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  1. Article ; Online: Galvanic Replacement Synthesis of Metal Nanostructures: Bridging the Gap between Chemical and Electrochemical Approaches.

    Cheng, Haoyan / Wang, Chenxiao / Qin, Dong / Xia, Younan

    Accounts of chemical research

    2023  Volume 56, Issue 7, Page(s) 900–909

    Abstract: ConspectusGalvanic replacement synthesis involves oxidation and dissolution of atoms from a substrate while the salt precursor to another material with a higher reduction potential is reduced and deposited on the substrate. The driving force or ... ...

    Abstract ConspectusGalvanic replacement synthesis involves oxidation and dissolution of atoms from a substrate while the salt precursor to another material with a higher reduction potential is reduced and deposited on the substrate. The driving force or spontaneity of such a synthesis comes from the difference in reduction potential between the redox pairs involved. Both bulk and micro/nanostructured materials have been explored as substrates for galvanic replacement synthesis. The use of micro/nanostructured materials can significantly increase the surface area, offering immediate advantages over the conventional electrosynthesis. The micro/nanostructured materials can also be intimately mixed with the salt precursor in a solution phase, resembling the setting of a typical chemical synthesis. The reduced material tends to be directly deposited on the surface of the substrate, just like the situation in an electrosynthesis. Different from an electrosynthesis where the two electrodes are spatially separated by an electrolyte solution, the cathodes and anodes are situated on the same surface, albeit at different sites, even for a micro/nanostructured substrate. Since the oxidation and dissolution reactions occur at sites different from those for reduction and deposition reactions, one can control the growth pattern of the newly deposited atoms on the same surface of a substrate to access nanostructured materials with diverse and controllable compositions, shapes, and morphologies in a single step. Galvanic replacement synthesis has been successfully applied to different types of substrates, including those made of crystalline and amorphous materials, as well as metallic and nonmetallic materials. Depending on the substrate involved, the deposited material can take different nucleation and growth patterns, resulting in diverse but well-controlled nanomaterials sought for a variety of studies and applications.In this Account, we recapitulate our efforts over the past two decades in fabricating metal nanostructures for a broad range of applications by leveraging the unique capability of galvanic replacement synthesis. We begin with a brief introduction to the fundamentals of galvanic replacement between metal nanocrystals and salt precursors, followed by a discussion of the roles played by surface capping agents in achieving site-selected carving and deposition for the fabrication of various bimetallic nanostructures. Two examples based on the Ag-Au and Pd-Pt systems are selected to illustrate the concept and mechanism. We then highlight our recent work on the galvanic replacement synthesis involving nonmetallic substrates, with a focus on the protocol, mechanistic understanding, and experimental control for the fabrication of Au- and Pt-based nanostructures with tunable morphologies. Finally, we showcase the unique properties and applications of nanostructured materials derived from galvanic replacement reactions for biomedicine and catalysis. We also offer some perspectives on the challenges and opportunities in this emerging field of research.
    Language English
    Publishing date 2023-03-26
    Publishing country United States
    Document type Journal Article
    ZDB-ID 1483291-4
    ISSN 1520-4898 ; 0001-4842
    ISSN (online) 1520-4898
    ISSN 0001-4842
    DOI 10.1021/acs.accounts.3c00067
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article ; Online: Highly-exposed copper and ZIF-8 interface enables synthesis of hydrocarbons by electrocatalytic reduction of CO

    Sun, Bo / Hu, Hao / Liu, Hangchen / Guan, Jiangyi / Song, Kexing / Shi, Changrui / Cheng, Haoyan

    Journal of colloid and interface science

    2024  Volume 661, Page(s) 831–839

    Abstract: Electrochemical reduction of ... ...

    Abstract Electrochemical reduction of CO
    Language English
    Publishing date 2024-02-03
    Publishing country United States
    Document type Journal Article
    ZDB-ID 241597-5
    ISSN 1095-7103 ; 0021-9797
    ISSN (online) 1095-7103
    ISSN 0021-9797
    DOI 10.1016/j.jcis.2024.01.205
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  3. Article ; Online: Controlling the Nucleation and Growth of Au on

    Cheng, Haoyan / Wang, Chenxiao / Lyu, Zhiheng / Zhu, Zhihong / Xia, Younan

    Journal of the American Chemical Society

    2023  Volume 145, Issue 2, Page(s) 1216–1226

    Abstract: We report a method to experimentally control the heterogeneous nucleation and growth of Au nanoparticles on the surface of amorphous Se ( ...

