L
Liang Zhao
Researcher at Soochow University (Suzhou)
Publications - 36
Citations - 2788
Liang Zhao is an academic researcher from Soochow University (Suzhou). The author has contributed to research in topics: Graphene & Lithium. The author has an hindex of 16, co-authored 36 publications receiving 1682 citations.
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Journal ArticleDOI
Applications of 2D MXenes in energy conversion and storage systems
Jinbo Pang,Rafael G. Mendes,Rafael G. Mendes,Alicja Bachmatiuk,Alicja Bachmatiuk,Alicja Bachmatiuk,Liang Zhao,Huy Q. Ta,Thomas Gemming,Hong Liu,Hong Liu,Zhongfan Liu,Zhongfan Liu,Mark H. Rümmeli,Mark H. Rümmeli,Mark H. Rümmeli +15 more
TL;DR: The potential of MXenes for the photocatalytic degradation of organic pollutants in water, such as dye waste, is addressed, along with their promise as catalysts for ammonium synthesis from nitrogen.
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Applications of Phosphorene and Black Phosphorus in Energy Conversion and Storage Devices
Jinbo Pang,Alicja Bachmatiuk,Yin Yin,Barbara Trzebicka,Liang Zhao,Lei Fu,Rafael G. Mendes,Rafael G. Mendes,Thomas Gemming,Zhongfan Liu,Zhongfan Liu,Mark H. Rümmeli +11 more
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Three-dimensional nanostructured graphene: Synthesis and energy, environmental and biomedical applications
Karolina Olszowska,Jinbo Pang,Pawel S. Wrobel,Liang Zhao,Huy Q. Ta,Zhongfan Liu,Zhongfan Liu,Barbara Trzebicka,Alicja Bachmatiuk,Mark H. Rümmeli +9 more
TL;DR: In this article, a review of 3D nanostructured graphene can be found, including nanoshells, encapsulates, graphene foams, aerogels and hydrogels, their properties and methods by which to obtain them, such as chemical vapour deposition, the hydrothermal method or by sugar-blowing production.
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Self-Terminating Confinement Approach for Large-Area Uniform Monolayer Graphene Directly over Si/SiOx by Chemical Vapor Deposition
Jinbo Pang,Rafael G. Mendes,Pawel S. Wrobel,Michal D. Wlodarski,Huy Q. Ta,Liang Zhao,Lars Giebeler,Barbara Trzebicka,Thomas Gemming,Lei Fu,Zhongfan Liu,Juergen Eckert,Juergen Eckert,Alicja Bachmatiuk,Mark H. Rümmeli +14 more
TL;DR: This CVD approach is easily scalable and will make graphene formation directly on Si wafers competitive against that from metal substrates, which suffer from transfer.
Journal ArticleDOI
Octahedral gold-silver nanoframes with rich crystalline defects for efficient methanol oxidation manifesting a CO-promoting effect
Likun Xiong,Zhongti Sun,Xiang Zhang,Liang Zhao,Peng Huang,Xiwen Chen,Huidong Jin,Hao Sun,Yuebin Lian,Zhao Deng,Mark H. Rümmerli,Wan-Jian Yin,Duo Zhang,Shuao Wang,Yang Peng +14 more
TL;DR: A general one-pot strategy to prepare ultrathin octahedral Au3Ag nanoframes with rich crystalline defects to increase electrocatalytic activity of gold for methanol oxidation, which is surprisingly promoted by carbon monoxide.