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Air-condition process for scalable fabrication of CdS/ZnS 1D/2D heterojunctions toward efficient and stable photocatalytic hydrogen production
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作者 Dongdong Zhang Jie Teng +7 位作者 Hongli Yang Zhi Fang Kai Song Lin Wang huilin hou Xianlu Lu Chris RBowen Weiyou Yang 《Carbon Energy》 SCIE CSCD 2023年第7期1-14,共14页
We report the scalable fabrication of CdS/ZnS 1D/2D heterojunctions under ambient air conditions(i.e.,room temperature and atmospheric pressure)in which ZnS nanoparticles are anchored on the surface of CdS nanosheets.... We report the scalable fabrication of CdS/ZnS 1D/2D heterojunctions under ambient air conditions(i.e.,room temperature and atmospheric pressure)in which ZnS nanoparticles are anchored on the surface of CdS nanosheets.The as-formed heterojunctions exhibit a significantly enhanced photocatalytic H_(2) evolution rate of 14.02 mmol h^(-1) g^(-1) when irradiated with visible light,which is~10 and 85 times higher than those of pristine CdS nanosheets and CdS nanoparticles,respectively,and superior to most of the CdS-based photocatalysts reported to date.Furthermore,they provide robust photocatalytic performance with demonstratable stability over 58 h,indicating their potential for practical applications.The formation of 1D/2D heterojunctions not only provides improved exposed active sites that respond to illumination but also provides a rapid pathway to generate photogenerated carriers for efficient separation and transfer through the matrix of single-crystalline CdS nanosheets.In addition,first-principles simulations demonstrate that the existence of rich Zn vacancies increases the energy level of the ZnS valence band maximum to construct type-II and Z-scheme mixed heterojunctions,which plays a critical role in suppressing the recombination of carriers with limited photocorrosion of CdS to enhance photocatalytic behavior. 展开更多
关键词 air condition CdS HETEROJUNCTIONS photocatalytic hydrogen production ZNS
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Boosting solar water oxidation activity of BiVO_(4) photoanode through an efficient in-situ selective surface cation exchange strategy
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作者 Kai Song Fang He +3 位作者 Ergang Zhou Lin Wang huilin hou Weiyou Yang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第5期49-59,共11页
The sluggish kinetics for water oxidation is recognized as one of the major problems for the unsatisfied photoelectrochemical(PEC) performance. Herein, we developed a feasible strategy based on in-situ selective surfa... The sluggish kinetics for water oxidation is recognized as one of the major problems for the unsatisfied photoelectrochemical(PEC) performance. Herein, we developed a feasible strategy based on in-situ selective surface cation exchange, for activating surface water oxidation reactivity toward boosted PEC water oxidation of BiVO_(4) photoanodes with fundamentally improved surface charge transfer. The asconstructed Co/BiVO_(4) photoanodes exhibit 2.6 times increase in photocurrent density with superior stability, in comparison to those of pristine counterpart. Moreover, the faradaic efficiency of as-fabricated photoanode can be up to ~ 95% at 1.23 V(vs. RHE). The unique selective replacement of Bi by Co on the surface could modify the electronic structure of BiVO_(4) with reduced energy barrier of the deprotonation of OH^(+) to O, thus favoring the overall excellent PEC performance of Co/BiVO_(4) photoanode. 展开更多
关键词 Cation exchange BIVO4 PHOTOELECTROCHEMICAL Water oxidation
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Ambient-condition strategy for rapid mass production of crystalline gallium oxide nanoarchitectures toward device application
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作者 Dongdong Zhang Hao Yu +9 位作者 Guiqin You Gang Shao Zhi Fang Zhao Liang Tian Zhang huilin hou Lin Wang Qiaochu Chen Jie Teng Weiyou Yang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第32期150-157,共8页
