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Nanoreactor-Structured Defective MoS_(2):Suppressing Intercalation-Induced Phase Transitions and Enhancing Reversibility for Potassium-Ion Batteries
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作者 Chunrong Ma Cyrus Koroni +3 位作者 Jiacheng Hu Ji Qian Guangshuai Han Hui Xiong 《Nano-Micro Letters》 2026年第4期771-786,共16页
Conversion-type electrode materials hold significant promise for potassium-ion batteries(PIBs)due to their high theoretical capacities,yet their practical deployment is hindered by sluggish kinetics and irreversible s... Conversion-type electrode materials hold significant promise for potassium-ion batteries(PIBs)due to their high theoretical capacities,yet their practical deployment is hindered by sluggish kinetics and irreversible structural degradation.To overcome these limitations,we propose a rationally engineered nanoreactor architecture that stabilizes defect-rich MoS_(2)via interlayer incorporation of a carbon monolayer,followed by encapsulation within a nitrogen-doped carbon shell,forming a MoSSe@NC heterostructure.This tailored structure synergistically accelerates both K^(+)diffusion kinetics and electron transfer,enabling unprecedented rate performance(107 mAh g^(-1)at 10 Ag^(-1))and ultralong cyclability(86.5%capacity retention after 1200 cycles at 3 A g^(-1)).Mechanistic insights reveal a distinctive“adsorption-conversion”pathway,where sulfur vacancies on exposed S-Mo-S basal planes act as preferential K^(+)adsorption sites,effectively suppressing parasitic phase transitions during intercalation.In situ X-ray diffraction and transmission electron microscopy corroborate the structural reversibility of the conversion reaction,with the carbon matrix dynamically accommodating strain while preserving electrode integrity.This work not only advances the understanding of defect-driven interfacial chemistry in conversion-type materials but also provides a versatile strategy for designing high-performance anodes in next-generation PIBs through heterostructure engineering. 展开更多
关键词 Potassium ion batteries Phase transitions Structure reversibility Intercalated heterostructure Defect engineering
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Copper-substituted P3-type Na_(0.54)Mn_(0.64)Fe_(_(0.1)6)Mg_(0.1)Cu_(0.1)O_(2) cathode material for sodium-ion batteries with enhanced anionic redox reversibility
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作者 Zhe Mei Xun-Lu Li +10 位作者 Cui Ma Jie Zeng Chong-Yu Du Rui-Jie Luo Xuan Xu Zhe Qian Zi-Ting Zhou Ya Zhang Qian Cheng Yao-Guo Fang Yong-Ning Zhou 《Rare Metals》 2025年第5期2986-2996,共11页
P3-type manganese-iron-based cathodes with high specific capacity and abundant resource have attracted considerable attention for sodium-ion batteries.However,the long-term cycle stability of P3-type cathodes is still... P3-type manganese-iron-based cathodes with high specific capacity and abundant resource have attracted considerable attention for sodium-ion batteries.However,the long-term cycle stability of P3-type cathodes is still not satisfactory.In this work,we design a new quaternary manganese-iron-based cathode material(P3-Na_(0.54)Mn_(0.64)Fe_(_(0.1)6)Mg_(0.1)Cu_(0.1)O_(2))by Cu substitution.The strong covalent Cu-O bonds improve the structural stability and the reversibility of O redox during charge and discharge processes.Cu substitution also mitigates the structure change with less unit cell volume variation,and improves the Na-ion transport kinetics effectively.As a result,NMFMC delivers much improved cycling stability and rate capability compared with NMFM.It reveals that the charge compensation of NMFMC is mainly contributed by Mn^(3+/4+),Fe^(3+/3.5+)and O_(2-/-)during the charge and discharge processes,and Cu substitution can also enhance the activity and reversibility of Fe redox.This strategy provides a new pathway toward improving the stability and O redox reversibility of P3-type cathode materials for sodium-ion batteries. 展开更多
关键词 Sodium-ion batteries Cathode materials Cu substitution Anionic redox reversibility
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Adsorption of zinc on manganite(γ-MnOOH): particle concentration effect and adsorption reversibility 被引量:7
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作者 QINYan-wen PANGang +1 位作者 ZHANGMing-ming LIXian-liang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2004年第4期627-630,共4页
