|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Recent Progress on Engineering Highly Efficient Porous Semiconductor Photocatalysts Derived from Metal–Organic Frameworks显示文摘Porous structures o er highly accessible surfaces and rich pores, which facilitate the exposure of numerous active sites for photocatalytic reactions, leading to excellent performances. Recently, metal–organic frameworks(MOFs) have been considered ideal precursors for well-designed semiconductors with porous structures and/or heterostructures, which have shown enhanced photocatalytic activities. In this review, we summarize the recent development of porous structures, such as metal oxides and metal sulfides, and their heterostructures, derived from MOF-based materials as catalysts for various light-driven energy-/environment-related reactions, including water splitting, CO_2 reduction, organic redox reaction, and pollution degradation. A summary and outlook section is also included. | Wenwen Zhan Liming Sun Xiguang Han | 2019 | Nano-Micro Letters2019,11,1: | 9 |
| 2 | Design and Synthesis of Cu@CuS Yolk–Shell Structures with Enhanced Photocatalytic Activity显示文摘Non-spherical Cu@Cu S yolk–shell structures are successfully obtained using Cu_2 O cube templates in a process combining rapid surface sulfidation followed by disproportionation of the Cu_2 O core upon treatment with a hydrochloric acid solution. By employing the above method,Cu@Cu S yolk–shell structures with different morphologies,including octahedral, truncated octahedral, and cuboctahedral shapes, can be synthesized. The void space within the hollow structures provides a unique confined space, where the metallic copper present in the core of a shell can be protected from agglomeration and oxidation. Furthermore,the presence of metal copper in these hollow structurescontributes to improvement in the photocatalytic properties of these materials. The application of these Cu@Cu S structures indeed shows clearly improved photocatalytic performance. | Qiuyan Li Fan Wang Linqiang Sun Zhe Jiang Tingting Ye Meng Chen Qiang Bai Chao Wang Xiguang Han | 2017 | Nano-Micro Letters2017,9,3: | 6 |
| 3 | Elastic Scattering of 7Be on Pb Target显示文摘 | Yang Yanyun Wang Jiansong Wang Qi Huang Meirong Ma Junbing Ma Peng Cao Xiguang Han Jianlong Bai Zhen Jin Shilong Hu Qiang Jin Lei Chen Jiangbo Zhang Xueying Chen Ruofu Hu Zhengguo Xu Shiwei Zhen Chuan Xu Zhiguo Xu Hushan Duan Liming Sun Zhiyu Chen Zhiqiang He Jianjun Li Songlin Lei Xiangguo Fu Fen Zhang Xueheng Yuan Xiaohua Du Chengming Yan Xinshuang Hu Jun Tang Shuwen Ye Ruiping Yang Kun Shi Fudong Zhang Wei Chen Ze Li Long Xu Xing Liu Longxiang Zhang Liyong Lin Qingyun Gou Boxing Xu Ge Zhou Xionghong Zhang Yuhu Xiao Guoqing | 2011 | IMP & HIRFL Annual Report2011,,1: | 4 |
| 4 | Effect of UV-B radiation on the feeding behavior of the rotifer Brachionus plicatilis显示文摘Effect of UV-B radiation on the feeding behaviour of marine zooplankton is important to assessing the health harm of marine ecosystem due to the gradually enhanced UV-B radiation in air. However, there are a few studies on this topic. The feeding behavior of the rotifer, Brachionus plicatilis, under the treatment of UV-B radiation on five species of microalgae, i.e., Chlorella sp., Tetraselmis chuii, Isochrysis galbana Park 8701, Chaetoceros muelleri Lermumerman, and Nitzschia clostertum, was studied. The results showed that the filtering and feeding rates of the rotifer decreased significantly with the dose increase of UV-B radiation when fed with five species of microalgae respectively (P<0.05) which indicates UV-B radiation inhibits the feeding activities of the rotifer on microalage. The mixed culture experiments shows the rotifer preferred to feed Chlorella sp., then C. muelleri,I. galbana, N. clostertum and T. chuii in turn if without UV-B radiation. Under the highest dose of UV-B radiation treatment (2.70 kJ/m2), the rotifer preferred to feed C. muelleri, then Chlorella sp., N. clostertum, I. galbana and T. chuii in turn. Chlorella sp., I. galbana and C. muelleri became the more favorite foods of the rotifer while T. chuii and N. clostertum became less favorite foods. The change of feeding rate and feeding selectivity of zooplankton driven by the enhanced UV-B radiation will lead to the change in the structure of phytoplankton community. | FENG Lei LI Xin WANG Jinhe HAN Honglei TANG Xuexi CHEN Xiguang | 2007 | Acta Oceanologica Sinica2007,26,4: | 4 |
| 5 | Controlled synthesis and enhanced catalytic and gas-sensing properties of tin dioxide nanoparticles with exposed high-energy facets 显示文摘 | Wang Xue Han Xiguang Xie Shuifen | 2012 | Chem Eur J2012,18,8: | 1 |
| 6 | Controlling morphologies and tuning the related properties of nano/ microstructured ZnO crystallites显示文摘 | Han Xiguang He Huizhong Kuang Qin | 2009 | The Journal of Physical Chemistry C2009,113,2: | 1 |
| 7 | Synthesis of titania nanosheets with a high percentage of exposed ( 001 ) facets and related photocatalytic properties显示文摘 | HAN Xiguang Qin Kuang JIN Mingshan | 2009 | Am Chem Soc2009,131,9: | 1 |
| 8 | Synthesis of titania nanosheets with a high percentage of exposed (001) facets and related photo-catalytic properties显示文摘 | Han Xiguang Qin Kuang Jin Mingshang | 2009 | J Am Chem Soc2009,131,9: | 1 |
| 9 | Synthesis of titania nanosheets with a high percentage of exposed (001)facets and related photocatalytic properties显示文摘 | Han Xiguang Kuang Qin Jin Mingshang | 2009 | J Am Chem Soc2009,131,: | 1 |
| 10 | Fabricating a hollow cuboctahedral structure for N-doped carbon coated p-n heterojunctions towards high-performance photocatalytic organic transformation显示文摘The application of semiconductors-based photocatalysts in organic transformation has been limited by the low light utilization efficiency and the rapid recombination of photo-induced charge carriers.In this paper,we have successfully fabricated a hollow cuboctahedral nanostructure(CNNCH),which is composed of N-doped carbon layer and CuO/NiO p-n heterojunctions.The hollow structure in CNNCH can effectively favor the light utilization through the multiple light reflection and scattering.The separation of photo-induced charge carriers can be highly improved by the exitence of charge transfer pathways between the p-n heterojunctions and semiconductor/N-doped carbon layer interfaces.Due to the above advantages,hollow cuboctahedral CNNCH as the photocatalyst has behaved high performance towards the photocatalytic cross-dehydrogenative coupling reaction. | Hao Gao Liming Sun Mengge Li Wenwen Zhan Xiaojun Wang Xiguang Han | 2022 | Nano Research2022,15,5: | 0 |