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  1. Artikel ; Online: Ligand-Assisted Phase Engineering of Nanomaterials.

    Yun, Qinbai / Ge, Yiyao / Huang, Biao / Wa, Qingbo / Zhang, Hua

    Accounts of chemical research

    2023  Band 56, Heft 13, Seite(n) 1780–1790

    Abstract: ConspectusThe synthesis of monodisperse colloidal nanomaterials with well-defined structures is important for both fundamental research and practical application. To achieve it, wet-chemical methods with the usage of various ligands have been extensively ...

    Abstract ConspectusThe synthesis of monodisperse colloidal nanomaterials with well-defined structures is important for both fundamental research and practical application. To achieve it, wet-chemical methods with the usage of various ligands have been extensively explored to finely control the structure of nanomaterials. During the synthesis, ligands cap the surface and thus modulate the size, shape, and stability of nanomaterials in solvents. Besides these widely investigated roles of ligands, it has been recently discovered that ligands can affect the phase of nanomaterials, i.e., their atomic arrangement, providing an effective strategy to realize the phase engineering of nanomaterials (PEN) by selecting appropriate ligands. Nanomaterials normally exist in the phases that are thermodynamically stable in their bulk states. Previous studies have shown that under high temperature or high pressure, nanomaterials can exist in unconventional phases which are unattainable in the bulks. Importantly, nanomaterials with unconventional phases exhibit unique properties and functions different from conventional-phase ones. Consequently, it is feasible to utilize the PEN to tune the physicochemical properties and application performance of nanomaterials. During wet-chemical synthesis, ligands binding to the surface of nanomaterials can modify their surface energy, which could significantly affect the Gibbs free energy of nanomaterials and thus determine the stability of different phases, making it possible to obtain nanomaterials with unconventional phases at mild reaction conditions. For instance, a series of Au nanomaterials with unconventional hexagonal phases have been prepared with the assistance of oleylamine. Therefore, the rational design and selection of different ligands and deep understanding of their effect on the phase of nanomaterials would significantly accelerate the development of PEN and the discovery of novel functional nanomaterials for diverse applications.In this Account, we briefly summarize the recent progress in ligand-assisted PEN, elaborating the important roles of different ligands in the direct synthesis of nanomaterials with unconventional crystal phases and amorphous phase as well as the phase transformation of nanomaterials. We first introduce the background of this research topic, highlighting the concept of PEN and why ligands can modulate the phase of nanomaterials. Then we discuss the usage of four kinds of ligands, i.e., amines, fatty acids, sulfur-containing ligands, and phosphorus-containing ligands, in phase engineering of different nanomaterials, especially metal, metal chalcogenide, and metal oxide nanomaterials. Finally, we provide our personal views of the challenges and future promising research directions in this exciting field.
    Sprache Englisch
    Erscheinungsdatum 2023-06-09
    Erscheinungsland United States
    Dokumenttyp Journal Article
    ZDB-ID 1483291-4
    ISSN 1520-4898 ; 0001-4842
    ISSN (online) 1520-4898
    ISSN 0001-4842
    DOI 10.1021/acs.accounts.3c00121
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  2. Artikel ; Online: Syntheses of η

    Lu, Ke / Zhu, Jiahao / Wang, Jialiang / Wa, Qingbo / Guo, Zheng / Xiong, Wei / Gao, Yuan / Lei, Renbo / Cheng, Bichu / Wang, Xinwei

    Chemistry (Weinheim an der Bergstrasse, Germany)

    2023  Band 29, Heft 16, Seite(n) e202203656

    Abstract: Herein, we report the design and scalable synthesis of three new Co(III) complexes, which have an unusual hydrocarbon ... ...

    Abstract Herein, we report the design and scalable synthesis of three new Co(III) complexes, which have an unusual hydrocarbon η
    Sprache Englisch
    Erscheinungsdatum 2023-02-14
    Erscheinungsland Germany
    Dokumenttyp Journal Article
    ZDB-ID 1478547-X
    ISSN 1521-3765 ; 0947-6539
    ISSN (online) 1521-3765
    ISSN 0947-6539
    DOI 10.1002/chem.202203656
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  3. Artikel ; Online: Coordination Environment Engineering of Metal Centers in Coordination Polymers for Selective Carbon Dioxide Electroreduction toward Multicarbon Products.