The adsorption and desorption processes of Zn(Ⅱ) on γ-MnOOH as a function of particle concentrations(C p) were studied. An obvious C p effect was observed in this adsorption system. The degree of adsorption hyster... The adsorption and desorption processes of Zn(Ⅱ) on γ-MnOOH as a function of particle concentrations(C p) were studied. An obvious C p effect was observed in this adsorption system. The degree of adsorption hysteresis increased greatly with the increasing of C p, indicating that the extent of the real metastable-equilibrium states deviating from the ideal equilibrium state was enhanced with the increasing of C p. The C p-reversibility relationship confirmed the metastable-equilibrium adsorption(MEA) inequality(Pan, 1998a), which was the core formulation of the MEA theory. Because the MEA inequality was based on the basic hypothesis of MEA theory that adsorption density Γ is not a state variable, the C p-reversibility relationship gave indirect evidence to the basic hypothesis of MEA theory. 展开更多
关键词 ZINC Γ-MNOOH adsorption reversibility
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Understanding Li roles in chemical reversibility of O2-type Li-rich layered cathode materials 被引量:5
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作者 Jie Feng Yun-Shan Jiang +4 位作者 Fu-Da Yu Wang Ke Lan-Fang Que Jenq-Gong Duh Zhen-Bo Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第3期666-675,I0018,共11页
Traditional O3-type Li-rich layered materials are attractive with ultra-high specific capacities,but suffering from inherent problems of voltage hysteresis and poor cycle performance.As an alternative,O2-type material... Traditional O3-type Li-rich layered materials are attractive with ultra-high specific capacities,but suffering from inherent problems of voltage hysteresis and poor cycle performance.As an alternative,O2-type materials show the potential to improve the oxygen redox reversibility and structural stability.However,their structure-performance relationship is still unclear.Here,we investigate the correlation between the Li component and dynamic chemical reversibility of O2-type Li-rich materials.By exploring the formation mechanism of a series of materials prepared by Na/Li exchange,we reveal that insufficient Li leads to an incomplete replacement,and the residual Na in the Li-layer would hinder the fast diffusion of Li^(+).Moreover,excessive Li induces the extraction of interlayer Li during the melting chemical reaction stage,resulting in a reduction in the valence of Mn,which leads to a severe Jahn-Teller effect.Structural detection confirms that the regulation of Li can improve the cycle stability of Li-rich materials and suppress the trend of voltage fading.The reversible phase evolution observed in in-situ X-ray diffraction confirms the excellent structural stability of the optimized material,which is conducive to capacity retention.This work highlights the significance of modulating dynamic electrochemical performance through the intrinsic structure. 展开更多
关键词 Li-ion batteries Li-rich oxide cathode O2-type Chemical reversibility Electrochemical performance
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Reversibility of diabetes mellitus: Narrative review of the evidence 被引量:3
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作者 Gary Yee Ang 《World Journal of Diabetes》 SCIE CAS 2018年第7期127-131,共5页
The global disease burden of diabetes mellitus is high. It is well-established that prediabetes is reversible but it is unclear whether diabetes is reversible once it has been diagnosed. The objective of this narrativ... The global disease burden of diabetes mellitus is high. It is well-established that prediabetes is reversible but it is unclear whether diabetes is reversible once it has been diagnosed. The objective of this narrative review is to review the evidence of reversibility of diabetes me-llitus and stimulate interest in prolonged remission as a treatment target. The current evidence for bariatric surgery is stronger than intensive medical management and the evidence is stronger for type 2 diabetes pa-tients compared with type 1 diabetes patients. It is also unclear whether non obese diabetes patients would benefit from such interventions and the duration of diabetes before diabetes become irreversible. Further research is needed in this area especially with regards to the subgroup of diabetes patient who will benefit from these interventions and the long term safety and efficacy remains unknown especially with intensive me-dical management. 展开更多
关键词 Diabetes reversibility REMISSION BARIATRIC surgery OBESITY
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Micro-flower-like MoS_(2)-modified Co_(9)S_(8)heterostructure as anode material for sodium-ion batteries with superior reversibility and rate capacity 被引量:1
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作者 Yang He Changlin Liu +6 位作者 Shang Peng Juan Zhang Gang Chen Zhongbao Feng Qiang Zhao Abuliti Abudula Guoqing Guan 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第14期210-220,共11页
