Under neat conditions,an efficient method for synthesis of imidoesters has been developed using cyanatobenzenes and dicarbonyl compounds.Nucleophilic addition spontaneously occurred between the two kinds of materials ...Under neat conditions,an efficient method for synthesis of imidoesters has been developed using cyanatobenzenes and dicarbonyl compounds.Nucleophilic addition spontaneously occurred between the two kinds of materials at room temperature with yields of up to 90%.A mechanism directed towards to the imidoester formation has been proposed.展开更多
Due to their high mechanical compliance and excellent biocompatibility,conductive hydrogels exhibit significant potential for applications in flexible electronics.However,as the demand for high sensitivity,superior me...Due to their high mechanical compliance and excellent biocompatibility,conductive hydrogels exhibit significant potential for applications in flexible electronics.However,as the demand for high sensitivity,superior mechanical properties,and strong adhesion performance continues to grow,many conventional fabrication methods remain complex and costly.Herein,we propose a simple and efficient strategy to construct an entangled network hydrogel through a liquid-metal-induced cross-linking reaction,hydrogel demonstrates outstanding properties,including exceptional stretchability(1643%),high tensile strength(366.54 kPa),toughness(350.2 kJ m^(−3)),and relatively low mechanical hysteresis.The hydrogel exhibits long-term stable reusable adhesion(104 kPa),enabling conformal and stable adhesion to human skin.This capability allows it to effectively capture high-quality epidermal electrophysiological signals with high signal-to-noise ratio(25.2 dB)and low impedance(310 ohms).Furthermore,by integrating advanced machine learning algorithms,achieving an attention classification accuracy of 91.38%,which will significantly impact fields like education,healthcare,and artificial intelligence.展开更多
The giant Jiama deposit is a post-collisional porphyry Cu-polymetallic system located in the Gangdese metallogenic belt of Xizang.It consists of three deposits:The Main deposit,the Zegulangbei deposit,and the South Pi...The giant Jiama deposit is a post-collisional porphyry Cu-polymetallic system located in the Gangdese metallogenic belt of Xizang.It consists of three deposits:The Main deposit,the Zegulangbei deposit,and the South Pit deposit according to exploration and research.The South Pit deposit is a high-grade Cu-Pb-Zn deposit,but its genesis is unclear.To investigate its genesis,a detailed study was conducted on the deposit geology,geochronology and amphibole geochemistry.The results indicate that the weighted average 206Pb/238U age of the zircons from the granite porphyry in the South Pit is 15.38±0.45 Ma,and the molybdenite from the mineralized skarn yield a ReOs isochron age of 15.23±0.22 Ma,in line with the age of the Main deposit(15.7-14.3 Ma).The amphiboles in the granite porphyry of the South Pit,magnesiohornblende and actinolite,are high in Mg and Ca and low in K.They crystallized at temperatures of 705-7490C,pressures of 0.44-0.67 kbar,oxygen fugacity of-14.31--13.69(NNO),and depths of 1.7-2.5 km.Mapping of structure and alteration indicates that the South Pit skarn developed due to the metasomatism of marble of hornfels or carbonate in fold hinge dilation and an interlayer detachment zone by magmatic hydrothermal fluids.According to the age of magmatism and geological features,the South Pit deposit and the Main deposit have originated from the same Miocene magmatism,but the South Pit deposit was affected by the gliding nappe tectonic system.The amphibole geochemistry indicates that the ore-related magma of the South Pit has a high oxygen fugacity and is rich in water.展开更多
