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| 1 | Direct intercellular communications dominate the interaction between adipose-derived MSCs and myofibroblasts aqainst cardiac fibrosis显示文摘 | Xiaokang Li Hui Zhao Chunxiao Qi Yang Zeng Feng Xu Yanan Du | 2015 | Protein & Cell2015,6,10: | 9 |
| 2 | Self-Assembled Silane Film and Silver Nanoparticles Coating on Magnesium Alloys for Corrosion Resistance and Antibacterial Applications显示文摘Contamination resulting from microbial adhesion on magnesium alloys is very common in many applications.Self-assembly technology was employed to prepare an antibacterial composite coating by fixing silver nanoparticles(AgNPs)onto the surface of magnesium alloys.The AgNPs were immobilized on the surface of3-aminopropyltrimethoxysilane(APTMS)-modified magnesium alloy AZ31(APTMS/Mg)through electrostatic inter-attraction between partially protonated amino groups and negatively charged citrate-capped AgNPs,resulting in the AgNPs attached APTMS/Mg(AgNPs/APTMS/Mg)substrate.The prepared Ag colloid and functionalized AZ31 alloy were characterized by ultraviolet-visible(UV-vis)spectroscopy,Fourier transform infrared(FTIR)spectroscopy,scanning electron microscopy(SEM),and electrochemical methods.Finally,the bactericidal activity of AgNPs/APTMS/Mg substrate against Escherichia coli was assessed by the inhibition zone.The results demonstrated that Si-O-Si covalent bonds existed on the substrate with the formation of inorganic Si-O-Mg bonds.AgNPs were immobilized and well-dispersed,forming a uniform submonolayer on the silane film in two dimensions.The AgNPs/APTMS-pretreated AZ31 alloys exhibited better corrosion resistance and excellent antibacterial performance. | Rongchang ZENG Lijun LIU Shuoqi LI Yuhong ZOU Fen ZHANG Yanan YANG Hongzhi CUI En-hou HAN | 2013 | Acta Metallurgica Sinica(English Letters)2013,26,6: | 8 |
| 3 | Effect of diosmetin on airway remodeling in a murine model of chronic asthma显示文摘支气管的气喘,最普通的过敏疾病之一,被航线 hyperresponsiveness (AHR ) 描绘,发炎,并且改变。抗氧化剂黄酮 aglycone diosmetin 改善在胰腺炎的发炎,而是很少在气喘上对它的影响被知道。在这研究,长期的气喘上的 diosmetin 的效果在航线在与 ovalbumin (卵) 质问的 BALB/c 老鼠改变的调整上与一个重音被调查。diosmetin 显著地在气喘的老鼠的肺减轻了煽动性的细胞渗入,离脚玻璃杯或瓷杯细胞增生,和骨胶原免职并且显著地在这些动物减少了 AHR,这被发现。全部的房间的导致卵的增加和在 bronchoalveolar lavage 液体的嗜曙红血球计数被颠倒,并且在浆液的卵特定的免疫球蛋白 E 的水平被 diosmetin 管理稀释,暗示 diosmetin 的一项 anti-Th2 活动。而且, diosmetin 显著地压制了光滑的肌肉肌动朊 alpha 链的表示,显示航线上的 diosmetin 的有势力 anti-proliferative 效果光滑的肌肉房间(ASMC ) 。矩阵 metallopeptidase-9,转变生长 factor-1,和脉管的 endothelial 生长因素层次是也由 diosmetin 减轻了,建议航线改变的宽恕可能被归因于这些蛋白质的衰落。一起拿,我们的调查结果向 diosmetin 的新奇侧面提供了改变反的治疗学的好处,在在长期的气喘汇寄 ASMC 增长加亮 diosmetin 的一个新潜力。 | Ai Ge Yanan Liu Xiaoning Zeng Hui Kong Yuan Ma Jiaxiang Zhang Fangfang Bai Mao Huang | 2015 | Acta Biochimica et Biophysica Sinica2015,47,8: | 7 |
| 4 | Nutrients of green and senesced leaves of a Robinia pseudoacacia plantation along a latitudinal gradient on the Loess Plateau,China显示文摘Plantations have been widely established to improve ecosystem services and functioning.Black locust,Robinia pseudoacacia L.is a common,widely planted species to control soil erosion on the Loess Plateau.Previous studies have focused on economic values but the interactions between soil and plant carbon(C),nitrogen(N)and phosphorus(P)remain unknown.Investigating variations of soil,green and senesced leaf C,N and P levels in R.pseudoacacia along a latitudinal gradient is useful to understanding its ecological functions.The results show that soil C,N and senesced leaf N and P significantly decreased with an increase in latitude,but there were no significant changes in the senesced leaf C and soil P.The resorption efficiency of N was related with latitude and soil N levels,and the relation between green leaf N and soil N was significant.These relations suggest that soil N was the key in affecting green leaf N levels.At higher latitudes,senesced leaves had lower N levels associated with higher N resorption efficiency to maintain a stable N content in green leaves.With a decrease of soil N,R.pseudoacacia can enhance N resorption efficiency to meet the demand of growth.Thus,it is an important species for reforestation,especially in nutrient-poor environments. | Quanchao Zeng Yang Liu Jiajia Yang Yanan Chen Lusha Ma Shaoshan An | 2021 | Journal of Forestry Research2021,32,6: | 2 |