Designing and fabricating of heterostructured materials with long-term cycling stability and high-rate capacity for the anode of sodium-ion batteries(SIBs)still remain a great challenge.Herein,micro-flower-like MoS_(2... Designing and fabricating of heterostructured materials with long-term cycling stability and high-rate capacity for the anode of sodium-ion batteries(SIBs)still remain a great challenge.Herein,micro-flower-like MoS_(2)-modified Co_(9)S_(8)(Co_(9)S_(8)/MoS_(2))with a three-dimensional(3D)heterostructure was first obtained via a simple solvothermal synthesis followed by a solid sulfidation treatment process.As a material for the anode of SIBs,the Co_(9)S_(8)/MoS_(2)-based electrode with an initial Co/Mo molar ratio of 1/1(denoted as CM55-S)exhibits the best sodium storage performance with a boosted capacity,superior reversibility(424.5 mAh g^(-1)@2 A g^(-1)at the 1600th cycle,401.1 mAh g^(-1)@5 A g^(-1)at the 800th cycle),and an excellent rate capacity(210.1 mAh g^(-1)@20 A g^(-1)).Density functional theory(DFT)calculations confirm that the Co_(9)S_(8)/MoS_(2)heterostructure has a lower energy barrier(0.30 eV)than the pure Co_(9)S_(8)(0.53 eV).It is expected that such a heterostructured material could be an attractive candidate as the material of the anode for SIBs. 展开更多
关键词 Sodium-ion batteries Anode materials Co_(9)S_(8) MoS_(2) Heterostructure reversibility Rate capacity
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Derivative-extremum analysis of current-potential curves showing electrochemical kinetics in the full reversibility range
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作者 Fengjun Yin Hong Liu 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第1期544-549,共6页
Derivative-extremum analysis(DEA) of j-E curves is a newly proposed method of half wave potential(E1/2) and activation feature extraction from steady-state voltammetry. Here, the DEA is demonstrated to be valid in the... Derivative-extremum analysis(DEA) of j-E curves is a newly proposed method of half wave potential(E1/2) and activation feature extraction from steady-state voltammetry. Here, the DEA is demonstrated to be valid in the full range of reversibility using numerical simulations with a derived universal electrode equation, providing a novel perspective of electrochemical kinetics in the reversibility domain. The results reveal that E1/2is a better choice of the reference potential instead of equilibrium potential(Eeq) in electrode equations, especially since Eeqis meaningless in an irreversible case. The equations referenced with standard potential, E1/2and Eeq, are summarized in three tables, and their applications in parameter determinations are specified. Finally, reversibility is proved to be a relative measure between kinetic slowness and mass transport of electroactive species, and the reversibility classifications are proposed according to the DEA feature in the reversibility domain. This work, based on the DEA principle, refines the electrode equation forms and generalizes their applicability in the full range of reversibility. 展开更多
关键词 reversibility Electrochemical kinetics Half-wave potential Derivative-extremum analysis Parameter determinations
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The Clinical Role of Changes of Maximum Expiratory Flow at 25%and 50%of Vital Capacity before and after Bronchodilator Reversibility Test in Diagnosing Asthma
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作者 Xu-xuc GUO Xiao-fan LIU +7 位作者 Ai-ling WANG Qian-hui CHEN Shuo CHEN Ni-shan DENG Rui-yun LI Xu-hong DING Su ping HU Han-xiang NIE 《Current Medical Science》 SCIE CAS 2020年第4期677-682,共6页
Summary:Changes of maximum expiratory flow at 25%and 50%of vital capacity(MEF2s and MEFso,respectively),and predominant parameters indicating small airways function in asthmatics before and after bronchodilator(BD)rev... Summary:Changes of maximum expiratory flow at 25%and 50%of vital capacity(MEF2s and MEFso,respectively),and predominant parameters indicating small airways function in asthmatics before and after bronchodilator(BD)reversibility test have been less interpreted.Our study aimed to investigate the clinical role of changes of MEF2s and MEFso before and after BD reversibility test in diagnosing asthma.Forced expiratory volume in the first second(FEV),MEF2s,and MEFso were measured before and after BD reversibility test in 207 asthmatic patients using standard process.Forty healthy individuals were enrolled as controls.Receiver operating characteristic(ROC)curve was used to assess the diagnostic accuracy of reversibility of MEF2s and MEFgo before and after BD reversibility test(OMEF 2s%and AMEF so%,respectively)in diagnosing asthma.Among these functional criteria,AMEF2;%and 0MEFs%≥25%performed the best diagnostic performance.The sensitivity,specificity,and accuracy of AMEF 25%≥25%as an objcctive diagnostic test for asthma were 63.29%,87.50%,and 67.21%,and of AMEFs0%≥25%were 79.23%,85.00%,and 80.16%,respectively.The area under the ROC curve of the indicators was 0.8203 and 0.9104,respectively.By contrast,an increase in FEV≥12%and 200 mL demonstrated a sensitivity of 62.32%,specificity of 82.50%,and accuracy of 65.59%in diagnosing asthma.The changes of MEF2s and MEFso before and after BD reversibility test may be of additional value in the clinical diagnosis of asthma,with cutoff values of 25%being the most. 展开更多