Atomically precise copper-based nanoclusters stand out as one of the highly promising catalysts in the realm of electrochemical nitrate reduction reaction(NITRR)aimed at ammonia(NH_(3))synthesis.However,the controllab...Atomically precise copper-based nanoclusters stand out as one of the highly promising catalysts in the realm of electrochemical nitrate reduction reaction(NITRR)aimed at ammonia(NH_(3))synthesis.However,the controllable synthesis of stable Cu-based nanoclusters featuring fully inorganic anionic ligands for electrochemical NITRR remains a challenge.Herein,we present a simple and gentle chelated co-precipitation method for the uniform growth of ultrafine amorphous Cu(OH)Cl(a-Cu(OH)Cl)nanoclusters,featuring a diameter of approximately 9 nm,onto carbon nanotubes(a-Cu(OH)Cl/CNTs),aimed at enhancing electrocatalytic NITRR performance.Intriguingly,trisodium citrate dihydrate(TCD)could effectively change the crystalline form of Cu-based nanoclusters to obtain a-Cu(OH)Cl nanoclusters instead of high-crystallinity Cu_(2)(OH)_(3)Cl(c-Cu_(2)(OH)_(3)Cl)nanoclusters.In comparison to c-Cu_(2)(OH)_(3)Cl nanoclusters,a-Cu(OH)Cl nanoclusters,featuring a smaller particle size and containing more lowcoordination Cu atoms,provide more efficient catalytic sites,thereby enhancing the reaction rate and energy efficiency for NH_(3)production.The proposed chelated co-precipitation method provides a promising crystalline modulation engineering strategy to boost the electrocatalytic performances of metal nanoclusters.展开更多
Enhancing the fermentation efficiency of waste in waste warehouses is pivotal for accelerating the pyrolysis process and minimizing harmful gas emissions.This study proposes an integrated approach,combining hot air in...Enhancing the fermentation efficiency of waste in waste warehouses is pivotal for accelerating the pyrolysis process and minimizing harmful gas emissions.This study proposes an integrated approach,combining hot air injection with dual atomizing nozzles,for the thermal treatment of waste piles.Numerical simulations are employed to investigate the influence of various parameters,namely,nozzle height,nozzle tilt angle,inlet air velocity and air temperature,on the droplet diffusion process,spread area,droplet temperature,and droplet size distribution.The results show that reducing the nozzle height increases the temperature of droplets upon their deposition on the waste pile.Specifically,when the nozzle height is lowered to 1.5 m,the temperature of the droplets reaching the waste pile is 1℃higher than when the nozzle height is set at 2 m.Furthermore,an increase in the nozzle tilt angle expands the overlapping heating area.For instance,when the nozzle angle is increased from 15°to 30°,the overlapping spread area expands by 3.21 m2.Additionally,increasing the inlet air velocity enhances the droplet diffusion range.At an air velocity of 2 m/s,the droplet diffusion range grows to 14.4 m,representing a 6.7%increase compared to the nowind condition.While the average droplet diameter decreases to 1.53 mm,the droplet temperature decreases by 1℃.Moreover,the droplet temperature is found to become smaller as the ambient temperature inside the waste warehouse declines.Specifically,a 5℃reduction in the ambient temperature results in a 1℃decrease in the average temperature of the atomized droplets.The study concludes that a nozzle height of 1.5 m and a nozzle tilt angle of 30°effectively meet practical heating requirements.展开更多
Background Thermogenic adipose tissue,both beige and brown,experiences whitening as animals are exposed to warmth and age,but the potential mechanisms are not fully understood.In this study,we employed singlenucleus R...Background Thermogenic adipose tissue,both beige and brown,experiences whitening as animals are exposed to warmth and age,but the potential mechanisms are not fully understood.In this study,we employed singlenucleus RNA-seq to construct a cell atlas during whitening progression and identified the characteristics of thermogenic adipocytes.Results Our histological studies and bulk transcriptome gene expression analysis confirmed that both perirenal and omental adipose tissues(pAT and oAT)exhibited progressive whitening in goats.Compared to the classic brown adipocytes in mice,goat thermogenic adipocytes were more closely related in gene expression patterns to human beige adipocytes,which was also confirmed by adipocyte type-and lineage-specific marker expression analysis.Furthermore,trajectory analysis revealed beige-and white-like adipocytes deriving from a common origin,coexisting and undergoing the transdifferentiation.In addition,differences in gene expression profiles and cell communication patterns(e.g.,FGF and CALCR signaling)between oAT and pAT suggested a lower thermogenic capacity of oAT than that of pAT.Conclusions We constructed a cell atlas of goat pAT and oAT and descripted the characteristics of thermogenic adipocytes during whitening progression.Altogether,our results make a significant contribution to the molecular and cellular mechanisms behind the whitening of thermogenic adipocytes,and providing new insights into obesity prevention in humans and cold adaptation in animals.展开更多
