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28篇 您的检索式:作者名="Chuannan"
    题名 作者 年代 出处 被引量
1Demystifying the catalysis in lithium–sulfur batteries:Characterizationmethods and techniques显示文摘Lithium–sulfur(Li-S)batteries are promising next-generation energy storage systems with ultrahigh energy density.However,the intrinsic sluggish“solid–liquid–solid”reaction between S8 and Li2S causes unavoidable shuttling of polysulfides,severely limiting the practical energy density and cycling performance.Recently,the catalysis process has been introduced for the sulfur redox reaction to accelerate the conversion of polysulfides,providing a positive remedy for the polysulfides shuttling.Nevertheless,in-depth understanding of the catalyst evaluation criteria and catalytic mechanism still lies in the“black box”,and precise characterization technique is the key to unlock this puzzle.In this review,we provide a comprehensive overview of characterization techniques on the catalyst in Li-S batteries from two aspects of catalytic performance and catalytic mechanism,highlighting their significance and calling for more efforts to develop precise and fast techniques for Li-S catalysis.Moreover,we envision the future development of characterization for better understanding the catalysis toward practical Li-S battery.Chuannan Geng Wuxing Hua DaweiWang Guowei Ling Chen Zhang Quan-Hong Yang 2021SusMat2021,1,1:6
2Recent advances in semitransparent perovskite solar cells显示文摘The environmental challenges across the world step up the researcher's interest in different energy resources.Semitransparent perovskite solar cells(STPSCs)could expedite generation of electricity as well as shows reassuring its significance in flexible electronics and building-integrating photovoltaic as so forth in the next decade.It is highly recommended to endorse the relevance of semitransparent solar devices to fulfill the required level of energy even by using the roofs and windows of the buildings.In this review article,we pay more attention to recent developments of ST-PSCs.Herein,a succinct overview of latest research about semitransparent solar cell technologies and ST-PSCs is summarized.Moreover,the strategies to enhance the transparency of solar cells are described utilizing structure,transparent electrodes,perovskite film formation,tandem solar cells,color tuning,and human eye perception.Last but not least is that the serious concerns about stability of ST-PSCs are vividly reviewed.Muhammad Mujahid Chen Chen Jian Zhang Chuannan Li Yu Duan 2021InfoMat2021,3,1:4
3Stable and highly efficient perovskite solar cells:Doping hydrophobic fluoride into hole transport material PTAA显示文摘Perovskite solar cells(PSCs)have rapidly developed in the past few years,with a record efficiency exceeding 25%.However,the long-term stability of PSCs remains a challenge and limits their practical application.Many high-performance PSCs have an n-i-p device architecture employing 4-tert-butylpyridine(t-BP)and bis(trifluoromethane)sulfonimide lithium salt(Li-TFSI)as bi-dopants for the hole-transporting layer(HTL).However,the hygroscopicity of Li-TFSI and low boiling point of t-BP negatively impact the moisture stability of these PSC devices.Herein,we report the use of the fluorine-containing hydrophobic compound tris(pentafluorophenyl)phosphine(35FP)as a dopant for poly[bis(4-phenyl)(2,4,6-trimethylphenyl)amine](PTAA).With better hydrophobicity and stability than undoped PTAA,a PSC device containing 35FP-doped PTAA demonstrated improved charge transport properties and reduced trap density,leading to a significant enhancement in performance.In addition,the long-term stability of a 35FP-doped PTAA PSC under air exposure without encapsulation was demonstrated,with 80%of the initial device efficiency maintained for 1,000 h.This work provides a new approach for the fabrication of efficient and stable PSCs to explore hydrophobic dopants as a substitute for hydrophilic Li-TFSI/t-BP.Chao Yu Buyue Zhang Chen Chen Jintao Wang Jian Zhang Ping Chen Chuannan Li Yu Duan 2022Nano Research2022,15,5:2
