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| 1 | A highly alkaline-stable metal oxide@metal-organic framework composite for high-performance electrochemical energy storage显示文摘Most metal-organic frameworks(MOFs) hardly maintain their physical and chemical properties after exposure to alkaline aqueous solutions,thus precluding their use as potential electrode materials for electrochemical energy storage devices.Here,we present the design and synthesis of a highly alkaline-stable metal oxide@MOF composite,Co3O4 nanocube@Co-MOF(Co3O4@Co-MOF),via a controllable and facile one-pot hydrothermal method under highly alkaline conditions.The obtained composite possesses exceptional alkaline stability,retaining its original structure in 3.0 M KOH for at least 15 days.Benefitting from the exceptional alkaline stability,unique structure,and larger surface area,the Co3O4@Co-MOF composite shows a specific capacitance as high as 1020 F g-1 at 0.5 A g-1 and a high cycling stability with only 3.3% decay after 5000 cycles at 5 A g-1.The as-constructed solid-state flexible device exhibits a maximum energy density of 21.6 mWh cm-3. | Shasha Zheng Qing Li Huaiguo Xue Huan Pang Qiang Xu | 2020 | National Science Review2020,7,2: | 16 |
| 2 | Multicenter Evaluation of the Molecular Line Probe Assay for Multidrug Resistant Mycobacterium Tuberculosis Detection in China显示文摘In order to evaluate the performance of a molecular Hain line probe assay(Hain LPA)for rapid detection of rifampicin and isoniazid resistance of Mycobacterium tuberculosis in China。 | LI Qiang DONG Hai Yan PANG Yu XIA Hui OU Xi Chao ZHANG Zhi Ying LI Jun Chen ZHANG Jian Kang HUAN Shi Tong CHIN Daniel P KAM Kai Man ZHAO Yan Lin | 2015 | Biomedical and Environmental Sciences2015,28,6: | 13 |
| 3 | Comparison of different methods of intestinal obstruction in a rat model显示文摘AIM:To investigate different methods of creating incomplete intestinal obstruction in a rat model and to compare their electrophysiologic,morphologic and histologic characteristics. METHODS:Rat ileum was partially obstructed by the respective application of:braided silk(penetrated the mesentery and surrounded intestine);half ligation (penetrated directly and ligated 1/2 cross-section of the intestine);wide pipe(6 mm in width,surrounded the intestine);narrow pipe(2 mm in width,surrounded the intestine).A control was also included(no obstruction). Various behavioral and electrophysiologic variables, as well as morphologic and immunohistochemical observations were recorded by blinded investigators at different time points(12,24,48,72 h),including daily general condition,ileal wet weight and circumference, macromorphous and micromorphous intestine,bowel movement capability in vivo and in vitro,slow wave and neural electrical activity,and the number of c-Kit positive interstitial cells of Cajal(ICC). RESULTS:Despite being of a similar general condition, these methods resulted in different levels of obstruction in each group compared with the control at different time points(12,24,48,72 h).However,these fields of the wide pipe rat showed significantly differences when compared with the other three obstructed groups at 12 to 72 h,including macroscopic and histological presentation,intestinal transit ratio and contractility,circumference and wet weight,amplitude and frequency of nerve electrical discharge and slow wave,and ICC numbers(all P<0.01). CONCLUSION:The wide pipe rat method is significantly more reliable and stable than the other methods of obstruction,demonstrating that use of the wide pipe method can be a useful model of incomplete intestinal obstruction. | Meng-Lang Yuan Zheng Yang Yu-Cheng Li Lan-Lan Shi Jia-Ling Guo Yu-Qin Huang Xia Kang Jing-Jing Cheng Yang Chen Ting Yu De-Qi Cao Huan Pang Xiao Zhang | 2013 | World Journal of Gastroenterology2013,19,5: | 10 |
