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| 1 | NiFe-based nanostructures on nickel foam as highly efficiently electrocatalysts for oxygen and hydrogen evolution reactions显示文摘Water splitting,as an advanced energy conversion technology,consists of two half reactions,including oxygen evolution reaction(OER)and hydrogen evolution reaction(HER).However,the ideal electrocatalysts are noble metal based catalysts.Their high cost and scarcity in earth seriously restrict the large deployments.Ni Fe-based materials have attracted great attention in recent years due to their excellent catalytic properties for OER and HER.Nevertheless,their conductivity and electrochemical stability at high current density are unsatisfactory,resulting in ineffective water splitting due to high impedance and low stability.Recently,a series of catalysts coating Ni Fe-based materials on 3 D nickel foam were found to be extremely stable under the circumstance of high current density.In this review,we summarized the recent advances of NiFe-based materials on nickel foam for OER and HER,respectively,and further provided the perspectives for their future development. | Wei Zhang Daohao Li Longzhou Zhang Xilin She Dongjiang Yang | 2019 | Journal of Energy Chemistry2019,28,12: | 6 |
| 2 | Induction effects of host plants on insecticide susceptibility and detoxification enzymes of Bemisia tabaci (Hemiptera: Aleyrodidae)显示文摘 | WenXie ShaoliWang QingjunWu YuntaoFeng HuipengPan XiaoguoJiao LongZhou XinYang WeiFu HaiyuanTeng BaoyunXu YoujunZhang | 2010 | Pest. Manag. Sci2010,,1: | 1 |
| 3 | Induction effects of host plants on insecticide susceptibility and detoxification enzymes of Bemisia tabaci (Hemiptera: Aleyrodidae)显示文摘 | WenXie ShaoliWang QingjunWu YuntaoFeng HuipengPan XiaoguoJiao LongZhou XinYang WeiFu HaiyuanTeng BaoyunXu YoujunZhang | 2010 | Pest Manag Sci2010,,1: | 1 |
| 4 | A Review of Effects of Heat Stress on Substance and Energy Metabolism in Muscle显示文摘Environmental temperature is a major factor affecting animal performance in South China. With global warming, heat stress will become more and more serious. This paper reviewed the effects of heat stress on metabolism of proteins, glucose, fat and energy in skeletal muscle and related mechanisms so as to provide theoretical guidance for alleviating heat stress and improving production performance of animal suffering from heat stress. | Shiyong WU Zhi FANG Bo XUE Longzhou LIU Ye YANG | 2015 | Agricultural Science & Technology2015,16,5: | 1 |
| 5 | Single atom catalyst for electrocatalysis显示文摘Single atom catalyst(SAC)refers to a novel catalyst with the active metal atoms individually anchored on the support.Single atom catalysts present the unique appeal due to the high atomic availability and specific activity,as well as the high pathway selectivity.Herein,we summarized the classification,preparation,characterization,and application of single atom catalysts.Finally,the current bottlenecks and the outlooks of the SAC research are discussed. | Jianan Su Linzhou Zhuang Shusheng Zhang Qingju Liu Longzhou Zhang Guangzhi Hu | 2021 | Chinese Chemical Letters2021,32,10: | 1 |
| 6 | One-step In-situ Synthesis of Vacancy-rich CoFe2O4@Defective Graphene Hybrids as Bifunctional Oxygen Electrocatalysts for Rechargeable Zn-Air Batteries显示文摘Developing efficient catalysts toward both oxygen reduction reaction(ORR)and oxygen evolution reaction(OER)is the core task for rechargeable metal-air batteries.Although integration of two active components should be an effective method to produce the bifunctional catalysts in principle,traditional techniques still can not attain fine tunable surface structure during material-hybridization process.Herein,we present a facile short-time in-situ argon(Ar)plasma strategy to fabricate a high-performance bifunctional hybrid catalyst of vacancy-rich CoFe2O4 synergized with defective graphence(r-CoFe2O4@DG).Reflected by the low voltage gap of 0.79V in two half-reaction measurements,the striking capability to catalyze ORR/OER endows it excellent and durable performance in rechargeable Zn-air batteries,with a maximum power density of 155.2mW/cm^2 and robust stablility(up to 60h).Further experimental and theoretical studies validate its remarkable bifunctional energetics root from plasma-induced surface vacancy defects and interfacial charge polarization between DG and CoFe2O4. | WANG X in ZHUANG Linzhou JIA Yi ZHANG Lijie YANG Qin XU Wenjia YANG Dongjiang YAN Xuecheng ZHANG Longzhou ZHU Zhonghua BROWN Christopher L YUAN Pei YAO Xiangdong | 2020 | Chemical Research in Chinese Universities2020,36,3: | 1 |