    Wang, Juan / Sun, Mingzi / Xu, Hongming / Hao, Fengkun / Wa, Qingbo / Su, Jianjun / Zhou, Jingwen / Wang, Yunhao / Yu, Jinli / Zhang, Penghui / Ye, Ruquan / Chu, Shengqi / Huang, Bolong / Shao, Minhua / Fan, Zhanxi

    ACS nano

    2024  Band 18, Heft 9, Seite(n) 7192–7203

    Abstract: Electrocatalytic carbon dioxide reduction reaction ( ... ...

    Abstract Electrocatalytic carbon dioxide reduction reaction (CO
    Sprache Englisch
    Erscheinungsdatum 2024-02-22
    Erscheinungsland United States
    Dokumenttyp Journal Article
    ISSN 1936-086X
    ISSN (online) 1936-086X
    DOI 10.1021/acsnano.3c12389
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  4. Artikel ; Online: Atomic Design of Copper Active Sites in Pristine Metal-Organic Coordination Compounds for Electrocatalytic Carbon Dioxide Reduction.

    Wang, Juan / Wa, Qingbo / Diao, Qi / Liu, Fu / Hao, Fengkun / Xiong, Yuecheng / Wang, Yunhao / Zhou, Jingwen / Meng, Xiang / Guo, Liang / Fan, Zhanxi

    Small methods

    2024  , Seite(n) e2400432

    Abstract: Electrocatalytic carbon dioxide reduction reaction ( ... ...

    Abstract Electrocatalytic carbon dioxide reduction reaction (CO
    Sprache Englisch
    Erscheinungsdatum 2024-05-20
    Erscheinungsland Germany
    Dokumenttyp Journal Article ; Review
    ISSN 2366-9608
    ISSN (online) 2366-9608
    DOI 10.1002/smtd.202400432
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  5. Artikel ; Online: Controlled Synthesis of Unconventional Phase Alloy Nanobranches for Highly Selective Electrocatalytic Nitrite Reduction to Ammonia.

    Wang, Yunhao / Xiong, Yuecheng / Sun, Mingzi / Zhou, Jingwen / Hao, Fengkun / Zhang, Qinghua / Ye, Chenliang / Wang, Xixi / Xu, Zhihang / Wa, Qingbo / Liu, Fu / Meng, Xiang / Wang, Juan / Lu, Pengyi / Ma, Yangbo / Yin, Jinwen / Zhu, Ye / Chu, Shengqi / Huang, Bolong /
    Gu, Lin / Fan, Zhanxi

    Angewandte Chemie (International ed. in English)

    2024  , Seite(n) e202402841

    Abstract: The controlled synthesis of metal nanomaterials with unconventional phases is of significant importance to develop high-performance catalysts for various applications. However, it remains challenging to modulate the atomic arrangements of metal ... ...

    Abstract The controlled synthesis of metal nanomaterials with unconventional phases is of significant importance to develop high-performance catalysts for various applications. However, it remains challenging to modulate the atomic arrangements of metal nanomaterials, especially the alloy nanostructures that involve different metals with distinct redox potentials. Here we report the general one-pot synthesis of IrNi, IrRhNi and IrFeNi alloy nanobranches with unconventional hexagonal close-packed (hcp) phase. Notably, the as-synthesized hcp IrNi nanobranches demonstrate excellent catalytic performance towards electrochemical nitrite reduction reaction (NO
    Sprache Englisch
    Erscheinungsdatum 2024-04-22
    Erscheinungsland Germany
    Dokumenttyp Journal Article
    ZDB-ID 2011836-3
    ISSN 1521-3773 ; 1433-7851
    ISSN (online) 1521-3773
    ISSN 1433-7851
    DOI 10.1002/anie.202402841
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  6. Artikel ; Online: The Restructuring-Induced CoO

    Wang, Maoyu / Wa, Qingbo / Bai, Xiaowan / He, Zuyun / Samarakoon, Widitha S / Ma, Qing / Du, Yingge / Chen, Yan / Zhou, Hua / Liu, Yuanyue / Wang, Xinwei / Feng, Zhenxing

    JACS Au

    2021  Band 1, Heft 12, Seite(n) 2216–2223

    Abstract: Restructuring is an important yet less understood phenomenon in the catalysis community. Recent studies have shown that a group of transition metal sulfide catalysts can completely or partially restructure during electrochemical reactions which then ... ...

