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| 1 | γ-MnO2 nanorods/graphene composite as efficient cathode for advanced rechargeable aqueous zinc-ion battery显示文摘Aqueous Zn//MnO2 batteries are emerging as promising large-scale energy storage devices owing to their cost-effectiveness,high safety,high output voltage,and energy density.However,the MnO2 cathode suffers from intrinsically poor rate performance and rapid capacity deterioration.Here,we remove the roadblock by compositing MnO2 nanorods with highly conductive graphene,which remarkably enhances the electrochemical properties of the MnO2 cathode.Benefiting from the boosted electric conductivity and ion diffusion rate as well as the structural protection of graphene,the Zn//MnO2-graphene battery presents an admirable capacity of 301 mAh g^-1 at 0.5 A g^-1,corresponding to a high energy density of 411.6 Wh kg^-1.Even at a high current density of 10 A g^-1,a decent capacity of 95.8 mAh g^-1 is still obtained,manifesting its excellent rate property.Furthermore,an impressive power density of 15 kW kg^-1 is achieved by the Zn//MnO2-graphene battery. | Chao Wang Yinxiang Zeng Xiang Xiao Shijia Wu Guobin Zhong Kaiqi Xu Zengfu Wei Wei Su Xihong Lu | 2020 | Journal of Energy Chemistry2020,29,4: | 13 |
| 2 | Recent progress and challenges of carbon materials for Zn-ion hybrid supercapacitors显示文摘Zinc-ion hybrid supercapacitors(ZHSCs)have garnered increasing attention as promising energy storage devices in recent years,as they combine the advantages of high-energy Zn-ion batteries and high-power supercapacitors.However,the development of ZHSCs is still in its infancy and there are many bottlenecks to overcome.In particular,the challenge induced by the limited ion adsorption capability of carbon-positive electrodes severely restricts the energy density of ZHSCs.Therefore,it has become a key issue to design novel carbon-positive electrodes that enable high energy density yet do not deteriorate the intrinsic power capability and long-term durability.This study focuses on recent achievements in synthesis,morphology,and electrochemical performance of various carbon materials applied in ZHSCs.The modification strategies to optimize their electrochemical performance are briefly summarized.In addition,current challenges and future opportunities in this field are also outlined.This review will be beneficial to provide an organized framework for the research systems of carbon-positive electrodes and develop novel ZHSCs with high energy density. | Qiyu Liu Haozhe Zhang Jinhao Xie Xiaoqing Liu Xihong Lu | 2020 | Carbon Energy2020,2,4: | 10 |
| 3 | Flexible rechargeable Ni//Zn battery based on self-supported NiCo_2O_4 nanosheets with high power density and good cycling stability显示文摘The overall electrochemical performances of Ni-Zn batteries are still far from satisfactory, specifically for rate performance and cycling stability Herein, we demonstrated a high-performance flexible Ni//Zn battery with outstanding durability and high power density based on selfsupported NiCo_2 O_4 nanosheets as cathode and Zn nanosheets as anode. This Ni//Zn battery is able to deliver a remarkable capacity of183.1 mAh g^(-1) and a good cycling performance(82.7% capacity retention after 3500 cycles). More importantly, this battery achieves an admirable power density of 49.0 kW kg^(-1) and energy density of 303.8 Wh kg^(-1), substantially higher than most recently reported batteries. With such excellent electrochemical performance, this battery will have great potential as an ultrafast power source in practical application. | Haozhe Zhang Xinyue Zhang Haodong Li Yifeng Zhang Yinxiang Zeng Yexiang Tong Peng Zhang Xihong Lu | 2018 | Green Energy & Environment2018,3,1: | 5 |