| 7 | Insight into the underlying competitive mechanism for the shift of the charge neutrality point in a trilayer-graphene field-effect transistor显示文摘Layer-number modulation in graphene has become a recent focus of research due to the superior degree of freedom that can be achieved in terms of magic-angle,wettability,superconductivity,and superlattices.However,the intrinsic transport of multilayer graphene is indistinguishable in atmospheric adsorbates and supporting environment,and its underlying charge transfer mechanism has not yet been thoroughly determined.In this study,a shift in the charge neutrality point of trilayer graphene(TLG)is demonstrated to be regulated by three governing factors:oxygen gas(O_(2)),water molecules(H_(2)O),and thermally activated electrons.Absorbed O_(2) induces a high work function in semimetallic TLG,while H_(2)O is not an evident dopant but can strengthen binding against O_(2) desorption.A simplified model is developed to elucidate the competitive mechanism and charge transfer among these two dopants(O_(2),H_(2)O)and thermal electrons,and the model is demonstrated by work function regulation and Bader charge transfer based on density functional theory calculations.This study provides a strategy to explore transport modulation of multilayer graphene in the fields of ballistic transport and low power consumption of graphene field-effect transistors. | Tao Huang Jiafen Ding Zirui Liu Rui Zhang BoLei Zhang Kai Xiong Longzhou Zhang Chong Wang Shili Shen Cuiyu Li Peng Yang Feng Qiu | 2022 | eScience2022,2,3: | 1 |
| 8 | Recent Advances in Types and Generation Mechanism of Intracellular Free Radicals显示文摘The overproduction of free radicals is the main reason for the peroxidation damage,metabolic disturbance and antioxidant imbalance in animals. This paper summarized the types and generation mechanism of intracellular free radicals and clarified the sources of free radicals in skeletal muscles and digestive tracts of animals. | Xin LI Zhi FANG Bo XUE Longzhou LIU Ye YANG | 2015 | Agricultural Biotechnology2015,4,4: | 0 |
| 9 | Influence of Different Lubricants on Deformation Behaviour of IN 718 Aloy in Hot Compresion Process显示文摘InfluenceofDiferentLubricantsonDeformationBehaviourofIN718AloyinHotCompresionProcesMaLongzhou①,ZhangJianmin①,ZhuangJingyun①,Z... | Ma Longzhou ①, Zhang Jianmin ①, Zhuang Jingyun ①, Zhong ZengyongCentral Iron and Steel Research Institute, MMI,Beijing (100081), China, P.JanschekThyssen Umformtechnik GMBH | 1997 | Journal of Iron and Steel Research(International)1997,4,1: | 0 |
| 10 | Advances of the functionalized carbon nitrides for electrocatalysis显示文摘Over the past few decades,the design and development of carbon materials have occurred at a rapid pace.In particular,these porous graphene-like carbon nitride materials have received considerable attention due to their superior structures and performances in the energy transformation field.In this review,nitrogenated holey two-dimensional graphene and polymeric carbon nitride will be discussed in depth.The structural properties,synthetic methods,and applications including electrocatalytic reactions,such as hydrogen evolution reaction,oxygen reduction reaction,oxygen evolution reaction,and nitrogen reduction reaction,will be presented in detail.Finally,we will present the outlooks on the current obstacles to the development of carbon nitride materials.This comprehensive understanding will help guide and motivate researchers to develop and modify carbon nitride materials with better properties in the future. | Qianqian Fan Jianan Su Tao Sun Zenghui Bi Huaisheng Wang Shusheng Zhang Qingju Liu Longzhou Zhang Guangzhi Hu | 2022 | Carbon Energy2022,4,2: | 0 |
| 11 | Visible-light-induced decarboxylative alkynylation of carboxylic acids in batch and continuous flow显示文摘A green efficient photoredox-catalyzed decarboxylative alkynylation of carboxylic acids with alkynyl bromides has been developed.This broadly applicable protocol is presented whereinα-amino,aliphatic andα-oxy acids are converted into useful alkynylation products.The commercially-available organic photocatalyst 4CzIPN is used as the photocatalyst,organic base DBU is utilized as the base,and DMSO serves as solvent.This strategy features mild conditions,is metal-free,and is environmentally friendly.The batch and continuous-flow protocols described were applied to obtain a broader substrate scope of functionalization(more than 50 examples).Furthermore,we demonstrate that the use of microflow technology enhanced and intensified the reaction process,achieving significantly reduced reaction times(i.e.,10 min of residence time). | Longzhou Qin Xinpeng Zhang Hao Sun Xiu Duan Jie Liu Mengyu Wu Xin Yuan Jiangkai Qiu Kai Guo | 2024 | Green Synthesis and Catalysis2024,5,1: | 0 |
| 12 | Signaling Pathways and Molecular Mechanisms of Oxidative Stress in Skeletal Muscle显示文摘Oxidative stress is a major factor affecting animal health and production performance. This paper briefly introduced the signaling pathways(i.e. NF-κB signaling pathway, MAPK, AP-1 and PGC-1α) of oxidative stress and the main genes regulating the signals of oxidative stress in skeletal muscle, providing a theoretical basis for reducing oxidative stress damage. | Haibing HU Wenjing LI Zhi FANG Bo XUE Longzhou LIU Ye YANG | 2015 | Agricultural Science & Technology2015,16,5: | 0 |