    Abstract Restructuring is an important yet less understood phenomenon in the catalysis community. Recent studies have shown that a group of transition metal sulfide catalysts can completely or partially restructure during electrochemical reactions which then exhibit high activity even better than the best commercial standards. However, such restructuring processes and the final structures of the new catalysts are elusive, mainly due to the difficulty from the reaction-induced changes that cannot be captured by ex situ characterizations. To establish the true structure-property relationship in these in situ generated catalysts, we use multimodel operando characterizations including Raman spectroscopy, X-ray absorption spectroscopy, and X-ray reflectivity to investigate the restructuring of a representative catalyst, Co
    Sprache Englisch
    Erscheinungsdatum 2021-11-02
    Erscheinungsland United States
    Dokumenttyp Journal Article
    ISSN 2691-3704
    ISSN (online) 2691-3704
    DOI 10.1021/jacsau.1c00346
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  7. Artikel ; Online: Recent Progress on Phase Engineering of Nanomaterials.

    Yun, Qinbai / Ge, Yiyao / Shi, Zhenyu / Liu, Jiawei / Wang, Xixi / Zhang, An / Huang, Biao / Yao, Yao / Luo, Qinxin / Zhai, Li / Ge, Jingjie / Peng, Yongwu / Gong, Chengtao / Zhao, Meiting / Qin, Yutian / Ma, Chen / Wang, Gang / Wa, Qingbo / Zhou, Xichen /
    Li, Zijian / Li, Siyuan / Zhai, Wei / Yang, Hua / Ren, Yi / Wang, Yongji / Li, Lujing / Ruan, Xinyang / Wu, Yuxuan / Chen, Bo / Lu, Qipeng / Lai, Zhuangchai / He, Qiyuan / Huang, Xiao / Chen, Ye / Zhang, Hua

    Chemical reviews

    2023  Band 123, Heft 23, Seite(n) 13489–13692

    Abstract: As a key structural parameter, phase depicts the arrangement of atoms in materials. Normally, a nanomaterial exists in its thermodynamically stable crystal phase. With the development of nanotechnology, nanomaterials with unconventional crystal phases, ... ...

    Abstract As a key structural parameter, phase depicts the arrangement of atoms in materials. Normally, a nanomaterial exists in its thermodynamically stable crystal phase. With the development of nanotechnology, nanomaterials with unconventional crystal phases, which rarely exist in their bulk counterparts, or amorphous phase have been prepared using carefully controlled reaction conditions. Together these methods are beginning to enable phase engineering of nanomaterials (PEN),
    Sprache Englisch
    Erscheinungsdatum 2023-11-14
    Erscheinungsland United States
    Dokumenttyp Journal Article ; Review
    ZDB-ID 207949-5
    ISSN 1520-6890 ; 0009-2665
    ISSN (online) 1520-6890
    ISSN 0009-2665
    DOI 10.1021/acs.chemrev.3c00459
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  8. Artikel ; Online: Synthesis of 2H/fcc-Heterophase AuCu Nanostructures for Highly Efficient Electrochemical CO

    Zhou, Xichen / Zhang, An / Chen, Bo / Zhu, Shangqian / Cui, Yu / Bai, Licheng / Yu, Jinli / Ge, Yiyao / Yun, Qinbai / Li, Lujiang / Huang, Biao / Liao, Lingwen / Fu, Jiaju / Wa, Qingbo / Wang, Gang / Huang, Zhiqi / Zheng, Long / Ren, Yi / Li, Siyuan /
    Liu, Guangyao / Zhai, Li / Li, Zijian / Liu, Jiawei / Chen, Ye / Ma, Lu / Ling, Chongyi / Wang, Jinlan / Fan, Zhanxi / Du, Yonghua / Shao, Minhua / Zhang, Hua

    Advanced materials (Deerfield Beach, Fla.)

    2023  Band 35, Heft 51, Seite(n) e2304414

    Abstract: Structural engineering of nanomaterials offers a promising way for developing high-performance catalysts toward catalysis. However, the delicate modulation of thermodynamically unfavorable nanostructures with unconventional phases still remains a ... ...

    Abstract Structural engineering of nanomaterials offers a promising way for developing high-performance catalysts toward catalysis. However, the delicate modulation of thermodynamically unfavorable nanostructures with unconventional phases still remains a challenge. Here, the synthesis of hierarchical AuCu nanostructures is reported with hexagonal close-packed (2H-type)/face-centered cubic (fcc) heterophase, high-index facets, planar defects (e.g., stacking faults, twin boundaries, and grain boundaries), and tunable Cu content. The obtained 2H/fcc Au
    Sprache Englisch
    Erscheinungsdatum 2023-11-07
    Erscheinungsland Germany
    Dokumenttyp Journal Article
    ZDB-ID 1474949-X
    ISSN 1521-4095 ; 0935-9648
    ISSN (online) 1521-4095
    ISSN 0935-9648
    DOI 10.1002/adma.202304414
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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