| 4 | A bHLH transcription activator regulates defense signaling by nucleo-cytosolic trafficking in rice显示文摘Crosstalk between plant hormone signaling pathways is vital for controlling the immune response during pathogen invasion.Salicylic acid(SA)and jas-monic acid(JA)often play important but antagonistic roles in the immune responses of higher plants.Here,we identify a basic helix-loop-helix transcription acti-vator,OsbHLH6,which confers disease resistance in rice by regulating SA and JA signaling via nucleo-cytosolic trafficking in rice(Oryza sativa).OsbHLH6 expression was upregulated during Magnaporthe oryzae infection.Transgenic rice plants overexpressing OsbHLH6 display increased JA responsive gene expression and enhanced disease susceptibility to the pathogen.Nucleus-localized OsbHLH6 activates JA signaling and suppresses SA signaling;however,the SA regulator OsNPR1(Nonexpressor of PR genes 1)sequesters OsbHLH6 in the cytosol to alleviate its effect.Our data suggest that OsbHLH6 controls disease re-sistance by dynamically regulating SA and JA signaling. | Fanwei Meng Chao Yang Jidong Cao Huan Chen Jinhuan Pang Qiqi Zhao Zongyi Wang Zheng Qing Fu Jun Liu | 2020 | Journal of Integrative Plant Biology2020,62,10: | 10 |
| 5 | Nitrogen-,phosphorus-doped carbon-carbon nanotube CoP dodecahedra by controlling zinc content for high-performance electrocatalytic oxygen evolution显示文摘Here,N-and P-doped carbon-carbon nanotube CoP(NPC-CNTs-CoP)nanoparticles dodecahedra are achieved by multistep calcination of the Zn-doped zeolitic imidazolate framework ZIF-67 precursor(ZnCo-ZIF).In the structures,the presence of N and P atoms,abundant CNTs and the CoP nanoparticles can enhance electrochemical activity and promote the structural stability of materials.As the temperature increases,the Zn contents gradually reduce to zero,which provides more active sites for electrochemical testing.Furthermore,the high specific surface area and microporous behavior of NPC-CNTsCoP-9 make it excellent in electrocatalytic testing.NPCCNTs-CoP-9 shows a low overpotential of 224 mV at10 mA·cm^-2 in 1.0 mol·L^-1 KOH solution.The strategy of zeolitic imidazole framework-derived transition metal phosphides will provide a new sight for developing energy conversion materials. | Xia-Xia Li Pei-Yao Zhu Qing Li Yu-Xia Xu Yan Zhao Huan Pang | 2020 | Rare Metals2020,39,6: | 9 |
| 6 | Clean utilization of palm kernel shell:sustainable and naturally heteroatom-doped porous activated carbon for lithium-sulfur batteries显示文摘Lithium-sulfur batteries(LSBs)have received much concern as emerging high-power energy storage system.Nevertheless,the low conductivity of sulfur and poly sulfide shuttle results in low rate capability and rapid capacity decay,which seriously limit its commercial application.Here,facile,sustainable and cost-effective strategy for preparing heteroatom-doped porous activated carbon(PAC)derived from biomass palm kernel shell(PKS)was developed for high-performance LSB applications.The presence of N,P and S heteroatoms with modification of the surface polarity brings about large amounts of active sites and improved adsorption property compared to those of common carbon materials.The PAC sample possesses desirable specific surface area(SSA)(2760 m2·g-1)as well as pore volume(1.6 cm3·g-1).Besides,the good electrical conductivity of PAC endows the material with excellent rate performance.The PAC-S electrode with a 60%of sulfur loading has a desirable first discharge capacity(1045 mAh·g1,200 mA·g-1)with superb discharge capacity(869.8 mAh·g-1,100 th cycle)and cyclability(312.6 mAh·g-1,800 mA·g-1,1000 th cycle),which can be mainly ascribed to its unique porous properties and the good conductivity of PAC. | Xu-Ran Han Xiao-Tian Guo Meng-Jiao Xu Huan Pang Yan-Wen Ma | 2020 | Rare Metals2020,39,9: | 8 |
| 7 | Risk of Active Pulmonary Tuberculosis among Patients with Coal Workers'Pneumoconiosis:A Case-control Study in China显示文摘The aim of this study was to estimate the association between occupational, environmental, behavioral risk factors, and active pulmonary tuberculosis(PTB) among coal workers' pneumoconiosis(CWP) patients. A matched case-control study was conducted in 86 CWP patients with active PTB and 86 CWP controls without TB. A standardized questionnaire was used for risk factors assessment. Conditioned logistic regression analysis was used to identify associations between the risk factors and active PTB among CWP patients. The results showed that the stage of CWP, poor workplace ventilation, family history of TB, and exposure to TB were independent risk factors for active PTB in patients with CWP with which recommendations for improving work environments, and for case finding activities in patients with CWP could be made. | JIN Yan FAN Jing Guang PANG Jing WEN Ke ZHANG Pei Ying WANG Huan Qiang LI Tao | 2018 | Biomedical and Environmental Sciences2018,31,6: | 8 |