In this paper we report the preparation of nano-dendritic Cu_(2)O/Cu heterojunctions doped with varying concentrations of cobalt through a convenient,energy-consumption-free,and environmentally friendly chemical repla...In this paper we report the preparation of nano-dendritic Cu_(2)O/Cu heterojunctions doped with varying concentrations of cobalt through a convenient,energy-consumption-free,and environmentally friendly chemical replacement method.The analysis results reveal that the incorporation of cobalt in its atomic form enhances the adsorption of nitrate species onto the catalyst surface,whereas doping with metallic cobalt promotes the production of active hydrogen(*H).By adjusting the doping concentration of cobalt,we effectively control its doping form(atomic and metallic states)on the surface of dendritic copper,thereby enabling controllable modulation of the active hydrogen concentration on the catalyst surface.By ensuring sufficient consumption of*H during the NITRR process while avoiding excessively high concentrations that could trigger detrimental hydrogen evolution reaction side reactions,this approach remarkably enhances the selectivity of ammonia synthesis in NITRR.This study offers an effective approach to regulate the*H concentration on the surface of the catalyst through adjusting the metal doping form,thereby improving the performance of ammonia synthesis from NITRR.展开更多
基金the National Natural Science Foundation of China (Nos.21372265 and 61271059)the Scientific Research Foundation for the Returned Overseas Chinese Scholars,State Education Ministry,the Natural Science Foundation Project of CQ CSTC (Nos.CSTC2013jcyjA0217 and CSTC2010BB4086)the Fundamental Research Funds for the Central Universities(Nos.CQDXWL2013-Z012 and CDJZR-14225502)
文摘Under neat conditions,an efficient method for synthesis of imidoesters has been developed using cyanatobenzenes and dicarbonyl compounds.Nucleophilic addition spontaneously occurred between the two kinds of materials at room temperature with yields of up to 90%.A mechanism directed towards to the imidoester formation has been proposed.
基金supported by the National Key Research&Development Program of China(grant no.2022YFC3500503)the National Natural Science Foundation of China(grant nos.62227807,12374171,12004034,62402041)+2 种基金the Beijing Institute of Technology Research Fund Program for Young Scholars,Chinathe Fundamental Research Funds for the Central Universities(grant nos.2024CX06060)Beijing Youth Talent Lifting Project.
文摘Due to their high mechanical compliance and excellent biocompatibility,conductive hydrogels exhibit significant potential for applications in flexible electronics.However,as the demand for high sensitivity,superior mechanical properties,and strong adhesion performance continues to grow,many conventional fabrication methods remain complex and costly.Herein,we propose a simple and efficient strategy to construct an entangled network hydrogel through a liquid-metal-induced cross-linking reaction,hydrogel demonstrates outstanding properties,including exceptional stretchability(1643%),high tensile strength(366.54 kPa),toughness(350.2 kJ m^(−3)),and relatively low mechanical hysteresis.The hydrogel exhibits long-term stable reusable adhesion(104 kPa),enabling conformal and stable adhesion to human skin.This capability allows it to effectively capture high-quality epidermal electrophysiological signals with high signal-to-noise ratio(25.2 dB)and low impedance(310 ohms).Furthermore,by integrating advanced machine learning algorithms,achieving an attention classification accuracy of 91.38%,which will significantly impact fields like education,healthcare,and artificial intelligence.