关键词 ASTHMA bronchodilator reversibility test maximum expiratory flow at 25%of vital capacity maximum expiratory flow at 50%of vital capacity
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About Appearance of the Irreversibility
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作者 Igor V. Lebed 《Open Journal of Fluid Dynamics》 2014年第3期298-320,共23页
The inevitability of arising in equations of kinetics and hydrodynamics irreversibility not contained in original equations of classic mechanics is substantiated. It is established that transfer of information about t... The inevitability of arising in equations of kinetics and hydrodynamics irreversibility not contained in original equations of classic mechanics is substantiated. It is established that transfer of information about the direction of system evolution from initial conditions to resulting equations is the consequence of losing information about the position of an individual particle in space, which takes place at roughening description. It is shown that the roughening with respect to impact parameters of colliding particles is responsible for appearance of the irreversibility in resulting equations. Direct equations of kinetics and hydrodynamics are the result of roughening distribution functions with respect to impact parameters of particles, which have not yet reached the domain of their interaction. The direct equations are valid for the progressive direction of timing on the time axis pointing from the past to the future. Reverse equations of kinetics and hydrodynamics are the result of roughening distribution functions with respect to impact parameters of particles, which have already left the domain of their interaction. The reverse equations are valid for the progressive direction of timing on the time axis pointing from the future to the past. 展开更多
关键词 IRreversibility Direct EQUATIONS REVERSE EQUATIONS INSTABILITY Multimoment HYDRODYNAMICS
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Reversibility of the structure and dewaterability of anaerobic digested sludge
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作者 Yiqi Sheng Yili Wang +3 位作者 Wei Hu Xu Qian Huaili Zheng Xiaoxiu Lun 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2016年第4期178-186,共9页
The reversibility of the structure and dewaterability of broken anaerobic digested sludge(ADS)is important to ensure the efficiency of sludge treatment or management processes.This study investigated the effect of c... The reversibility of the structure and dewaterability of broken anaerobic digested sludge(ADS)is important to ensure the efficiency of sludge treatment or management processes.This study investigated the effect of continuous strong shear(CSS)and multipulse shear(MPS)on the zeta potential,size(median size,d(50)),mass fractal dimension(DF),and capillary suction time(CST)of ADS aggregates.Moreover,the self-regrowth(SR)of broken ADS aggregates during slow mixing was also analyzed.The results show that raw ADS with d(50) of 56.5μm was insensitive to CSS–SR or MPS–SR,though the size slightly decreased after the breakage phase.For conditioned ADS with d(50) larger than 600μm,the breakage in small-scale surface erosion changed to large-scale fragmentation as the CSS strength increased.In most cases,after CSS or MPS,the broken ADS had a relatively more compact structure than before and d(50) is at least 200μm.The CST of the broken fragments from optimally dosed ADS increased,whereas that corresponding to overdosed ADS decreased.MPS treatment resulted in larger and more compact broken ADS fragments with a lower CST value than CSS.During the subsequent slow mixing,the broken ADS aggregates did not recover their charge,size,and dewaterability to the initial values before breakage.In addition,less than 15%self-regrowth in terms of percentage of the regrowth factor was observed in broken ADS after CSS at average velocity gradient no less than 1905.6 sec^(-1). 展开更多
关键词 Anaerobic digested sludge Shear reversibility Structure Dewaterability Floc strength