| 8 | Dual-ligand and hard-soft-acid-base strategies to optimize metal-organic framework nanocrystals for stable electrochemical cycling performance显示文摘Most metal-organic frameworks(MOFs)hardly maintain their physical and chemical properties after exposure to acidic,neutral,or alkaline aqueous solutions,resulting in insufficient stability,therefore limiting their applications.Thus,the design and synthesis of stable size/morphology-controlled MOF nanocrystals is critical but challenging.In this study,dual-ligand and hard-soft-acid-base strategies were used to fabricate a variety of 3D pillared-layer[Ni(thiophene-2,5-dicarboxylate)(4,4'-bipyridine)]_(n) MOF nanocrystals(1D nanofibers,2D nanosheets and 3D aggregates)with controllable morphology by varying the concentration of 4,4'-bipyridine and thus controlling the crystal growth direction.Owing to the shorter ion diffusion length,enhanced electron/ion transfer and strong interactions between thiophene-2,5-dicarboxylate and 4,4'-bipyridine,the 2D nanosheets showed much larger specific capacitance than 1D nanofibers and 3D aggregates.A single device with an output voltage as high as 3.0 V and exceptional cycling performance(95%of retention after 5000 cycles at 3 mA cm^(–2))was realized by configuring two aqueous asymmetric supercapacitive devices in series.The excellent cycling property and charge–discharge mechanism are consistent with the hard-soft-acid-base theory. | Shasha Zheng Yan Sun Huaiguo Xue Pierre Braunstein Wei Huang Huan Pang | 2022 | National Science Review2022,9,7: | 5 |
| 9 | Dose optimization of intrathecal administration of human umbilical cord mesenchymal stem cells for the treatment of subacute incomplete spinal cord injury显示文摘Human umbilical cord mesenchymal stem cells(hUC-MSCs)are a promising candidate for spinal cord injury(SCI)repair owing to their advantages of low immunogenicity and easy accessibility over other MSC sources.However,modest clinical efficacy hampered the progression of these cells to clinical translation.This discrepancy may be due to many variables,such as cell source,timing of implantation,route of administration,and relevant efficacious cell dose,which are critical factors that affect the efficacy of treatment of patients with SCI.Previously,we have evaluated the safety and efficacy of 4×10^(6) hUC-MSCs/kg in the treatment of subacute SCI by intrathecal implantation in rat models.To search for a more accurate dose range for clinical translation,we compared the effects of three different doses of hUC-MSCs-low(0.25×10^(6) cells/kg),medium(1×10^(6) cells/kg)and high(4×10^(6) cells/kg)-on subacute SCI repair through an elaborate combination of behavioral analyses,anatomical analyses,magnetic resonance imaging-diffusion tensor imaging(MRI-DTI),biotinylated dextran amine(BDA)tracing,electrophysiology,and quantification of mRNA levels of ion channels and neurotransmitter receptors.Our study demonstrated that the medium dose,but not the low dose,is as efficient as the high dose in producing the desired therapeutic outcomes.Furthermore,partial restoration of theγ-aminobutyric acid type A(GABAA)receptor expression by the effective doses indicates that GABAA receptors are possible candidates for therapeutic targeting of dormant relay pathways in injured spinal cord.Overall,this study revealed that intrathecal implantation of 1×10^(6) hUC-MSCs/kg is an alternative approach for treating subacute SCI. | Ting-Ting Cao Huan Chen Mao Pang Si-Si Xu Hui-Quan Wen Bin Liu Li-Min Rong Mang-Mang Li | 2022 | Neural Regeneration Research2022,17,8: | 5 |
| 10 | Evaluation of Chinese tea by the electronic nose and gas chromatography–mass spectrometry: Correlation with sensory properties and classification according to grade level显示文摘 | Zihan Qin Xueli Pang Dong Chen Huan Cheng Xiaosong Hu Jihong Wu | 2013 | Food Research International2013,,: | 5 |