    Abstract We report a method to experimentally control the heterogeneous nucleation and growth of Au nanoparticles on the surface of amorphous Se (
    MeSH term(s) Nanospheres ; Gold ; Metal Nanoparticles/toxicity
    Chemical Substances Gold (7440-57-5)
    Language English
    Publishing date 2023-01-09
    Publishing country United States
    Document type Journal Article ; Research Support, Non-U.S. Gov't
    ZDB-ID 3155-0
    ISSN 1520-5126 ; 0002-7863
    ISSN (online) 1520-5126
    ISSN 0002-7863
    DOI 10.1021/jacs.2c11053
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  4. Article ; Online: Iron diselenide/carbon black loaded mushroom-shaped evaporator for efficiently continuous solar-driven desalination.

    Yu, Ningning / Hu, Hao / Xia, Wanting / Zhao, Zhipeng / Cheng, Haoyan

    Journal of colloid and interface science

    2023  Volume 658, Page(s) 238–246

    Abstract: Solar-driven desalination is an environmentally sustainable method to alleviate the problems of freshwater scarcity and the energy crisis. However, how to improve the synergy between the photothermal material and the evaporator to achieve high ... ...

    Abstract Solar-driven desalination is an environmentally sustainable method to alleviate the problems of freshwater scarcity and the energy crisis. However, how to improve the synergy between the photothermal material and the evaporator to achieve high photothermal conversion efficiency simultaneously, excellent thermal management system and good salt resistance remains a challenge. Here, a mushroom-shaped solar evaporation device is designed and fabricated with iron diselenide/carbon black (FeSe
    Language English
    Publishing date 2023-12-14
    Publishing country United States
    Document type Journal Article
    ZDB-ID 241597-5
    ISSN 1095-7103 ; 0021-9797
    ISSN (online) 1095-7103
    ISSN 0021-9797
    DOI 10.1016/j.jcis.2023.12.059
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  5. Article ; Online: Extraordinary Thermal Stability and Sinter Resistance of Sub-2 nm Platinum Nanoparticles Anchored to a Carbon Support by Selenium.

    Chen, Zitao / Cheng, Haoyan / Cao, Zhenming / Zhu, Jiawei / Blum, Thomas / Zhang, Qinyuan / Chi, Miaofang / Xia, Younan

    Nano letters

    2024  Volume 24, Issue 4, Page(s) 1392–1398

    Abstract: Nanoparticle sintering has long been a major challenge in developing catalytic systems for use at elevated temperatures. Here we report ... ...

    Abstract Nanoparticle sintering has long been a major challenge in developing catalytic systems for use at elevated temperatures. Here we report an
    Language English
    Publishing date 2024-01-16
    Publishing country United States
    Document type Journal Article
    ISSN 1530-6992
    ISSN (online) 1530-6992
    DOI 10.1021/acs.nanolett.3c04601
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  6. Article ; Online: Heterojunction tunnelled vanadium-based cathode materials for high-performance aqueous zinc ion batteries.

    Hu, Hao / Zhao, Pengbo / Li, Xuerong / Liu, Junqi / Liu, Hangchen / Sun, Bo / Pan, Kunming / Song, Kexing / Cheng, Haoyan

    Journal of colloid and interface science

    2024  Volume 665, Page(s) 564–572

    Abstract: Rechargeable aqueous zinc ion batteries (ZIBs) have emerged as a promising alternative to lithium-ion batteries due to their inherent safety, abundant availability, environmental friendliness and cost-effectiveness. However, the cathodes in ZIBs ... ...

    Abstract Rechargeable aqueous zinc ion batteries (ZIBs) have emerged as a promising alternative to lithium-ion batteries due to their inherent safety, abundant availability, environmental friendliness and cost-effectiveness. However, the cathodes in ZIBs encounter challenges such as structural instability, low capacity, and sluggish kinetics. In this study, we constructed BiVO
    Language English
    Publishing date 2024-03-25
    Publishing country United States
    Document type Journal Article
    ZDB-ID 241597-5
    ISSN 1095-7103 ; 0021-9797
    ISSN (online) 1095-7103
    ISSN 0021-9797
    DOI 10.1016/j.jcis.2024.03.161
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  7. Article ; Online: Synergy of copper Selenide/MXenes composite with enhanced solar-driven water evaporation and seawater desalination.