Currently,the synthesis of nanostructures still encounters two grand challenges:one is the often-required high temperatures and/or high pressures,and the other is the scalable fabrication.Here,to break through such bo... Currently,the synthesis of nanostructures still encounters two grand challenges:one is the often-required high temperatures and/or high pressures,and the other is the scalable fabrication.Here,to break through such bottlenecks,we demonstrate an ambient-condition strategy for rapid mass production of fourthgeneration semiconductor Ga_(2)O_(3)nanoarchitectures assembled by single-crystalline nanosheets in a controlled manner based on sonochemistry.Their growth is fundamentally determined by the introduced ethanediamine in rationally designed source materials,which could not only protect the metal Ga against reacting with H_(2)O into GaOOH,but facilitate the reaction of Ga with OH·radicals for target crystalline Ga_(2)O_(3)nanostructures.As a proof of concept for applications,the as-fabricated Ga_(2)O_(3)nanoarchitectures exhibit superb performances for electromagnetic wave absorption with a reflection loss value of 52.2 dB at 8.1 GHz,and ammonia sensing with high sensitivity and selectivity at room temperature,representing their bright future to be commercially applied in modern devices. 展开更多
关键词 Semiconductor Crystalline nanostructures Crystal growth Ambient condition Device application
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二维/二维异质结光催化剂:合理设计与能源和环境应用 被引量:5
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作者 侯慧林 曾祥康 张西旺 《Science China Materials》 SCIE EI CSCD 2020年第11期2119-2152,共34页
近年来,二维/二维异质结纳米材料在光催化领域引起了广泛的研究.二维/二维异质结材料在高效光催化剂的应用研究上具有许多独特优点,主要包括良好的尺寸设计,较大的界面接触面积,有机集合了各二维组分的优点,同时异质结的构筑能够快速促... 近年来,二维/二维异质结纳米材料在光催化领域引起了广泛的研究.二维/二维异质结材料在高效光催化剂的应用研究上具有许多独特优点,主要包括良好的尺寸设计,较大的界面接触面积,有机集合了各二维组分的优点,同时异质结的构筑能够快速促进光生电荷的分离和转移.本文首先介绍了二维/二维异质结构光催化剂所形成界面的一些基本原理内容,并总结了目前二维/二维异质结构光催化剂的一般合成策略,包括原位生长和非原位外组装.随后着重介绍了二维/二维异质结光催化剂在产氢、二氧化碳还原和污染物去除等方面的应用的最新研究进展.最后,对二维/二维异质结光催化剂的发展前景进行了展望. 展开更多
关键词 光催化剂 合成策略 二氧化碳还原 光生电荷 原位生长 纳米材料 污染物去除 异质结
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High-performance solar-blind ultraviolet photodetector based on electrospun TiO2-ZnTiO3 heterojunction nano- wires 被引量:4
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作者 Haining Chong Guodong Wei +5 位作者 huilin hou Huijun Yang Minghui Shang Fengmei Gao Weiyou Yang Guozhen Shen 《Nano Research》 SCIE EI CAS CSCD 2015年第9期2822-2832,共11页
High-performance solar-blind UV (ultraviolet) photodetectors (PDs) based on low-dimension semiconducting nanostructures with high sensitivity, excellent cycle stability, and the ability to operate in harsh environ... High-performance solar-blind UV (ultraviolet) photodetectors (PDs) based on low-dimension semiconducting nanostructures with high sensitivity, excellent cycle stability, and the ability to operate in harsh environments are critical for solar observations, space communication, UV astronomy, and missile tracking. In this study, TiO2-ZnTiO3 heterojunction nanowire-based PDs are successfully developed and used to detect solar-blind UV light. A photoconductive analysis indicates that the fabricated PDs are sensitive to UV illumination, with high sensitivity, good stability, and high reproducibility. Further analysis indicates that the rich existence of grain boundaries within the TiO2-ZnTiO3 nanowire can greatly decrease the dark current and recombination of the electron-hole pairs and thereby significantly increase the device's photosensitivity, spectra responsivity (1.1 ~ 106), and external quantum efficiency (4.3 ~ 108 %). Moreover, the PDs exhibit good photodetective performance with fast photoresponse and recovery and excellent thermal stability at temperatures as high as 175 ℃. According to these results, TiO2-ZnTiO3 heterojunction nanowires exhibit great potential for applications in high-performance optical electronics and PDs, particularly next-generation photodetectors with the ability to operate in harsh environments. 展开更多
关键词 photodetector solar blind heterojunction photosensor high temperature
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