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The Theory of Everything as the Reversibility Theory
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作者 Ding-Yu Chung 《Journal of Modern Physics》 2015年第13期1820-1832,共13页
In the posited reversibility theory, 1) all physical laws and phenomena are permanently reversible, 2) all physical laws are derived from the reversible M-theory (extension of string theory) in the reversible multiver... In the posited reversibility theory, 1) all physical laws and phenomena are permanently reversible, 2) all physical laws are derived from the reversible M-theory (extension of string theory) in the reversible multiverse, and 3) temporary irreversible entropy increase is allowed through reversibility breaking, symmetry breaking, and low entropy beginning. Dealing with all physical laws and phenomena, the reversibility theory is the theory of everything, including thermodynamic, cosmology, the composition (baryonic matter, dark matter, and dark energy) in the universe, the periodic table of all elementary particles, the galaxy evolution, superconductivity, and black hole. In the reversible M-theory, space-time dimension number oscillates between 11D (space-time dimension) and 10D and between 10D and 4D. The reversible M-theory includes 11D membrane, 10D string, and variable D particle. Space-time dimension number between 10 and 4 decreases with decreasing speed of light, decreasing vacuum energy, and increasing rest mass. In our dual universe of positive-negative energy universe, the reversible oscillation between 10D with and 4D in the negative energy universe without kinetic energy is the reversible cyclic fractionalization-condensation for the reversible cyclic expansion-contraction of the universe. Without kinetic energy, the individual particles have no individual momenta for entropy increase. The negative energy universe is the locally reversible universe for dark energy. In the positive energy universe where we live, the absorption of the interuniversal void forced the direct transformation from 10D to 4D as the inflation followed by the Big Bang, and created kinetic energy that provided individual momenta for individual particles to produce irreversible entropy increase, resulting in the reversibility breaking of the reversible oscillation. The positive energy universe is the locally irreversible universe. The dual universe as a whole is reversible guided by the reversible negative energy universe. As a result, the irreversible positive energy universe with the irreversible entropy increase is temporary, and will disappear. 展开更多
关键词 The THEORY of Everything reversibility THEORY Entropy Thermodynamic Cyclic Universe MULTIVERSE Interuniversal VOID M-THEORY Cosmology String THEORY
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A thermal actuated switchable dry adhesive with high reversibility for transfer printing 被引量:5
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作者 Shun Zhang Hongyu Luo +4 位作者 Suhao Wang Zhou Chen Shuang Nie Changying Liu Jizhou Song 《International Journal of Extreme Manufacturing》 EI 2021年第3期74-82,共9页
Transfer printing based on switchable adhesive that heterogeneously integrates materials is essential to develop novel electronic systems,such as flexible electronics and micro LED displays.Here,we report a robust des... Transfer printing based on switchable adhesive that heterogeneously integrates materials is essential to develop novel electronic systems,such as flexible electronics and micro LED displays.Here,we report a robust design of a thermal actuated switchable dry adhesive,which features a stiff sphere embedded in a thermally responsive shape memory polymer(SMP)substrate and encapsulated by an elastomeric membrane.This construct bypasses the unfavorable micro-and nano-fabrication processes and yields an adhesion switchability of over1000 by combining the peel-rate dependent effect of the elastomeric membrane and the thermal actuation of the sub-surface embedded stiff sphere.Experimental and numerical studies reveal the underlying thermal actuated mechanism and provide insights into the design and operation of the switchable adhesive.Demonstrations of this concept in stamps for transfer printing of fragile objects,such as silicon wafers,silicon chips,and inorganic micro-LED chips,onto challenging non-adhesive surfaces illustrate its potential in heterogeneous material integration applications,such as flexible electronics manufacturing and deterministic assembly. 展开更多
关键词 switchable adhesive reversible adhesive transfer printing flexible electronics
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Delayed spontaneous reversibility of left bundle branch block in non-ischemic cardiomyopathy: a case report 被引量:2