| 5 | Histones released by NETosis enhance the infectivity of SARS-CoV-2 by bridging the spike protein subunit 2 and sialic acid on host cells显示文摘Neutrophil extracellular traps(NETs)can capture and kill viruses,such as influenza viruses,human immunodeficiency virus(HIV),and respiratory syncytial virus(RSV),thus contributing to host defense.Contrary to our expectation,we show here that the histones released by NETosis enhance the infectivity of SARS-CoV-2,as found by using live SARS-CoV-2 and two pseudovirus systems as well as a mouse model.The histone H3 or H4 selectively binds to subunit 2 of the spike(S)protein,as shown by a biochemical binding assay,surface plasmon resonance and binding energy calculation as well as the construction of a mutant S protein by replacing four acidic amino acids.Sialic acid on the host cell surface is the key molecule to which histones bridge subunit 2 of the S protein.Moreover,histones enhance cell-cell fusion.Finally,treatment with an inhibitor of NETosis,histone H3 or H4,or sialic acid notably affected the levels of sgRNA copies and the number of apoptotic cells in a mouse model.These findings suggest that SARS-CoV-2 could hijack histones from neutrophil NETosis to promote its host cell attachment and entry process and may be important in exploring pathogenesis and possible strategies to develop new effective therapies for COVID-19. | Weiqi Hong Jingyun Yang Jun Zou Zhenfei Bi Cai He Hong Lei Xuemei He Xue Li Aqu Alu Wenyan Ren Zeng Wang Xiaohua Jiang Kunhong Zhong Guowen Jia Yun Yang Wenhai Yu Qing Huang Mengli Yang Yanan Zhou Yuan Zhao Dexuan Kuang Junbin Wang Haixuan Wang Siyuan Chen Min Luo Ziqi Zhang Tiangi Lu Li Chen Haiying Que Zhiyao He Qiu Sun Wei Wang Guobo Shen Guangwen Lu Zhiwei Zhao Li Yang Jinliang Yang Zhenling Wang Jiong Li Xiangrong Song Lunzhi Dai Chong Chen Jia Geng Maling Gou Lu Chen Haohao Dong Yong Peng Canhua Huang Zhiyong Qian Wei Cheng Changfa Fan Yuquan Wei Zhaoming Su Aiping Tong Shuaiyao Lu Xiaozhong Peng Xiawei Wei | 2022 | Cellular & Molecular Immunology2022,19,5: | 2 |
| 6 | Marine bacteria inhibit corrosion of steel via synergistic biomineralization显示文摘Metal corrosion often results in incalculable economic loss and significant safety hazards. Although numerous traditional methods have been used to mitigate the issue, such as coating and corrosion inhibitors, they are environmentally unfriendly and difficult to maintain. Therefore, in this study, an environmental approach was taken to protect steels from corrosion in a multi-species bacterial environment via synergistic biomineralization. The marine bacterium Pseudoalteromonas lipolytica mixed with Bacillus subtilis or Pseudomonas aeruginosa strains offered extraordinary corrosion protection for steel.The surface characterization and electrochemical tests showed that the biomineralized film generated by the mixed bacteria was more compact and protective than that induced by a single bacterium. Herein,we found that the synergistic mechanisms were rather different for the different bacterial groups. For Pseudoalteromonas lipolytica and Bacillus subtilis group, the related mechanisms were due to the increase of pH in the medium, secretion of carbonic anhydrase. As for Pseudoalteromonas lipolytica and Pseudomonas aeruginosa group, the synergistic mechanism was attributed to the inhibiting corrosive bacteria in biofilm by the growth advantage of Pseudoalteromonas lipolytica. Therefore, this study may introduce a new perspective for future use of biomineralization in a real marine environment. | Na Guo Yanan Wang Xinrui Hui Qianyu Zhao Zhenshun Zeng Shuai Pan Zhangwei Guo Yansheng Yin Tao Liu | 2021 | Journal of Materials Science & Technology2021,,7: | 1 |