    Xia, Wanting / Cheng, Haoyan / Zhou, Shiqian / Yu, Ningning / Hu, Hao

    Journal of colloid and interface science

    2022  Volume 625, Page(s) 289–296

    Abstract: Despite significant of solar energy to power water evaporation in seawater desalination, the commercial application of this technology is limited by the poor light absorption and low photothermal conversion of existing photothermal materials. Herein, we ... ...

    Abstract Despite significant of solar energy to power water evaporation in seawater desalination, the commercial application of this technology is limited by the poor light absorption and low photothermal conversion of existing photothermal materials. Herein, we report a simple method for solar-driven water evaporation using a device comprising Cu
    Language English
    Publishing date 2022-06-08
    Publishing country United States
    Document type Journal Article
    ZDB-ID 241597-5
    ISSN 1095-7103 ; 0021-9797
    ISSN (online) 1095-7103
    ISSN 0021-9797
    DOI 10.1016/j.jcis.2022.06.028
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  8. Article: Synergy of copper Selenide/MXenes composite with enhanced solar-driven water evaporation and seawater desalination

    Xia, Wanting / Cheng, Haoyan / Zhou, Shiqian / Yu, Ningning / Hu, Hao

    Journal of colloid and interface science. 2022 Nov., v. 625

    2022  

    Abstract: Despite significant of solar energy to power water evaporation in seawater desalination, the commercial application of this technology is limited by the poor light absorption and low photothermal conversion of existing photothermal materials. Herein, we ... ...

    Abstract Despite significant of solar energy to power water evaporation in seawater desalination, the commercial application of this technology is limited by the poor light absorption and low photothermal conversion of existing photothermal materials. Herein, we report a simple method for solar-driven water evaporation using a device comprising Cu₂₋ₓSe/Nb₂CTₓ nanocomposites supported by a glass microfiber membrane, which utilizes cotton thread as water transport pathway. The proposed device demonstrates excellent light absorption, water transportation, and thermal management. Benefiting from the strong synergetic photothermal effect of Cu₂₋ₓSe and Nb₂CTₓ, the Cu₂₋ₓSe/Nb₂CTₓ nanocomposites function as an efficient solar absorber with excellent photothermal conversion efficiency. The rough surface, low thermal conductivity and good hydrophilicity of glass microfiber membrane could maximize light capture, limit heat loss, and timely replenish water during the water evaporation process. When evaluated as a water evaporation system for outdoor seawater desalination, the system achieved a water evaporation of 12.60 kg·m⁻² within 6 h. High fresh water generation rate is an important embodiment of high photothermal conversion efficiency. This study demonstrates a new route for designing solar desalination devices with high photothermal conversion properties.
    Keywords absorption ; cotton ; desalination ; evaporation ; freshwater ; glass ; heat ; hydrophilicity ; nanocomposites ; seawater ; selenides ; solar energy ; thermal conductivity ; water transportation
    Language English
    Dates of publication 2022-11
    Size p. 289-296.
    Publishing place Elsevier Inc.
    Document type Article
    ZDB-ID 241597-5
    ISSN 1095-7103 ; 0021-9797
    ISSN (online) 1095-7103
    ISSN 0021-9797
    DOI 10.1016/j.jcis.2022.06.028
    Database NAL-Catalogue (AGRICOLA)

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  9. Article ; Online: Robust synthesis of a composite phase of copper vanadium oxide with enhanced performance for durable aqueous Zn-ion batteries

    Cheng Haoyan / Li Xuerong / Hu Hao / Yuan Tongtong / Zhou Shiqian / Dai Shuge / Zhang Di / Pan Kunming

    Nanotechnology Reviews, Vol 11, Iss 1, Pp 1633-

    2022  Volume 1642

    Abstract: Rechargeable aqueous Zn-ion batteries (AZIBs) have attracted much interest as next-generation power sources due to their economical, safe, and capacity superiorities. However, the cathodes used in AZIBs always suffer from sluggish kinetics, inducing ... ...