| 11 | Heritability of growth traits in the Asian seabass (Lates calcarifer)显示文摘Growth is an economically important trait in aquaculture.To improve growth trait of the Asian seabass(Lates calcarifer)we have been carrying out,since 2004,a selective breeding program.This study focuses on growth traits in the F2 fish generation,comprised of offspring from 23 mass crosses from 383 F_(1) brooders.Using genotyping analysis for 10 microsatellites from both brood stock and progeny we have reconstructed the pedigree of each mass-cross.For F_(2) generation at 90 days post hatch(dph),we have recorded body weight(BW)for 12,117 individuals and total length(TL),standard length(SL)and condition factor(K_(tl) and K_(sl))for 3530 individuals;and all five traits for 2136 individuals at 270 dph.At 90 dph the average BW was 46.88±20.95 g.Combining pedigree information,recorded growth traits and Restricted Maximum Likelihood method,we have estimated that the narrow sense heritability(h^(2))in F_(1) fish for BW,TL,SL,K_(tl) and K_(sl) was at,90 dph,0.12±0.03,0.11±0.03,0.10±0.03,0.20±0.04 and 0.11±0.03,respectively and,at 270 dph,0.34±0.07,0.32±0.07,0.30±0.06,0.13±0.04 and 0.11±0.04,respectively.At 90 dph the realised heritability for BW was 0.13.Comparing with F_(1) generation,the growth performance of F_(2) fish was increased by 14.4%.Heritability of growth traits will be useful for future genetic improvement programmes of the Asian seabass. | Baoqing Ye Ziyi Wan Le Wang Hongyan Pang Yanfei Wen Huiming Liu Bing Liang Huan Sein Lim Junhui Jiang Genhua Yue | 2017 | Aquaculture and Fisheries2017,2,3: | 4 |
| 12 | Bimetallic Metal-Organic Framework with High-Adsorption Capacity toward Lithium Polysulfides for Lithium–sulfur Batteries显示文摘The practical application of Li-S batteries is largely impeded by the“shuttle effect”generated at the cathode which results in a short life cycle of the battery.To address this issue,this work discloses a bimetallic metal-organic framework(MOF)as a sulfur host material based on Al-MOF,commonly called(Al)MIL-53.To obtain a high-adsorption capacity to lithium polysulfides(Li_(2)S_(x),4≤x≤8),we present an effective strategy to incorporate sulfiphilic metal ion(Cu^(2+))with high-binding energy to Li_(2)S_(x) into the framework.Through a one-step hydrothermal method,Cu^(2+) is homogeneously dispersed in Al-MOF,producing a bimetallic Al/Cu-MOF as advanced cathode material.The macroscopic Li2S4 solution permeation test indicates that the Al/Cu-MOF has better adsorption capacity to lithium polysulfides than monometallic Al-MOF.The sulfur-transfusing process is executed via a melt-diffusion method to obtain the sulfur-containing Al/CuMOF(Al/Cu-MOF-S).The assembled Li-S batteries with Al/Cu-MOF-S yield improved cyclic performance,much better than that of monometallic AlMOF as sulfur host.It is shown that chemical immobilization is an effective method for polysulfide adsorption than physical confinement and the bimetallic Al/Cu-MOF,formed by incorporation of sulfiphilic Cu^(2+) into porous MOF,will provide a novel and powerful approach for efficient sulfur host materials. | Pengbiao Geng Meng Du Xiaotian Guo Huan Pang Ziqi Tian Pierre Braunstein Qiang Xu | 2022 | Energy & Environmental Materials2022,5,2: | 4 |
| 13 | Activated graphene with tailored pore structure parameters for long cycle-life lithium-sulfur batteries显示文摘 | Mingbo Zheng Songtao Zhang Shuangqiang Chen Zixia Lin Huan Pang Yan Yu | 2017 | Nano Research2017,10,12: | 4 |
| 14 | Applications of M_xSe_y(M=Fe, Co, Ni) and Their Composites in Electrochemical Energy Storage and Conversion显示文摘Transition-metal selenides(M_xSe_y,M = Fe,Co,Ni)and their composites exhibit good storage capacities for sodium and lithium ions and occupy a unique position in research on sodium-ion and lithium-ion batteries.MxSey and their composites are used as active materials to improve catalytic activity.However,low electrical conductivity,poor cycle stability,and low rate performance severely limit their applications.This review provides a comprehensive introduction to and understanding of the current research progress of M_xSe_y and their composites.Moreover,this review proposes a broader research platform for these materials,including various bioelectrocatalytic performance tests,lithium-sulfur batteries,and fuel cells.The synthesis method and related mechanisms of M_xSe_y and their composites are reviewed,and the effects of material morphologies on their electrochemical performance are discussed.The advantages and disadvantages of M_xSe_y and their composites as well as possible strategies for improving the storage and conversion of electrochemical energy are also summarized. | Huijie Zhou Xiaxia Li Yan Li Mingbo Zheng Huan Pang | 2019 | Nano-Micro Letters2019,11,3: | 4 |