| 7 | Comprehensive study of crystalline AlN/sapphire templates after high-temperature annealing with various sputtering conditions显示文摘High-quality AlN/sapphire templates were fabricated by the combination of sputtering and high-temperature(HT)annealing.The influence of sputtering parameters including nitrogen flux,radio frequency power,and substrate temperature on the crystalline quality and surface morphology of annealed AlN films were investigated.With lower substrate temperature,lower power,and lower N2 flux,the full width at half maximum of the X-ray rocking curve for AlN(0002)and(102)were improved to 97.2 and 259.2 arcsec after high-temperature annealing.This happens because the increased vacancy concentration of sputtered AlN films can facilitate the annihilation of dislocations by increasing the recovery rate during HT annealing.Step and step-bunching morphologies were clearly observed with optimized sputtering conditions. | Wen Gu Zhibin Liu Yanan Guo Xiaodong Wang Xiaolong Jia Xingfang Liu Yiping Zeng Junxi Wang Jinmin Li Jianchang Yan | 2020 | Journal of Semiconductors2020,41,12: | 1 |
| 8 | Effect of oxide scale on corrosion behavior of HP-13Cr stainless steel during well completion process显示文摘The well completion process in oil and gas industry,aiming to build effective exploitation,is divided into acidizing and formation water production process.Oxide scale(OS)formed on the inner wall of the HP-13Cr stainless steel tubes during the hot extrusion process changes the surface roughness.The effects of OS on the corrosion of HP-13Cr stainless steel during well completion process were studied by corrosion measurement,spectra analysis,microscopic observation and numerical simulation.The results indicate that the OS make no change of phase distribution and element composition of corrosion scale,while the increasing OS roughness is the dominant factor for accelerating corrosion rate during the well completion process.In acidizing process,the greater surface roughness OS of HP-13Cr stainless steel increases the corrosion rate obviously due to a larger interfacial area in contact with the aggressive environment.During subsequent formation water production process,the turbulence eddy,formed at locations characterized with greater surface roughness OS,can deteriorate the corrosion scale and accelerate the mass transfer of the corrosive species,resulting in more serious corrosion. | Wenlong Qi Jidong Wang Xuanpeng Li Yanan Cui Yang Zhao Junfeng Xie Guanxin Zeng Qiuying Gao Tao Zhang Fuhui Wang | 2021 | Journal of Materials Science & Technology2021,,5: | 1 |
| 9 | State of the art in flexible SERS sensors toward label-free and onsite detection:From design to applications显示文摘Surface-enhanced Raman scattering(SERS)as a powerful non-invasive spectroscopic technique has been intensively used in bio/chemical sensing,enabling ultrasensitive detection of various analytes and high specificity with a fingerprint-like characteristic.Flexible SERS sensors conformally adapting to nonplanar surfaces and allowing swab-sampling or in-situ detection of analytes,which are not achievable for rigid SERS sensors,greatly meet the demand of onsite and real-time diagnostics.However,the rational design and fabrication of flexible SERS-based sensors for point-of-care diagnostics aiming to simultaneously achieve extremely high sensitivity,stability,and good signal reproducibility remain many challenges.We present a state-of-the-art review of the flexible SERS sensors.Attentions are devoted to