4Removal of Ag + from water environment using a novel magnetic thiourea-chitosan imprinted Ag +显示文摘Lulu Fan Chuannan Luo Zhen Lv Fuguang Lu Huamin Qiu 2011Journal of Hazardous Materials2011,,:1
5Rapid analysis of mono-saccharides and oligo-saccharides in hydrolysates of lignocellulosic biomass by HPLC显示文摘Li Hailong Long Chuannan Zhou juan 2013Biotechnology Letters2013,35,9:1
6Strategies to Realize Compact Energy Storage for Lithium-Sulfur Batteries显示文摘High volume energy density(Ev)means more energy can be stored in a small space,which helps ease the“space anxiety”faced by electrochemical energy storage(EES)devices such as batteries.Lithium-sulfur batteries(LSBs)are promising next-generation EES devices due to their high theoretical energy density.However,its E_(v) is unsatisfactory due to the low density of sulfur and excess use of lightweight nanocarbon in the cathode,severely limiting its practical applications.In this review,the recent progress in improving the E_(v) is summarized from the aspects of materials,electrodes,and devices.First,the key factors affecting E_(v) are discussed.Then at the material level,the design of materials with high density and rich pore structure,and the key roles of catalysts are discussed.At the electrode level,the design of the compact electrode structure is summarized.Increasing the thickness of the cathodes or reducing the use of the anodes(low N/P ratio)to improve E_(v) from the device level is highlighted.Finally,the E_(v) of solid-state LSBs system has been prospected.Qiang Li Chuannan Geng Li Wang Quan-Hong Yang Wei Lv 2023Renewables2023,1,4:1
7Synthesis of magnetic β-cyclodextrin-chitosan/graphene oxide as nanoadsorbent and its application in dye adsorption and removal显示文摘Fan Lulu Luo Chuannan Sun Min 2013Colloids and Surfaces B:Biointeffaces2013,103,:1
8Chitosan oligo- saccharides suppressant LPS binding to TLR4/MD-2 receptor com- plex显示文摘Qiao Ying Ruan Yuanyuan Xiong Chuannan 2010Carbohydr Polym2010,82,2:1
9Multiwalled carbon nanotubes-doped polymeric ionic liquids coating for multiple headspace solid-phase microextraction显示文摘Juanjuan Feng Min Sun Leilei Li Xiaojiao Wang Huimin Duan Chuannan Luo 2014Talanta2014,,:1
10Preparation of novel magnetic chitosan/ graphene oxide Composite as effective adsorbents toward methylene blue 显示文摘Lulu Fan Chuannan Luo 2012Bioresouree Technology2012,,114:1
11Cellu- lase production by solid state fermentation using bagasse with Penicillium decumbens L-06显示文摘CHUANNAN LONG YUEQIN OU PING GUO 2009Annals of Microbiology2009,59,3:1
12Highly selec- tive adsorption of lead ions by water-dispersible magnet- ic chitosan/graphene oxide composites 显示文摘Lulu Fan Chuannan Luo Min Sun 2013Colloids and Surfaces B : Biointerfaces2013,5,:1
13Removal of Ag+ from water environment using a novel magnetic thiourea-chitosan imprinted Ag+ 显示文摘Lulu Fan Chuannan Luo Zhen Lv etail 2011Journal of Hazardous Materials2011,,:1
14Ultrasensitive molecularly imprinted elec- trochemical sensor based on magnetism graphene oxide/(3-cyclodextrin/Au nanoparticles compos- ites for chrysoidine analysis显示文摘WANG Xiaojiao LI Xiangjun LUO Chuannan 2014Electrochimica Acta2014,130,:1
15Synthesis of magnetic 显示文摘Fan Lulu Luo Chuannan Sun Min 2013Colloids and Surfaces B:Bioin- terfaces2013,103,:1
16Preparation of novel magnetic chi- tosan/graphene oxide composite as effective adsorbents toward methylene blue 显示文摘Fan Lulu Luo Chuannan 2012Bioresource Technology2012,114,:1
17显示文摘Fan Lulu Luo Chuannan Sun Min 2013Colloids and Sur faces B: Biointerfaces2013,,103:1
18Removal of alizarin red from water environment using magnetic chitosan with Alizarin Red as imprinted molecules显示文摘Lulu Fan Ying Zhang Xiangjun Li Chuannan Luo Fuguang Lu Huamin Qiu 2011Colloids and Surfaces B: Biointerfaces2011,,:1
19Removal of Ag + from water environment using a novel magnetic thiourea-chitosan imprinted Ag +显示文摘Lulu Fan Chuannan Luo Zhen Lv Fuguang Lu Huamin Qiu 2011Journal of Hazardous Materials2011,,:1
20Adsorbent for chromium removal based on graphene oxide functionalized with magnetic cyclodextrin–chitosan显示文摘Leilei Li Lulu Fan Min Sun Huamin Qiu Xiangjun Li Huimin Duan Chuannan Luo 2013Colloids and Surfaces B: Biointerfaces2013,,:1
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