基金supported by the National Key Research and Development Program of China(No.2022YFC2905004)Open Fund from Sino Probe Laboratory(No.SL202405)+4 种基金the Basic Research Fund of Institute of mineral Resource,Chinese Academy of Geological Sciences(No.JKYZD202316)the National Natural Science Foundation of China(Nos.42272093,42230813)China Scholarship Council Project,and the Geological Survey Project(No.DD20230054)Science and Technology Support Project in a new round of prospecting breakthrough strategic action(No.ZKKJ202429)the Central Government Guided Local Scientific and Technological Development Funding Project(No.XZ202401YD0006)。
文摘The giant Jiama deposit is a post-collisional porphyry Cu-polymetallic system located in the Gangdese metallogenic belt of Xizang.It consists of three deposits:The Main deposit,the Zegulangbei deposit,and the South Pit deposit according to exploration and research.The South Pit deposit is a high-grade Cu-Pb-Zn deposit,but its genesis is unclear.To investigate its genesis,a detailed study was conducted on the deposit geology,geochronology and amphibole geochemistry.The results indicate that the weighted average 206Pb/238U age of the zircons from the granite porphyry in the South Pit is 15.38±0.45 Ma,and the molybdenite from the mineralized skarn yield a ReOs isochron age of 15.23±0.22 Ma,in line with the age of the Main deposit(15.7-14.3 Ma).The amphiboles in the granite porphyry of the South Pit,magnesiohornblende and actinolite,are high in Mg and Ca and low in K.They crystallized at temperatures of 705-7490C,pressures of 0.44-0.67 kbar,oxygen fugacity of-14.31--13.69(NNO),and depths of 1.7-2.5 km.Mapping of structure and alteration indicates that the South Pit skarn developed due to the metasomatism of marble of hornfels or carbonate in fold hinge dilation and an interlayer detachment zone by magmatic hydrothermal fluids.According to the age of magmatism and geological features,the South Pit deposit and the Main deposit have originated from the same Miocene magmatism,but the South Pit deposit was affected by the gliding nappe tectonic system.The amphibole geochemistry indicates that the ore-related magma of the South Pit has a high oxygen fugacity and is rich in water.
基金the financial support from the National Natural Science Foundation of China(22479074 and 22475096)the Natural Science Foundation of Sichuan Province(2023NSFSC1074 and 2025NSFTD0005)+9 种基金the Talent Introduction Plan of Xihua University(Z222051)the Equipment Pre-Research and MOE Joint Fund General Project(8091B02052407)the National Science Foundation of Jiangsu Province(BK20240400 and BK20241236)the Jiangsu Province Science and Technology Major Project(BG2024013)the Jiangsu Province Scientiflc and Technological Achievenments Transformation Special Fund(BA2023037)the Jiangsu Province Academic Degree and Postgraduate Education Reform Project(JGKT24_C001)the Suzhou City Key Core Technology Open Competition Project(SYG2024122)the Open Research Fund of Suzhou Laboratory(SZLAB-1308-2024TS005)the Suzhou City Gusu Leading Talent Program of Scientific and Technological Innovation and Entrepreneurship(ZXL2021273)the Chenzhou National Sustainable Development Agenda Innovation Demonstration Zone Provincial Special Project(2023sfq11)。
文摘Atomically precise copper-based nanoclusters stand out as one of the highly promising catalysts in the realm of electrochemical nitrate reduction reaction(NITRR)aimed at ammonia(NH_(3))synthesis.However,the controllable synthesis of stable Cu-based nanoclusters featuring fully inorganic anionic ligands for electrochemical NITRR remains a challenge.Herein,we present a simple and gentle chelated co-precipitation method for the uniform growth of ultrafine amorphous Cu(OH)Cl(a-Cu(OH)Cl)nanoclusters,featuring a diameter of approximately 9 nm,onto carbon nanotubes(a-Cu(OH)Cl/CNTs),aimed at enhancing electrocatalytic NITRR performance.Intriguingly,trisodium citrate dihydrate(TCD)could effectively change the crystalline form of Cu-based nanoclusters to obtain a-Cu(OH)Cl nanoclusters instead of high-crystallinity Cu_(2)(OH)_(3)Cl(c-Cu_(2)(OH)_(3)Cl)nanoclusters.In comparison to c-Cu_(2)(OH)_(3)Cl nanoclusters,a-Cu(OH)Cl nanoclusters,featuring a smaller particle size and containing more lowcoordination Cu atoms,provide more efficient catalytic sites,thereby enhancing the reaction rate and energy efficiency for NH_(3)production.The proposed chelated co-precipitation method provides a promising crystalline modulation engineering strategy to boost the electrocatalytic performances of metal nanoclusters.