engineering plasmonic substrates for improving the performance of flexible SERS devices.Strategies of constructing the flexible SERS sensors toward point-of-care detection are investigated in depth.Advanced algorithms assisting the SERS data process are also presented for intelligently distinguishing the species and contents of analytes.The promising applications of flexible SERS sensors in medical diagnostics,environmental analyses,food safety,and forensic science are displayed.The flexible SERS devices serving as powerful analytical tools shed new light on the in-situ and point-of-care detection of real-world analytes in a convenient,facile,and non-destructive manner,and especially are conceivable to serve as next-generation wearable sensors for healthcare. | Liping Xie Hedele Zeng Jiaxin Zhu Zelin Zhang Hong-bin Sun Wen Xia Yanan Du | 2022 | Nano Research2022,15,5: | 1 |
| 10 | Responses of potential ammonia oxidation and ammonia oxidizers community to arsenic stress in seven types of soil显示文摘Soil arsenic contamination is of great concern because of its toxicity to human,crops,and soil microorganisms.However,the impacts of arsenic on soil ammonia oxidizers communities remain unclear.Seven types of soil spiked with 0 or 100 mg arsenic per kg soil were incubated for 180 days and sampled at days 1,15,30,90 and 180.The changes in the community composition and abundance of ammonia oxidizing bacteria(AOB)and ammonia oxidizing archaea(AOA)were analyzed by terminal restriction fragment length polymorphism(TRFLP)analysis,clone library sequencing,and quantitative PCR(qPCR)targeting amoA gene.Results revealed considerable variations in the potential ammonia oxidation(PAO)rates in different soils,but soil PAO was not consistently significantly inhibited by arsenic,probably due to the low bioavailable arsenic contents or the existence of functional redundancy between AOB and AOA.The variations in AOB and AOA communities were closely associated with the changes in arsenic fractionations.The amoA gene abundances of AOA increased after arsenic addition,whereas AOB decreased,which corroborated the notion that AOA and AOB might occupy different niches in arsenic-contaminated soils.Phylogenetic analysis of amoA gene-encoded proteins revealed that all AOB clone sequences belonged to the genus Nitrosospira,among which those belonging to Nitrosospira cluster 3a were dominant.The main AOA sequence detected belonged to Thaumarchaeal Group 1.1b,which was considered to have a high ability to adapt to environmental changes.Our results provide new insights into the impacts of arsenic on the soil nitrogen cycling. | Yanan Wang Xibai Zeng Yang Zhang Nan Zhang Liyang Xu Cuixia Wu | 2023 | Journal of Environmental Sciences2023,,5: | 0 |
| 11 | Sample preparation method to improve the efficiency of high-throughput single-molecule force spectroscopy显示文摘Inefficient sample preparation methods hinder the performance of high-throughput single-molecule force spectroscopy(H-SMFS)for viscous damping among reactants and unstable linkage.Here,we demonstrated a sample preparation method for H-SMFS systems to achieve a higher ratio of effective target molecules per sample cell by gas-phase silanization and reactant hydrophobization.Digital holographic centrifugal force microscopy(DH-CFM)was used to verify its performance.The experimental result indicated that the DNA stretching success ratio was improved from 0.89%to 13.5%.This enhanced efficiency preparation method has potential application for force-based DNA stretching experiments and other modifying procedures. | Lei Jin Li Kou Yanan Zeng Chunguang Hu Xiaodong Hu | 2019 | Biophysics Reports2019,5,4: | 0 |