| 15 | One-step synthesis of CoSn(OH)_6 nanocubes for high-performance all solid-state flexible supercapacitors显示文摘CoSn(OH)_6 nanocubes were synthesized by a facile one-step co-precipitate method. Their supercapacitor performances were investigated via a traditional threeelectrode system and all solid-state flexible asymmetric supercapacitor. The electrode shows a maximum specific capacitance up to 695 F·g^(-1). The flexible all solid-state asymmetric supercapacitor was fabricated based on CoSn(OH)_6 nanocubes and active carbon as positive and negative electrode. The assembled asymmetric supercapacitor exhibits a specific capacitance(97.3 mF·cm^(-2)), good rate/mechanical stability and a long cycling stability(5000 cycles), demonstrating great promise for applications in all solid-state flexible supercapacitors. | Bing Li Guang-Xun Zhang Ke-Sheng Huang Li-Fan Qiao Huan Pang | 2017 | Rare Metals2017,36,5: | 4 |
| 16 | Metal-organic framework-derived phosphide nanomaterials for electrochemical applications显示文摘Because of features,such as adjustable structures,high porosity,and high crystallinity,metal-organic frameworks(MOFs)deservedly have received considerable attention.Nevertheless,there is still room for improvements in the electrical conductivity and chemical stability of some MOFs,because of which they cannot be utilized as electrode materials.Fortunately,MOF derivatives have received widespread attention in recent years,especially phosphide materials,which are widely used in practical applications because of their outstanding conductivity,excellent specific surface area,and standout charge mobility.In this review,the latest developments of MOF-derived phosphides in electrocatalysis related to energy,including the excellent performance in terms of electrochemical energy storage and ingenious strategies,and diversified synthetic approaches are emphasized and summarized.Additionally,the arduous task and feasible proposals of MOF-derived phosphides are also discussed. | Xinlan Wang Guangxun Zhang Wei Yin Shasha Zheng Qingquan Kong Jingqi Tian Huan Pang | 2022 | Carbon Energy2022,4,2: | 3 |
| 17 | Towards Efficient Electromagnetic Interference Shielding Performance for Polyethylene Composites by Structuring Segregated Carbon Black/Graphite Networks显示文摘An electromagnetic interference(EMI) shielding composite based on ultrahigh molecular weight polyethylene(UHMWPE) loaded with economical graphite-carbon black(CB) hybrid fillers was prepared via a green and facile methodology, i.e., high-speed mechanical mixing combined with hot compression thus avoiding the assistance of the intensive ultrasound dispersion in volatile organic solvents. In this composite, the graphite-CB hybrid fillers were selectively distributed in the interfacial regions of UHMWPE domains resulting a typical segregated structure. Thanks to the specific morphology of segregated conductive networks along with the synergetic effect of large-sized graphite flakes and small-sized CB nanoparticles, a low filler loading of 7.7 vol%(15 wt%) yielded the graphite-CB/UHMWPE composites with a satisfactory electrical conductivity of 33.9 S/m and a superior shielding effectiveness of 40.2 d B, manifesting the comparable value of the pricey large-aspect-ratio carbon nanofillers(e.g., carbon nanotubes and graphene nanosheets) based polymer composites. More interestingly, with the addition of 15 wt% graphite-CB(1/3, W/W) hybrid fillers, the tensile strength and elongation at break of the composite reached 25.3 MPa and 126%, respectively; with a remarkable increase of 58.1% and 2420% over the conventional segregated graphite/UHMWPE composites. The mechanical reinforcement could be attributed to the favor of the small-sized CB particles in the polymer molecular diffusion between UHMWPE domains which in turn provided a stronger interfacial adhesion. This work provides a facile, green and affordable strategy to obtain the polymer composites with high electrical conductivity, efficient EMI shielding, and balanced mechanical performance. | Cheng-hua Cui 鄢定祥 Huan Pang Li-chuan Jia Yu Bao Xin Jiang Zhong-ming Li | 2016 | Chinese Journal of Polymer Science2016,34,12: | 3 |