| 4 | A high over-potential binder-free electrode constructed of Prussian blue and MnO2 for high performance aqueous supercapacitors显示文摘Extending the potential window of aqueous supercapacitors (SCs) up to 2.0 V is still a great challenge.Based on their good dynamic structural reversibility and open framework structure,the coordination superamolecular networks (CSNs) exhibit rapid charge/discharge ability and excellent cycle stability.As a typical coordination superamolecular network (CSN),Prussian blue (denoted as CSN-PB),which self-assembled by the CN-ligand and iron ions is firstly in-situ grown on carbon cloth,followed by electro-deposition of MnO2 to form CSN-PB/MnO2 composite electrode.Benefiting from synergistic effect of the constituent components,as well as the open framework structure of CSN-PB,this composite electrode reaches a high potential window of 1.4 V (vs.Ag/AgCl) and delivers a good specific capacitance of 315.3 F·g^-1 in aqueous electrolyte.An aqueous asymmetric device,constructed with CSN-PB/MnO2 composite as cathode and activated carbon as anode,can work in a stable potential window of 2.4 V,exhibits a high energy density of 46.13 Wh·kg^-1 and excellent cycling stability with 85.5% capacitance retention after 20,000 cycles.This work provides a new concept of high dynamic structural reversibility from CSNs to increase the cell voltage of asymmetric SCs for further boosting energy density. | Gaowei Zhang Hua Yao Feng Zhang Zitao Gao Qiujun Li Yangyi Yang Xihong Lu | 2019 | Nano Research2019,12,5: | 5 |
| 5 | Flexible Zn-ion batteries based on manganese oxides: Progress and prospect显示文摘The ever-growing market of wearable electronic devices has greatly stimulated the rapid development of flexible Zn-ion batteries(ZIBs).Manganese oxides are one of the most commonly used hosts for zinc ion accommodation and thus receive particular research interest for high-performance flexible ZIB constructions.In this review,a comprehensive summary of the recent development of flexible ZIBs with manganese oxides as cathode materials is presented.Apart from the brief introduction of flexible electronic devices and ZIBs,the charge storage mechanisms and crystal structures of various manganese oxides are summarized.Modifications of the cathode materials in terms of morphology,conductivity,structures,and flexibilities are illustrated in detail,together with the demonstration of structure-performance relationships and applications in flexible ZIBs.Finally,limitations to be overcome are indicated and the future work directions are proposed. | Xingyuan Gao Haozhe Zhang Xiaoqing Liu Xihong Lu | 2020 | Carbon Energy2020,2,3: | 2 |
| 6 | Hydrothermal growth of Sn4+-doped FeS2 cubes on FTO substrates and its photoelectrochemical properties 显示文摘 | Xia Jian Lu Xihong Gao Wei | 2011 | Electrochimica Acta2011,56,20: | 1 |
| 7 | Flexible Energy‐Storage Devices: Design Consideration and Recent Progress显示文摘 | Xianfu Wang Xihong Lu Bin Liu Di Chen Yexiang Tong Guozhen Shen | 2014 | Adv. Mater2014,,28: | 1 |
| 8 | Characterization of aroma profiles and aroma-active compounds in high-salt and low-salt shrimp paste by molecular sensory science显示文摘Flavor characteristics of raw shrimp,high-salt and low-salt shrimp paste were evaluated and compared by sensory analysis,headspace-gas chromatography-ion mobility spectrometry(HS-GC-IMS)and solid-phase microextraction-gas chromatography-mass spectrometry(SPME-GC-MS).In addition,aroma profiles and aroma-active compounds in these three samples were analyzed by solvent-assisted flavor evaporation-gas chromatography-olfactometry-mass spectrometry(SAFE-GC-O-MS).Results of sensory evaluation revealed that these three samples showed significant differences in sensitivity to the W2W,W2S,W1S and W1W sensors of the electronic nose(p<0.05),which represent organic sulfides,alkane aromatic compounds,short chain alkanes,and sulfides,respectively.Assessment of sensory parameters indicated tha high-salt shrimp paste had a strong roasted and meaty aroma,while low-salt shrimp paste showed an umami aroma more similar to raw shrimp.A total of 118 volatile compounds were identified using the three afore-mentioned gas chromatography methods.Among them,37 aroma-active compounds were detected by GC-O.High-salt shrimp was shown to contain more acids,aldehydes and heterocyclic compounds,which resembled cheese,roasted and meaty aromas.In contrast,low-salt shrimp paste contained more esters,which was similar to the umami aroma profile of raw shrimp.Interestingly,pyrazines were only produced in fermented shrimp paste samples,suggesting that they were produced during the fermentation process and they may contribute unique roasted and meaty aromas,which were important for the overall aroma characteristics of shrimp paste. | Jing Yu Kuan Lu Jiwei Zi Xihong Yang Wancui Xie | 2022 | Food Bioscience2022,45,1: | 1 |
