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| 1 | Bismuth oxychloride hollow microspheres with high visible light photocatalytic activity显示文摘二铋氯氧化物, BiOCl 和双性人 24 O 31 Cl 10, 成功地用碳的 microsphere 被综合牺牲的模板。从 BiOCl 的阶段进化到双性人 24 O 31 Cl 10 被在 600 点加热前者容易认识到?? | Pengzhen Cui Jiali Wang Zumin Wang Jun Chen Xianran Xing Lianzhou Wang Ranbo Yu | 2016 | Nano Research2016,9,3: | 4 |
| 2 | Decoding lithium batteries through advanced in situ characterization techniques显示文摘Given the energy demands of the electromobility market,the energy density and safety of lithium batteries(LBs)need to be improved,whereas its cost needs to be decreased.For the enhanced performance and decreased cost,more suitable electrode and electrolyte materials should be developed based on the improved understanding of the degradation mechanisms and structure–performance correlation in the LB system.Thus,various in situ characterization technologies have been developed during the past decades,providing abundant guidelines on the design of electrode and electrolyte materials.Here we first review the progress of in situ characterization of LBs and emphasize the feature of the multi-model coupling of different characterization techniques.Then,we systematically discuss how in situ characterization technologies reveal the electrochemical processes and fundamental mechanisms of different electrode systems based on representative electrode materials and electrolyte components.Finally,we discuss the current challenges,future opportunities,and possible directions to promote in situ characterization technologies for further improvement of the battery performance. | Mei Yang Ruyi Bi Jiangyan Wang Ranbo Yu Dan Wang | 2022 | International Journal of Minerals,Metallurgy and Materials2022,29,5: | 4 |
| 3 | Cobalt hollow nanospheres: controlled synthesis, modification and highly catalytic performance for hydrolysis of ammonia borane显示文摘Size tunable cobalt hollow nanospheres with high catalytic activity for the ammonia borane(AB) hydrolysis have been synthesized by using the solvothermal method. The complexation between Co2+and ethylenediamine is observed to be critical for the formation of the cobalt hollow nanospherical structure.The morphology of the cobalt hollow nanospheres can be regulated by adjusting the original ethylenediamine/ethanol volume ratio, reaction time and temperature. Impressively, the magnetic property study reveals that the coercivity of the as-synthesized cobalt hollow nanospheres is much enhanced compared with that of bulk cobalt materials. Meanwhile, Co/Pt bimetal hollow nanospheres(Co Pt HS) and graphene-cobalt hollow composite nanospheres(Co HS-r GO) have also been explored. In comparison with the cobalt hollow nanospheres, both the Co Pt HS and Co HS-r GO show higher catalytic activities and better repeatability for the catalytic hydrogen generation from AB hydrolysis. Moreover, it is noted that these catalysts could be recycled by using the magnetic separation method. | Wangya Wei Zumin Wang Jie xu Lingbo Zong Kun Zhao Hao Wang Haiyan Li Ranbo Yu | 2017 | Science Bulletin2017,62,5: | 3 |
| 4 | Efficient sequential harvesting of solar light by heterogeneous hollow shells with hierarchical pores显示文摘In nature,sequential harvesting of light widely exists in the old life entity,i.e.cyanobacteria,to maximize the light absorption and enhance the photosynthesis efficiency.Inspired by nature,we propose a brand new concept of temporally-spatially sequential harvesting of light in one single particle,which has purpose-designed heterogeneous hollow multi-shelled structures(HoMSs)with porous shells composed of nanoparticle subunits.Structurally,HoMSs consist of different band-gap materials outside-in,thus realizing the efficient harvesting of light with different wavelengths.Moreover,introducing oxygen vacancies into each nanoparticle subunit can also enhance the light absorption.With the benefit of sequential harvesting of light in HoMSs,the quantum efficiency at wavelength of 400 nm is enhanced by six times compared with the corresponding nanoparticles.Impressively,using these aforementioned materials as photocatalysts;highly efficient photocatalytic water splitting is realized,which cannot be achieved by using the nanoparticle counterparts.This new concept of temporally-spatially sequential harvesting of solar light paves the way for solving the ever-growing energy demand. | Yanze Wei Jiawei Wan Nailiang Yang Yu Yang Yanwen Ma Songcan Wang Jiangyan Wang Ranbo Yu Lin Gu Lianhui Wang Lianzhou Wang Wei Huang Dan Wang | 2020 | National Science Review2020,7,11: | 2 |
| 5 | Structure andEnhancement of Negative Thermal Expansion in the PbTi03 -Cd-Ti03 System 显示文摘 | Chen Jun Xing Xianran Yu Ranbo | 2005 | Applied Physics Letters2005,,23: | 1 |