| 18 | Strategies to improve electrochemical performances of pristine metal‐organic frameworks‐based electrodes for lithium/sodium‐ion batteries显示文摘Metal‐organic frameworks(MOFs)have attracted considerable attention as promising next‐generation active electrode materials for lithium‐ion batteries(LIBs)or sodium‐ion batteries(SIBs)because of ultrahigh specific surface area,uniformly distributed pores,and tunable structure.However,there are some disadvantages inevitably far from meeting commercial requirements,such as low conductivity,inconvenient electron transmission,and unsatisfactory circulation stability.In this review,a comprehensive summary of MOFs‐based electrode materials is presented and discussed.First,the general Li^(^(+))/Na^(+)storage mechanism in MOFs‐based electrode materials,including conversion‐and insertion‐type reactions,are summarized with details of active inorganic/organic ligands.Second,MOFs as anode materials for LIBs/SIBs are emphasized and improved on the electrochemical performances.Furthermore,very few research literature on MOFs‐based cathode materials is also discussed.Finally,opinions and prospects on the current challenge of MOFs‐based electrode materials are provided for future research directions. | Zhoujia Liu Fenfen Zheng Weiwei Xiong Xiaogang Li Aihua Yuan Huan Pang | 2021 | SmartMat2021,2,4: | 3 |
| 19 | In situ establishment of Co/MoS_(2) heterostructures onto inverse opal‐structured N,S‐doped carbon hollow nanospheres:Interfacial and architectural dual engineering for efficient hydrogen evolution reaction显示文摘Rational design of low‐cost and high‐efficiency non‐precious metal‐based catalysts toward the hydrogen evolution reaction(HER)is of paramount significance for the sustainable development of the hydrogen economy.Interfacial manipulationinduced electronic modulation represents a sophisticated strategy to enhance the intrinsic activity of a non‐precious electrocatalyst.Herein,we demonstrate the straightforward construction of Co/MoS_(2) hetero‐nanoparticles anchored on inverse opal‐structured N,S‐doped carbon hollow nanospheres with an ordered macroporous framework(denoted as Co/MoS_(2)@N,S-CHNSs hereafter)via a templateassisted method.Systematic experimental evidence and theoretical calculations reveal that the formation of Co/MoS_(2) heterojunctions can effectively modulate the electronic configuration of active sites and optimize the reaction pathways,remarkably boosting the intrinsic activity.Moreover,the inverse opal‐structured carbon substrate with an ordered porous framework is favorable to enlarge the accessible surface area and provide multidimensional mass transport channels,dramatically expediting the reaction kinetics.Thanks to the compositional synergy and structural superiority,the fabricated Co/MoS_(2)@N,S-CHNSs exhibit excellent HER activity with a low overpotential of 105mV to afford a current density of 10 mA/cm^(2).The rationale of interface manipulation and architectural design herein is anticipated to be inspirable for the future development of efficient and earth‐abundant electrocatalysts for a variety of energy conversion systems. | Tingyu Lu Tongfei Li Desheng Shi Jialin Sun Huan Pang Lin Xu Jun Yang Yawen Tang | 2021 | SmartMat2021,2,4: | 3 |
| 20 | Porous rod-like Ni_(2)P/Ni assemblies for enhanced urea electrooxidation显示文摘The urea oxidation reaction has attracted increasing attention.Here,porous rod-like Ni2P/Ni assemblies,which consist of numerous nanoparticle subunits with matching interfaces at the nanoscale have been synthesized via a simple phosphating approach.Density functional theory calculations and density of states indicate that porous rod-like Ni2P/Ni assemblies can significantly enhance the activity of chemical bonds and the conductivity compared with NiO/Ni toward the urea oxidation reaction.The optimal catalyst of Ni2P/Ni can deliver a low overpotential of 50 mV at 10 mA·cm−2 and Tafel slope of 87.6 mV·dec−1 in urea oxidation reaction.Moreover,the constructed electrolytic cell exhibits a current density of 10 mA·cm−2 at a cell voltage of 1.47 V and an outstanding durability in the two-electrode system.This work has provided a new possibility to fabricate metal phosphides-metal assemblies with advanced performance. | Qing Li Xinran Li Jiawei Gu Yanle Li Ziqi Tian Huan Pang | 2021 | Nano Research2021,14,5: | 3 |