| 9 | Effect of 1-MCP on quality and antioxidant capacity of in vitro digests from Sunrise'apples stored at different temperatures 显示文摘 | Songshan Qiu Changwei Lu Xihong Li | 2009 | Food Research International2009,42,3: | 1 |
| 10 | High Efficien- cy Degradation Crude Oil by a Novel Mutant Irradiated from Dietzia Strain by 12C6+ Heavy Ion Using Response Surface Methodology显示文摘 | Zhou Xiang Xin Zhijun Lu Xihong | 2013 | Bioresource Technology2013,137,: | 1 |
| 11 | Three-dimensional WO3 nanostruetures on carbon paper:photoelectroehemical property and visible light driven photoeatalysis 显示文摘 | Zhang Xianghui Lu Xihong Shen Yongqi | 2011 | Chemical Communications2011,47,20: | 1 |
| 12 | Oxygen‐Deficient Hematite Nanorods as High‐Performance and Novel Negative Electrodes for Flexible Asymmetric Supercapacitors显示文摘 | Xihong Lu Yinxiang Zeng Minghao Yu Teng Zhai Chaolun Liang Shilei Xie Muhammad‐Sadeeq Balogun Yexiang Tong | 2014 | Adv. Mater2014,,19: | 1 |
| 13 | Flexible multilayer lead-free film capacitor with high energy storage performances via heterostructure engineering显示文摘The immense potential of flexible energy storage materials applied in wearable electronic devices hasstimulated a lot of science researches on manufacturing technology and performance optimization.Herein, an all-inorganic flexible ferroelectric film with multilayer heterostructure is prepared based onMn doped Bi0.5Na0.5TiO_(3)eBiNi0.5Zr0.5O_(3) (Mn:BNT-BNZ) and Bi0.5Na0.5TiO_(3)eBiZn0.5Zr0.5O_(3) (BNT-BZZ)relaxor ferroelectrics. A win-win situation of breakdown strength and polarization is achieved in theMn:BNT-BNZ/BNT-BZZ multilayer film with the stacking period N - 3, of which energy density and ef-ficiency reach 80.4 J/cm3 and 62.0% respectively. It is proposed that the excellent energy storage per-formances are attributed to the synergistic effect of the electric field amplification effect, interfaceblocking effect and the polarization coupling effect based on the multilayer heterostructure. Moreover,the flexible ferroelectric film exhibits outstanding temperature (25e205 - C), frequency (0.5e5 kHz)stability and antifatigue property (1 108 cycles), and can well maintain stable performance at differenttensile/compressive bending radii (10e5 mm) and even after 104 bending cycles with a fixed bendingradius of 3 mm. This work opens up a promising route to the development of flexible energy storagematerials. | Ningning Sun Jinhua Du Ye Zhao Chunxiao Lu Pei Han Yong Li Qiwei Zhang Xihong Hao | 2022 | Journal of Materiomics2022,8,4: | 1 |
| 14 | Effect of 1- MCP on quality and antioxidant capacity of in vitro digests from 'Sunrise' apples stored at different temperatures显示文摘 | Songshan Qiu Changwen Lu Xihong Li | 2009 | Food Research International2009,42,: | 1 |
| 15 | Effect of 1-MCP on quality and antioxidant capacity of in vitro digests from ‘Sunrise’ apples stored at different temperatures显示文摘 | Songshan Qiu Changwen Lu Xihong Li Peter M.A. Toivonen | 2009 | Food Research International2009,,3: | 1 |
| 16 | Do zinc dendrites exist in neutral zinc batteries?显示文摘Neutral aqueous zinc batteries(ZBs)using mild aqueous electrolytes such as ZnSO4 solution exhibit intrinsic security,non-toxicity,low cost,simplified assembling process,and high energy density,which sweep out consumer's concerns about safety[1,2].These advantages promote this field to develop rapidly at multiple aspects ranging from the advanced cathode design to the functional/smart device assembly[3,4].However,the controversial standpoint whether Zn dendrites exist during the charging/discharging processes in neutral/mild electrolytes is still under debate.Some researchers demonstrated commercial Zn plates without further treatment were capable of driving highly reversable Zn plating/stripping courses in a non-dendrite manner[5-7]whereas others,by virtue of radiography and optical microscopy,clearly visualized the appearance of Zn dendrites that caused internal short circuit and severe battery lifespan deterioration[8-11]. | Jinjun He Xihong Lu | 2020 | Green Energy & Environment2020,5,1: | 1 |