| 12 | A Two-dimensional Dual-pore Covalent Organic Framework for Efficient Iodine Capture显示文摘Effectively capturing volatile radioiodine generated during the nuclear fission process is considered to be a safe way to the utilization of nuclear power. Here we report a new two-dimensional covalent organic framework(2D COF), ETTA-PyTTA-COF, as a highly efficient iodine adsorbent, which is constructed through the condensation reaction between 4,4’,4’’,4’’’-(ethene-1,1,2,2-tetrayl)-tetrabenzaldehyde(ETTA) and 1,3,6,8-tetrakis(4-aminophenyl)pyrene(PyTTA). The ETTA-PyTTA-COF possesses a permanent 1D channel porous structure with a high Brunauer-Emmet-Teller(BET) surface area of 1519 m2/g and excellent chemical and thermal stability. It shows ultrahigh iodine adsorption capability, which can reach up to 4.6 g/g in vapor owing to its high BET surface area, large π-conjugated structure and plenty of imine groups in the skeleton of the COF as effective iodine sorption sites. | WEN Zhongliang WANG Shenglin FU Siyao QIAN Jiaying YAN Qianqian XU Huanjun ZUO Kaiming SU Xiaofang ZENG Chaoyuan GAO Yanan | 2022 | Chemical Research in Chinese Universities2022,38,2: | 0 |
| 13 | Acid Orange 7 degradation using methane as the sole carbon source and electron donor显示文摘Azo dyes are widely applied in the textile industry but are not entirely consumed during the dyeing process and can thus be discharged to the environment in wastewater.However,azo dyes can be degraded using various electron donors,and in this paper,Acid Orange 7(AO7)degradation performance is investigated using methane(CH4)as the sole electron donor.Methane has multiple sources and is readily available and inexpensive.Experiments using ^(13)C-labeled isotopes showed that AO7 degradation was coupled with anaerobic oxidation of methane(AOM)and,subsequently,affected by the initial concentrations of AO7.Higher concentrations of AO7 could inhibit the activity of microorganisms,which was confirmed by the long-term performance of AO7 degradation,with maximum removal rates of 8.94 mg/(L·d)in a batch reactor and 280 mg/(L·d)in a hollow fiber membrane bioreactor(HfMBR).High-throughput sequencing using 16S rRNA genes showed that Candidatus Methanoperedens,affiliated to ANME-2d,dominated the microbial community in the batch reactor and HfMBR.Additionally,the relative abundance of Proteobacteria bacteria(Phenylobacterium,Pseudomonas,and Geothermobacter)improved after AO7 degradation.This outcome suggested that ANME-2d alone,or acting synergistically with partner bacteria,played a key role in the process of AO7 degradation coupled with AOM. | Yanan Bai Xiuning Wang Fang Zhang Raymond Jianxiong Zeng | 2022 | Frontiers of Environmental Science & Engineering2022,16,3: | 0 |
| 14 | Stability of Fe-As composites formed with As(Ⅴ)and aged ferrihydrite显示文摘During the aging process,ferrihydrite was transformed into mineral mixtures composed of different proportions of ferrihydrite,goethite,lepidocrocite and hematite.Such a transformation may affect the fixed ability of arsenic.In this study,the stability of Fe-As composites formed with As(Ⅴ)and the minerals aged for 0,1,4,10 and 30 days of ferrihydrite were systematically examined,and the effects of molar of ratios Fe/As were also clarified using kinetic methods combined with multiple spectroscopic techniques.The results indicated that As(Ⅴ)was rapidly adsorbed on minerals during the initial polymerization process,which delayed both the ferrihydrite conversion and the hematite formation.When the Fe/As molar ratio was 1.875 and 5.66,the As(Ⅴ)adsorbed by ferrihydrite began to release after 6 hr and 12 hr,respectively.The corresponding release amounts of As(Ⅴ)were 0.55 g/L and 0.07 g/L,and the adsorption rates were 92.43%and 97.50%at 60 days,respectively.However,the As(Ⅴ)adsorbed by the transformation products aged for 30 days of ferrihydrite began to release after adsorbed 30 days.The corresponding release amounts of As(Ⅴ)were 0.25 g/L and 0.03 g/L,and the adsorption rates were 84.23%and 92.18%after adsorbed 60 days,for the Fe/As=1.875 and 5.66,respectively.Overall,the combination of As(Ⅴ)with ferrihydrite and aged products transformed from a thermodynamically metastable phase to a dynamically stable state within a certain duration.Moreover,the aging process of ferrihydrite reduced the sorption ability of arsenate by iron(hydr)oxide but enhanced the stability of the Fe-As composites. | Zhonglan Yang Lingyu Bai Shiming Su Yanan Wang Cuixia Wu Xibai Zeng Benhua Sun | 2021 | Journal of Environmental Sciences2021,33,2: | 0 |