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作者 Marcus VH Carvalho Priscila C Kroll Vinicius N Carvalho 《Journal of Geriatric Cardiology》 SCIE CAS CSCD 2020年第3期164-168,共5页
Left bundle branch block(LBBB)causes a delay in left ventricular contraction with an unsynchronized ventricular systole.LBBB is an independent determinant of morbi-mortality mainly when associated with cardiomyopathy ... Left bundle branch block(LBBB)causes a delay in left ventricular contraction with an unsynchronized ventricular systole.LBBB is an independent determinant of morbi-mortality mainly when associated with cardiomyopathy and left ventricular dysfunction.[1] LBBB due to non-ischemic cardiomyopathy is considered non-reversible.Such irreversibility occurs because LBBB and cardiomyopathy act in a synergic manner in order to maintain both situations.However,there are a few reports in the literature showing that some patients have had an improvement in cardiac function with normalization of QRS and have experienced a reverse remodelling with pharmacological therapy only.[2–4] 展开更多
关键词 DESYNCHRONIZATION Heart failure Left bundle branch block Reverse remodelling
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Fabrication of Melamine/Tb^3+-Intercalated Polydiacetylene Nanosheets and Their Thermochromic Reversibility 被引量:1
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作者 Qing Wang Gang Wang +1 位作者 Xia-yun Huang Dao-yong Chen 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2020年第3期357-364,I0003,共9页
Polydiacetylene(PDA)is one kind of the conjugated polymer with layered structure,which can serve as a host to accommodate the vip components through intercalation.In these intercalated PDAs,some of them were reporte... Polydiacetylene(PDA)is one kind of the conjugated polymer with layered structure,which can serve as a host to accommodate the vip components through intercalation.In these intercalated PDAs,some of them were reported to have a nearly perfect organized structure and perform completely reversible thermochromism.Till now,these reported intercalated PDAs were made by only introducing a single component for intercalation.Here,we chose 10,12-pentacosadiynoic acid(PCDA)as the monomer,of which the carboxyl-terminal groups can interact with either Tb^3+ ions or melamines(MAs).When the feeding molar ratio of PCDA,MA,and Tb^3+ ion was 3:267:1,only Tb^3+ ions were intercalated though excess MAs existed.Such Tb^3+- intercalated poly-PCDA exhibited completely reversible thermochromism,where almost all the carboxyl groups interacted with Tb^3+ ions to form the nearly perfect structure.When the feeding molar ratio of PCDA,MA,and Tb^3+ ion was 3:267:0.6,both Tb^3+ ions and MAs were intercalated.There existed some defects in the imperfect MA-intercalated domains and at the domain boundaries.The MA/Tb^3+- intercalated poly-PCDA exhibits partially reversible thermochromism,where the backbones near the defects are hard to return the initial conformation,while the rest,those at nearly perfect organized domains,are still able to restore the initial conformation. 展开更多
关键词 POLYDIACETYLENE Intercalation MELAMINE Tb3+ion Reversible thermochromism
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On Reversibility and Reverse Culture Shock in Translation
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作者 江志勇 《海外英语》 2012年第24期56-59,共4页
In this essay, the author is setting up a Chinese perspective on the reversibility of the translated text and how to avoidreverse cultural shock in translation under the context of information age and globalization. T... In this essay, the author is setting up a Chinese perspective on the reversibility of the translated text and how to avoidreverse cultural shock in translation under the context of information age and globalization. This argument also concerns with thetopics of maintain of the ambiguity of the original text and select of the original text. The author also discussed some aspects thatpossibly or potentially affect the reversibility of the translated texts and cause the Reverse Culture Shock. Then the essay offerssome strategies in dealing with such problems in translation. 展开更多
关键词 reversability CULTURE shock REVERSE CULTURAL shoc
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Thermodynamics and Irreversibility: From Some Paradoxes to the Efficiency of Effective Engines
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作者 Olivier Serret 《Journal of Modern Physics》 2014年第16期1575-1593,共19页
