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| 1 | Low temper- ature plasma-catalystic oxidation of formaldehyde in atmos- pheric pressure gas streams 显示文摘 | Ding Huixian Zhu Aimin LU Fugong | 2006 | Applied Physics2006,39,: | 1 |
| 2 | Low temperature plasma-catalytic oxidation of formaldehyde inatmospheric pressure gas streams显示文摘 | DING Huixian ZHU Aimin LU Fugong | | 0,,: | 1 |
| 3 | Low-temperature plasma-catalytic oxidation of formaldehyde in atmospheric pressure gas streams显示文摘 | DING Huixian ZHU Aimin LU Fugong | 2006 | Journal ofPhysics D:Applied Physics2006,39,16: | 1 |
| 4 | Low temperature plasma catalytic oxidation of formaldehyde in atmospheric pressure gas streams显示文摘 | DING Huixian ZHU Aimin LU Fugong | 2006 | Applied Physics2006,39,: | 1 |
| 5 | Low-temperature plasma-catalytic oxidation of formaldehyde in atmospheric pressure gas streams显示文摘 | DING HUIXIAN ZHU AIMIN LU FUGONG | 2006 | Journal of Physics D: Applied Physics2006,39,16: | 1 |
| 6 | Removal of formaldehyde from gas streams via packed-bed dielectric barrier discharge plasmas 显示文摘 | DING HUIXIAN ZHU AIMIN YANG XUEFENG | 2005 | J Phys D : Appl Phys2005,38,23: | 1 |
| 7 | Removal of formaldehyde from gas streams via packed-bed dielectric barrier discharge plasmas显示文摘 | DING HUIXIAN ZHU AIMIN YANG XUEFENG | 2005 | Journal of Physics D:Applied Physics2005,38,23: | 1 |
| 8 | Low-ternperature plasma-catalytic oxidation of formaldehyde in atmospheric pressure gas streams显示文摘 | DING HUIXIAN ZHU AIMIN LU FUGONG | 2006 | Journal of Physics D:Applied Physics2006,39,16: | 1 |
| 9 | An almost full reversible lithium-rich cathode: Revealing the mechanism of high initial coulombic efficiency显示文摘Low initial Coulombic efficiency (ICE) is an important impediment to practical application of Li-rich layered oxides (LLOs), which is due to the irreversible oxygen release. It is generally considered that surface oxygen vacancies are conducive to the improvement of ICE of LLOs. To reveal the relation of oxygen vacancies and ICE, sample PLO (Li-Mn-Cr-O) and its treated product (TLO) are comprehensive investigated in this work. During the treated process, part of oxygen atoms return to original constructed vacancies. It makes oxygen vacancies in sample TLO much poorer than those in sample PLO, and induces the formation of Li-poor spinel-layered integrated structure. Electrochemical measurement indicates the ICE of sample PLO is only 80.8%, while sample TLO is almost full reversible with the ICE of ~97.1%. In term of high-energy X-ray diffraction, scanning transmission electron microscopy, X-ray photoelectron spectroscopy and synchrotron hard/soft X-ray absorption spectroscopy, we discover that the ICE is difficult to be improved significantly just by building oxygen vacancies. LLOs with high ICE not only have to construct suitable oxygen vacancies, but also require other components with Li-poor structure to stabilize oxygen. This work provides deep insight into the mechanism of high ICE, and will contribute to the design and development of LLOs for next-generation high-energy lithium-ion batteries. | Dong Luo Jianming Fan Zhuo Yao Huixian Xie Jiaxiang Cui Yajun Yang Xiaokai Ding Jiapeng Ji Shuxing Wu Ming Ling Chenyu Liu Zhan Lin | 2021 | Journal of Energy Chemistry2021,30,11: | 1 |
| 10 | Dual-site Doping to Enhance Oxygen Redox and Structural Stability of Li-rich Layered Oxides显示文摘Cobalt-free Li-rich layered oxides(LLOs)such as Li_(2)MnO_(3) have attracted extensive attention owing to their high specific capacity and low cost.Nonetheless,numerous problems such as continuous voltage fading and capacity decay have become stumbling blocks in its commercial application.In this study,we propose an effective dual-site doping strategy by choosing Mo as the cation and F as the anion to enhance the capacity and cycling performance.The researchdemonstrates that the cycling stability of LLOs enhances with the doping ratio of Mo,and their capacity increases with the doping ratio of F.It is because Mo as a pillar enhances the structural stability and F doping is conducive to the activation of Li;MnO;.What’s more,dual-site doping also promotes the diffusion of Li;and reduces the internal resistance of the electrode.Due to these improvements,the 5F3M sample still maintains a discharge capacity of 190.98 mAh g;after 100 cycles at 200 mA g^(-1),which is much higher than 165.29 mAh g;of the Pristine sample.This discovery provides a new way to develop advanced layered oxide cathodes for both Na-and Li-ion batteries. | Zuhao Zhang Xiaoyan Xie Huixian Xie Xiaokai Ding Jiaxiang Cui Chenyu Liu Dong Luo Zhan Lin | 2022 | Chinese Journal of Structural Chemistry2022,41,4: | 0 |
| 11 | Synthesis of cycloparaphenylene under spatial nanoconfinement显示文摘Suzuki coupling reactions between symmetrical monomers were conducted in various mesoporous silica nanoreactors grafted with palladium catalysts,enabling the selective formation of[12]cycloparaphenylene precursor with separate yield up to 25%in one-pot reactions,much higher than that in homogeneous reaction.The spatial nanoconfinement of the nanoreactors promotes the macrocyclization while limits the concomitant linear oligomer formation,offering more possibilities for the synthesis of macrocycles from symmetrical monomers in one-pot reaction. | Jinjie Li Huixian Jin Zhikun Shang Jie Wang Donglai Tian Yun Ding Aiguo Hu | 2023 | Chinese Chemical Letters2023,34,6: | 0 |