    Abstract Rechargeable aqueous Zn-ion batteries (AZIBs) have attracted much interest as next-generation power sources due to their economical, safe, and capacity superiorities. However, the cathodes used in AZIBs always suffer from sluggish kinetics, inducing inadequate rate performance and poor cycle ability. Pre-intercalating transition metal element in the cathode materials offers an effective strategy for improving diffusion kinetics of Zn2+ and thus the electrochemical activity. In this work, different proportions of Cu pre-intercalated V2O5 were synthesized to form a composite phase of Cu0.4V2O5 and VO2·nH2O nanosheets through the hydrothermal method. The reversible redox reaction of Cu2+ and Cu0, accompanied by the phase changes of copper vanadate and zinc vanadate, contributes to an excellent battery performance. When the molar ratio between Cu precursor and commercial V2O5 in the reaction solution is 1:2, the obtained material presents an outstanding electrochemical performance with the initial discharge capacity of 332 mAh g−1 at 0.2 A g−1. The enlarged lattice distance together with the high conductivity leads to a high Zn ions diffusion rate of 10−5 cm2 s−1. Even after 1,000 cycles at a current density of 2 A g−1, the capacity attenuation is only 0.035% per cycle, exhibiting distinctive activities toward AZIBs.
    Keywords aqueous zn-ion batteries ; vanadium-based cathodes ; energy storage ; Technology ; T ; Chemical technology ; TP1-1185 ; Physical and theoretical chemistry ; QD450-801
    Subject code 540
    Language English
    Publishing date 2022-04-01T00:00:00Z
    Publisher De Gruyter
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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  10. Article: Polydopamine-modified ZIF-8 nanoparticles as a drug carrier for combined chemo-photothermal osteosarcoma therapy

    Yin, Xueling / Ran, Siyi / Cheng, Haoyan / Zhang, Meng / Sun, Wei / Wan, Ying / Shao, Chunsheng / Zhu, Zhihong

    Colloids and surfaces. 2022 Apr. 14,

    2022  

    Abstract: Single chemotherapy often causes severe adverse effects and chemoresistance which limits therapeutic efficacy. Recently, combination of chemotherapy with photothermal therapy (PTT) have received broad attention for synergistic treatment of osteosarcoma, ... ...

    Abstract Single chemotherapy often causes severe adverse effects and chemoresistance which limits therapeutic efficacy. Recently, combination of chemotherapy with photothermal therapy (PTT) have received broad attention for synergistic treatment of osteosarcoma, ultimately resulting in the enhancement of therapeutic efficacy of anticancer drugs. In this study, we have developed a novel drug delivery system based on polydopamine (pDA)-modified ZIF-8 nanoparticles loaded with methotrexate (MTX) (pDA/MTX@ZIF-8 NPs). Herein, pDA modification avoided the explosive release of the drug, and improved the biocompatibility and near-infrared (NIR) light absorbance performance of nanoparticles. The as-prepared pDA/MTX@ZIF-8 NPs could be used as drug targeting delivery system and simultaneously displayed excellent photothermal effects under NIR irradiation. Biology assays in vitro indicated that the pDA/MTX@ZIF-8 NPs were able to efficiently induce MG63 cell apoptosis through reducing mitochondrial membrane potentials (MMPs), and the introduction of photothermal agents enhanced the antitumor effect and decreased the dose of chemotherapeutic drugs. Moreover, the optimized pDA/MTX@ZIF-8 NPs (40μg/mL) exhibited better photothermal conversion performance and facilitated tumor cells death. These results triumphantly exhibit that the pDA/MTX@ZIF-8 NPs have a synergistic effect of chemo-photothermal therapy (combination index CI = 0.346) and excellent biocompatibility, which has unexceptionable prospects for the therapy of osteosarcoma.
    Keywords absorbance ; antineoplastic activity ; apoptosis ; biocompatibility ; death ; drug carriers ; irradiation ; methotrexate ; mitochondrial membrane ; osteosarcoma ; photochemotherapy ; photothermotherapy ; synergism
    Language English
    Dates of publication 2022-0414
    Publishing place Elsevier B.V.
    Document type Article
    Note Pre-press version
    ZDB-ID 1500523-9
    ISSN 1873-4367 ; 0927-7765
    ISSN (online) 1873-4367
    ISSN 0927-7765
    DOI 10.1016/j.colsurfb.2022.112507
    Database NAL-Catalogue (AGRICOLA)

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