The traditional thermodynamic theory explains the reversible phenomena quite well, except that reversible phenomena are rare or even impossible in practice. Here the purpose is to propose an explanation valid for reve... The traditional thermodynamic theory explains the reversible phenomena quite well, except that reversible phenomena are rare or even impossible in practice. Here the purpose is to propose an explanation valid for reversible and also irreversible phenomena, irreversibility being common or realistic. It previously exposed points tricky to grasp, as the sign of the work exchange, the adiabatic expansion in vacuum (free expansion) or the transfer of heat between two bodies at the same temperature (isothermal transfer). After having slightly modified the concepts of heat transfer (each body produces heat according to its own temperature) and work (distinguishing external pressure from internal pressure), the previous points are more easily explained. At last, an engine efficiency in case of irreversible transfer is proposed. This paper is focused on the form of thermodynamics, on “explanations”;it does not question on “results” (except the irreversible free expansion of 1845...) which remain unchanged. 展开更多
关键词 Heat Transfer External and INTERNAL Pressure Work INTERNAL Energy Reversible and IRREVERSIBLE Joule’s Law and Joule’s Experiments ADIABATIC and Free Expansion Clapeyron Diagram Carnot Cycle Engine EFFICIENCY
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Rapid,selectivity,and reversibility absorption of SO_(2) via purine-based deep eutectic solvents and thermodynamic analysis
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作者 Yiru Zou Chao Wang +7 位作者 Haiyan Ji Peiwen Wu Yanhong Chao Xiaoxiao Yu Zhendong Yu Haiyan Liu Zhichang Liu Wenshuai Zhu 《Green Chemical Engineering》 2026年第2期180-190,共11页
Since the advantages of simple preparation,low-priced,environmental friendliness,and high absorption capacity,deep eutectic solvents(DESs)are considered to have eminent application potential in terms of SO_(2) absorpt... Since the advantages of simple preparation,low-priced,environmental friendliness,and high absorption capacity,deep eutectic solvents(DESs)are considered to have eminent application potential in terms of SO_(2) absorption.However,the absorption rate,selectivity,and reversibility of DESs urgently need to be further improved to meet the requirements of industrialization.In this work,five purine-based DESs were designed and synthesized through the use of 1-ethyl-3-methylimidazolium chloride(EmimCl)as hydrogen bond acceptors(HBAs)plus 6-aminopurine(6-AmP),6-hydroxypurine(6-HoP),and 6-chloropurine(6-ChP)as hydrogen bond donors(HBDs),respectively.The results indicated that the optimal molar ratio of HBAs to HBDs is 7:1,and the absorption capacity of EmimCl + 6-AmP-7 can reach up to 18.118 mol/kg,at 298.15 K and 1.0 bar.Notably,the present purine-based DESs not only achieve gas-liquid equilibrium within 40 s,but also exhibit outstanding reversibility(absorb-desorb more than 30 times)and remarkable selectivity of SO_(2)/CO_(2).Furthermore,a reaction equilibrium thermodynamic model(RETM)equation was employed to investigate the absorption behavior by combining the absorption data under different SO_(2) partial pressures and temperatures.Finally,Fourier-transform infrared(FT-IR)spectroscopy and 1H nuclear magnetic resonance(NMR)were conducted to explore further the formation and SO_(2) absorption mechanism of purine-based DESs.It is revealed that the former is mainly hydrogen bonding interaction among HBAs and HBDs,and the latter is mainly Lewis acid-base interaction plus strong charge-transfer interaction among DESs and SO_(2).Based on the obtained data,it could be confirmed that the SO_(2) absorption includes both physical and chemical absorption. 展开更多
关键词 Deep eutectic solvents SO_(2)absorption Purine derivatives Selectivity and reversibility
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Impact of new European Respiratory Society/American Thoracic Society bronchodilator reversibility interpretation on asthma diagnosis in children
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作者 Natalie Blyth Joe Madge +1 位作者 Erol A.Gaillard David K.H.Lo 《Pediatric Investigation》 2025年第3期300-303,共4页
Asthma is the most common chronic condition in children,affecting approximately 10%–15%of children worldwide.1 The disease,characterised physiologically by reversible airflow obstruction,is challenging to diagnose as... Asthma is the most common chronic condition in children,affecting approximately 10%–15%of children worldwide.1 The disease,characterised physiologically by reversible airflow obstruction,is challenging to diagnose as a result of non-specific and variable symptoms1 and poor access to objective lung function tests in most care settings.In children,asthma misdiagnosis has been reported in up to 54%of cases.2 Therefore,every major asthma guideline recommends the use of objective testing to improve the accuracy of diagnosis. 展开更多
