, Tao Wen, Xiangke
Wang* and An-Wu Xu*, Plasmon enhanced visible light
photocatalytic activity of ternary Ag2Mo2O7@AgBr¨CAg rod-like
heterostructures, J. Mater. Chem. A, 2015, 3,
14661-14668. |
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24 |
Ling Lin, Qing Zhu and An-Wu Xu,* Noble metal-free Fe-N/C catalyst for highly efficient
oxygen reduction reaction under both alkaline and acidic
conditions,
J. Am. Chem. Soc.,
2014, in press. |
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25 |
Sheng-Liang Zhong, Lin-Fei Zhang, An-Wu Xu,*
Entropically driven formation of ultralong helical
mesostructured organosilica nanofibers,
Small,
2014, 10, 888-894. |
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26 |
Hong-Yu Jing, Tao Wen, Cong-Min
Fan, Gui-Qi Gao, Sheng-Liang Zhong, An-Wu Xu,*
Efficient adsorption/photodegradation of organic pollutants
from
aqueous systems
using Cu2O nanocrystals as a novel integrated
photocatalytic adsorbent,
J. Mater. Chem. A,
2014, 2, in press. |
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27 |
Yin Peng, Mei Yan, Qing-Guo Chen, Cong-Min
Fan, Hai-Yan Zhou and
An-Wu Xu,* Novel one-dimensional Bi2O3-Bi2WO6
p-n hierarchical heterojunction with enhanced photocatalytic
activity, J. Mater. Chem. A, 2014, 2,
8517-8524. |
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28 |
Xi-Lin, Wu,
An-Wu Xu,* Carbonaceous
hydrogels and aerogels for
supercapacitors, J. Mater. Chem. A, 2014, 2,
4852-4864. |
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29 |
Qing Zhu, Yin Peng, Ling Lin, Cong-Min Fan,
Gui-Qi Gao, Rui-Xia Wang, An-Wu Xu,* Stable blue TiO2-x
nanoparticles for efficient visible light photocatalyst,
J. Mater. Chem. A,
2014, 2, 4429-4437. |
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30 |
Lin-Fe i Zhang; Sheng-Liang Zhong; An-Wu Xu,
Highly Branched Concave Au/Pd
Bimetallic Nanocrystals with Superior Electrocatalytic
Activity and Highly Efficient SERS Enhancement.
Angewandte Chemie International Edition£¬2013, 52,
645. |
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31 |
Xi-Lin Wu,Tao Wen, Hong-Li Guo, Shubin
Yang, Xiangke Wang, and An-Wu Xu, Biomass-Derived Sponge-like Carbonaceous
Hydrogels and Aerogels for Supercapacitors.
ACS Nano
2013, 7, 3589. |
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32 |
Sha-Sha Wang, Andreas Picker, Helmut
Cölfen, An-Wu Xu, Heterostructured
Calcium Carbonate Microspheres with Calcite Equatorial Loops
and Vaterite Spherical Cores.
Angewandte Chemie International Edition£¬2013, 52,
6317. |
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33 |
Gui-Qi Gao, Ling
Lin, Cong-Min
Fan, Qing
Zhu, Rui-Xia
Wang and
An-Wu Xu£¬Highly dispersed platinum nanoparticles
generated in viologen micelles with high catalytic activity
and stability.
J. Mater. Chem. A ,
2013, 1,
12206-12212. |
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34 |
Wan-Sheng Wang, Hong Du, Rui-Xia Wang,
Tao Wen and An-Wu Xu£¬Heterostructured Ag3PO4/AgBr/Ag plasmonic
photocatalyst with enhanced photocatalytic activity and
stability under visible light. Nanoscale 2013, 5, 3315. |
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