| 17 | Flexible solid-state supercapacitors based on carbon nanoparticles/MnO2 nano- rods hybrid structure显示文摘 | Yuan Longyan Lu Xihong Xiao Xu et a | 2012 | ACS Nano2012,6,65: | 1 |
| 18 | Surface engineering towards high-energy carbon cathode for advanced aqueous zinc-ion hybrid capacitors显示文摘Opportunities coexist with challenges for the development of carbon-based cathodes with a high energy density applied for zinc ion hybrid capacitors(ZIHCs).In the present study,a facile and effective surface engineering approach is demonstrated to greatly improve the energy storage ability of commercial carbon paper(CP)in ZIHC.Benefiting from the introduced oxygen functional groups,larger surface area and improved surface wettability upon air calcination,the assembled aqueous ZIHC with the functionalized carbon paper(FCP)exhibits a much higher areal capacity of 0.22 mAh/cm^(2)at 1 mA/cm^(2),outperforming the counterpart with blank CP by over 5000 times.More importantly,a superior energy density and power density of 130.8μWh/cm^(2)and 7460.5μW/cm^(2),are respectively delivered.Furthermore,more than 90%of the initial capacity is retained over 10000 cycles.This surface engineering strategy to improve the energy storage capability is potentially applicable to developing a wide range of high-energy carbon electrode materials. | Xingyuan Gao Huilin Deng Yuanbin Fang Yuyan Li Xihong Lu | 2023 | Chinese Chemical Letters2023,34,8: | 0 |
| 19 | Highly efficient sono-piezo-photo synergistic catalysis in bismuth layered ferroelectrics via finely distinguishing sonochemical and electromechanochemical processes显示文摘Ultrasonic stimulation induced polarization behaviors in ferroelectric materials have been extensively explored in catalytic degradations.However,the ultrasonic wave similarly can realize dye degradation by the sonocatalysis behavior,which is always neglected in most reports on in-situ ultrasound-induced piezoelectric catalysis,so that people might overestimate piezocatalytic contributions.For this,we designed a series of visible light sensitive bismuth layered ferroelectric materials(BLFMs),M_(0.5)Bi_(2.5)Nb_(2)O_(9)(MBN,M=Li,Na,and K).It is found that the cavitation-induced degradation rates of Rhodamine B(RhB)strongly depend mechanical stirring speeds under a fixed ultrasonic power,which gradually increases with it,and reaches 77.9%(500 rpm and 3 h).Under lower stirring speed and reaction time(<50 rpm and 2 h),the cavitation effect is almost negligible,only piezocatalysis behavior occurs,which can be used as a key condition to distinguish the piezocatalysis and sonocatalysis.In particular,the degradation rate constant of Na_(0.5)Bi_(2.5)Nb_(2)O_(9) catalyst reaches up to 4.943×10^(-2) min^(-1) by the coupling of sonocatalysis,piezocatalysis and photocatalysis,which is much higher than that of single photocatalysis(0.491×10^(-2) min^(-1)),piezocatalytic(1.6×10^(-3) min^(-1)),and sonocatalysis(0.756×10^(-2) min^(-1)).These results may provide a feasible strategy of further improving catalytic degradation efficiency,and accurately determining the sonocatalysis and piezocatalysis contribution. | Lizhen Lu Nan Liang Haiqin Sun Qiwei Zhang Xihong Hao | 2022 | Journal of Materiomics2022,8,1: | 0 |
| 20 | 3-80 Heavy-ion Irradiation Drug Development in Retrospect and Prospect显示文摘The world is facing severe challenges of sustainable development, which requires the joint effort of the globalscience community to solve. As China continues to grow at a very impressive pace, the state appears acutely awareof the need to expand the Chinese science and technology portfolio to help fuel its growth and keep it sustainable.China also needs to continue on the path to innovations and modernization, focusing on endogenous growth torealize full, coordinated, and sustainable development. | Zhou Xiang Liang Jianping Lu Xihong Li Xuehu Xin Zhijun Wang Liang Du Wenyue Wu Zhengqian | 2014 | IMP & HIRFL Annual Report2014,,1: | 0 |