关键词 chronic condition reversible airflow obstructionis European Respiratory Society asthma diagnosis bronchodilator reversibility children asthma American Thoracic Society objective lung function tests
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Unraveling enhanced conversion reversibility of regulated Cu_(4)SnS_(4)composites for superior lithium storage
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作者 Yipei Chen Yuchen Wu +8 位作者 Zhefei Sun Guiyang Gao Xinchao Hu Yinggan Zhang Qing Luo Laisen Wang Dong-Liang Peng Ming-Sheng Wang Jie Lin 《Nano Research Energy》 2025年第4期74-84,共11页
High-capacity electrodes based on multiple reaction mechanisms are promising for lithium storage,but the inferior conversion reversibility limits the practical application.Herein,the Cu-Sn-S(CTS)electrodes based on co... High-capacity electrodes based on multiple reaction mechanisms are promising for lithium storage,but the inferior conversion reversibility limits the practical application.Herein,the Cu-Sn-S(CTS)electrodes based on conversion-alloying mechanisms are synthesized with abundant Cu_(4)SnS_(4)(75.98%)and beneficial Cu_(7.2)S_(4)phases.The regulated composition and core-shell nanostructures can effectively mitigate the volume change and improve the lithiation performance of CTS upon cycling.Moreover,the composition evolution of CTS is comprehensively tracked via various in-situ tests,revealing that the abundant Cu_(4)SnS_(4)and the formed Cu_(3)Sn after lithiation are the key factors to induce uniform phase distribution and enhanced conversion reversibility,which is confirmed by theoretical calculations.This work sheds light on the reaction process of electrodes based on multiple lithiation mechanisms,which could inspire the development of analogous energy materials. 展开更多
关键词 copper tin sulfide composite regulation conversion reversibility in-situ characterization lithium-ion battery
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A MOF derived multi-phase FeNi_(3)-S catalyst for efficient hydrogen storage in magnesium hydride
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作者 Linxin Zheng Shuai Li +5 位作者 Liuting Zhang Tao Zhong Xiuzhen Wang Ting Bian Petr Senin Ying Wu 《Chinese Chemical Letters》 2026年第1期626-631,共6页
Magnesium hydride(MgH_(2)) demonstrates immense potential as a solid-state hydrogen storage material,while its commercial utilization is impeded by the elevated operating temperature and sluggish reaction kinetics.Her... Magnesium hydride(MgH_(2)) demonstrates immense potential as a solid-state hydrogen storage material,while its commercial utilization is impeded by the elevated operating temperature and sluggish reaction kinetics.Herein,a MOF derived multi-phase FeNi_(3)-S catalyst was specially designed for efficient hydrogen storage in MgH_(2).Experiments confirmed that the incorporation of FeNi_(3)-S into MgH_(2) significantly lowered the desorption temperature and accelerated the kinetics of hydrogen desorption and reabsorption.The initial dehydrogenation temperature of the MgH_(2)+10 wt% FeNi_(3)-S composite was 202 ℃,which was 123 ℃ lower than that of pure MgH_(2).At 325 ℃,the MgH_(2)+10 wt% FeNi_(3)-S composite released 6.57 wt% H_(2)(fully dehydrogenated) within 1000 s.Remarkably,MgH_(2)+ 10 wt% FeNi_(3)-S composite initiated rehydrogenation at room temperature and rapidly absorbed 2.49 wt% H_(2) within 30 min at 100 ℃.Moreover,6.3 wt% H_(2) was still retained after 20 cycles at 300 ℃,demonstrating the superior cycling performance of the MgH_(2)+10 wt% FeNi_(3)-S composite.The activation energy fitting calculations further evidenced the addition of FeNi_(3)-S enhanced the de/resorption kinetics of MgH_(2)(E_(a)= 98.6 k J/mol and 43.3 k J/mol,respectively).Through phase and microstructural analysis,it was determined that the exceptional hydrogen storage performance of the composite was attributed to the in-situ formation of Mg/Mg_(2)Ni + Fe/MgS and MgH_(2)/Mg_(2)NiH_(4)+Fe/MgS hydrogen storage systems.Further mechanistic analysis revealed that Mg_(2)Ni/Mg_(2)NiH_(4) served as “hydrogen pump” and Fe/Mg S served as “hydrogen diffusion channel”,thus accelerating the dissociation and recombination of hydrogen molecules.In conclusion,this work offers insight into catalysts combining transition metal alloys and transition metal sulfide for exerting muti-phase synergistic effect on boosting the dehydrogenation/hydrogenation reactions of MgH_(2),which can also inspire future pioneering work on designing and fabricating high efficient catalysts in other energy storage related areas. 展开更多
关键词 Hydrogen storage Magnesium hydride Muti-phase catalysis Kinetics reversibility
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