| 6 | Structure and En-hancement of Negative Thermal Expansion in PbTi03 -CdTi03 Sys-tem 显示文摘 | Chen Jun Xing Xianran Yu Ranbo | 2005 | Applied Physics Letters2005,87,23: | 1 |
| 7 | Hydrothermal synthesis of perovskite-type solid solution of (1? x )BaTiO 3 · x La 2/3 TiO 3显示文摘 | Dan Wang Ranbo Yu Shouhua Feng Wenjun Zheng Takahiro Takei Nobuhiro Kumada Nobukazu Kinomura | 2002 | Solid State Ionics2002,,1: | 1 |
| 8 | Hierarchical nanoscale multi-shell Au,/CeO2 hollow spheres 显示文摘 | Xu Pengfei Yu Ranbo Ren Hao | 2014 | Chemical Science2014,5,11: | 1 |
| 9 | A low-cost and large-scale synthesis of nano-zinc oxide from smithsonite显示文摘 | Yucheng Zhang Jinxia Deng Jun Chen Ranbo Yu Xianran Xing | 2014 | Inorganic Chemistry Communications2014,,: | 1 |
| 10 | Leaching of zinc from calcined smithsonite using sodium hydroxide显示文摘 | Yucheng Zhang Jinxia Deng Jun Chen Ranbo Yu Xianran Xing | 2013 | Hydrometallurgy2013,,: | 1 |
| 11 | Synthesis and Characterization of (Zn, Co)TiO3 by Modified Low Temperature Preparing Route 显示文摘 | Luo Jun Xing Xianran Yu Ranbo | 2005 | Journal of Alloys and Compounds2005,402,: | 1 |
| 12 | Synthesis and Structure of Copper Hydroxyphosp - hate and Its High Catalyti - Activity in Hydroxylation of Phenol by H2O2 显示文摘 | Fengshou Xiao Jianmin Sun Ranbo Yu | 2001 | J Catal2001,199,: | 1 |
| 13 | Catalytic Performance in Phenol Hydroxylation by Hydrogen Peroxide over a Catalyst of V-Zr-O Complex显示文摘 | Xiao Fengshou Wang Dan | 1999 | Catal Today1999,51,1: | 1 |
| 14 | Removal of Cd2 + from a- queous solution with carbon modified aluminum-pillared montmoril- lonite显示文摘 | Yu Ranbo Wang Shengdong Wang Dan | 2008 | Catalysis Today2008,139,12: | 1 |
| 15 | Hydrothermal synthesis and characterization of a novel one-dimensional titanium glycolate complex single orystal: Ti(OCH2CH2O) 2 显示文摘 | Wang Dan Yu Ranbo Kumada N | 1999 | Chem Mater1999,11,: | 1 |
| 16 | Editorial for special issue on advanced energy storage and materials for the 70th Anniversary of USTB显示文摘1. Foreword Energy storage plays a key role in the transition towards a carbon-neutral economy. By balancing power grids and saving surplus energy, it represents a concrete means of improving energy efficiency and integrating more renewable energy sources into electricity systems. A variety of technologies to store energy are developing at a fast pace and increasingly becomingmoremarketcompetitive,includingtraditional electric energy storage, thermal energy storage, and newly developed hydrogen energy storage, etc. The demand for energy storage system with high power and efficiency boosts the development in the advanced techniques and materials,such as batteries, super-capacitors, molten salts, and catalysts for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER). | Xindong Wang Ranbo Yu Chun Zhan Wei Wang Xuan Liu | 2022 | International Journal of Minerals,Metallurgy and Materials2022,29,5: | 1 |
| 17 | Hydrother-mal synthesis of ZrWz08 nanorods显示文摘 | Xing Xianran Xing Qifeng Yu Ranbo | 2006 | Physical B2006,371,: | 1 |
| 18 | A novel organically templated hybrid open-framework manganese phosphate-oxalate显示文摘 | Yu Ranbo Xing Xianran Takashi Saito | 2005 | Solid State Sciences2005,,7: | 1 |
| 19 | Catalytic performance in phenol hydroxylation by hydrogen peroxide over a catalyst of V-Zr-O complex显示文摘 | Yu Ranbo Xiao Fenshou Wang Dan | 1999 | Catalysis Today1999,51,: | 1 |
| 20 | Anchoring nitrogen-doped Co_(2)P nanoflakes on NiCo_(2)O_(4)nanorod arrays over nickel foam as high-performance 3D electrode for alkaline hydrogen evolution显示文摘Effective and robust electrocatalysts are mainly based on innovative materials and unique structures.Herein,we designed a flakelike cobalt phosphide-based catalyst supporting on NiCo_(2)O_(4)nanorods array,which in-situ grew on the nickel foam(NF)current collector,referring as NCo_(2)P/NiCo_(2)O_(4)/NF electrode.By optimizing the microstructure and electronic structure through 3D hierarchy fabrication and nitrogen doping,the catalyst features with abundant electrochemical surface area,favorable surface wettability,excellent electron transport,as well as tailored d band center.Consequently,the as-prepared N-Co_(2)P/NiCo_(2)O_(4)/NF electrode exhibits an impressive HER activity with a low overpotentials of58 mV at 10 mA cm^(-2),a Tafel slop of 75 mV dec^(-1),as well as superior durability in alkaline medium.This work may provide a new pathway to effectively improve the hydrogen evolution performance of transition metal phosphides and to develop promising electrodes for practical electrocatalysis. | Xiaohao Ji Xiaoyu Chen Lijuan Zhang Cheng Meng Yilei He Xing Zhang Zumin Wang Ranbo Yu | 2023 | Green Energy & Environment2023,8,2: | 1 |