文摘Enhancing the fermentation efficiency of waste in waste warehouses is pivotal for accelerating the pyrolysis process and minimizing harmful gas emissions.This study proposes an integrated approach,combining hot air injection with dual atomizing nozzles,for the thermal treatment of waste piles.Numerical simulations are employed to investigate the influence of various parameters,namely,nozzle height,nozzle tilt angle,inlet air velocity and air temperature,on the droplet diffusion process,spread area,droplet temperature,and droplet size distribution.The results show that reducing the nozzle height increases the temperature of droplets upon their deposition on the waste pile.Specifically,when the nozzle height is lowered to 1.5 m,the temperature of the droplets reaching the waste pile is 1℃higher than when the nozzle height is set at 2 m.Furthermore,an increase in the nozzle tilt angle expands the overlapping heating area.For instance,when the nozzle angle is increased from 15°to 30°,the overlapping spread area expands by 3.21 m2.Additionally,increasing the inlet air velocity enhances the droplet diffusion range.At an air velocity of 2 m/s,the droplet diffusion range grows to 14.4 m,representing a 6.7%increase compared to the nowind condition.While the average droplet diameter decreases to 1.53 mm,the droplet temperature decreases by 1℃.Moreover,the droplet temperature is found to become smaller as the ambient temperature inside the waste warehouse declines.Specifically,a 5℃reduction in the ambient temperature results in a 1℃decrease in the average temperature of the atomized droplets.The study concludes that a nozzle height of 1.5 m and a nozzle tilt angle of 30°effectively meet practical heating requirements.
基金supported by the National Key Research and Development Programme of China(grant number 2021YFF1001000)the National Natural Science Foundation of China(grant number 32170627)+1 种基金the Postdoctoral Innovative Talents Support Program of China(grant number BX20200282)the Natural Science Foundation of Sichuan Province(grant number 23NSFSC1804).
文摘Background Thermogenic adipose tissue,both beige and brown,experiences whitening as animals are exposed to warmth and age,but the potential mechanisms are not fully understood.In this study,we employed singlenucleus RNA-seq to construct a cell atlas during whitening progression and identified the characteristics of thermogenic adipocytes.Results Our histological studies and bulk transcriptome gene expression analysis confirmed that both perirenal and omental adipose tissues(pAT and oAT)exhibited progressive whitening in goats.Compared to the classic brown adipocytes in mice,goat thermogenic adipocytes were more closely related in gene expression patterns to human beige adipocytes,which was also confirmed by adipocyte type-and lineage-specific marker expression analysis.Furthermore,trajectory analysis revealed beige-and white-like adipocytes deriving from a common origin,coexisting and undergoing the transdifferentiation.In addition,differences in gene expression profiles and cell communication patterns(e.g.,FGF and CALCR signaling)between oAT and pAT suggested a lower thermogenic capacity of oAT than that of pAT.Conclusions We constructed a cell atlas of goat pAT and oAT and descripted the characteristics of thermogenic adipocytes during whitening progression.Altogether,our results make a significant contribution to the molecular and cellular mechanisms behind the whitening of thermogenic adipocytes,and providing new insights into obesity prevention in humans and cold adaptation in animals.
文摘In this paper we report the preparation of nano-dendritic Cu_(2)O/Cu heterojunctions doped with varying concentrations of cobalt through a convenient,energy-consumption-free,and environmentally friendly chemical replacement method.The analysis results reveal that the incorporation of cobalt in its atomic form enhances the adsorption of nitrate species onto the catalyst surface,whereas doping with metallic cobalt promotes the production of active hydrogen(*H).By adjusting the doping concentration of cobalt,we effectively control its doping form(atomic and metallic states)on the surface of dendritic copper,thereby enabling controllable modulation of the active hydrogen concentration on the catalyst surface.By ensuring sufficient consumption of*H during the NITRR process while avoiding excessively high concentrations that could trigger detrimental hydrogen evolution reaction side reactions,this approach remarkably enhances the selectivity of ammonia synthesis in NITRR.This study offers an effective approach to regulate the*H concentration on the surface of the catalyst through adjusting the metal doping form,thereby improving the performance of ammonia synthesis from NITRR.