| 15 | Latest progresses and the application of various electrolytes in high-performance solid-state lithium-sulfur batteries显示文摘With the emergence of some solid electrolytes(SSEs)with high ionic conductivity being comparable to liquid electrolytes,solid-state lithium-sulfur batteries(SSLSBs)have been widely regarded as one of the most promising candidates for the next generation of power generation energy storage batteries,and have been extensively researched.Though many fundamental and technological issues still need to be resolved to develop commercially viable technologies,SSLSBs using SSEs are expected to address the present limitations and achieve high energy and power density while improving safety,which is very attractive to large-scale energy storage systems.SSLSBs have been developed for many years.However,there are few systematic discussions related to the working mechanism of action of various electrolytes in SSLSBs and the defects and the corresponding solutions of various electrolytes.To fill this gap,it is very meaningful to review the recent progress of SSEs in SSLSBs.In this review,we comprehensively investigate and summarize the application of SSEs in LSBs to determine the differences which still exist between current progresses and real-world requirements,and comprehensively describe the mechanism of action of SSLSBs,including lithium-ion transport,interfacial contact,and catalytic conversion mechanisms.More importantly,the selection of solid electrolyte materials and the novel design of structures are reviewed and the properties of various SSEs are elucidated.Finally,the prospects and possible future research directions of SSLSBs including designing high electronic/ionic conductivity for cathodes,optimizing electrolytes and developing novel electrolytes with excellent properties,improving electrode/-electrolyte interface stability and enhancing interfacial dynamics between electrolyte and anode,using more advanced test equipment and characterization techniques to analyze conduction mechanism of Li^(+)in SSEs are presented.It is hoped that this review can arouse people’s attention and enlighten the development of functional materials and novel structures of SSEs in the next step. | Yanan Li Nanping Deng Hao Wang Qiang Zeng Shengbin Luo Yongbing Jin Quanxiang Li Weimin Kang Bowen Cheng | 2023 | Journal of Energy Chemistry2023,,7: | 0 |
| 16 | A Class of Association Schemes and Their Automorphisms显示文摘In this paper,we construct a class of association schemes by using pairs of subspaces of vector spaces and determine their full automorphism groups. | Changli Ma Shuxia Liu Yanan Feng Yang Zhang Liwei Zeng | 2022 | Algebra Colloquium2022,29,3: | 0 |
| 17 | 离子径迹对二位材料和器件的影响研究显示文摘The radiation effects in device induced by energetic heavy ions can lead to degradation or failure and have become a major threat to safe operation of spacecraft.Two-dimensional functional materials have unique structures and physical properties.They are expected to be the main materials of a new generation electronic devices.However,when the thicknesses of the materials are reduced to nanometers,its performance influenced by lattice defects will become more serious.Therefore,it is critical to study defects formation and its influences on the properties of two-dimensional functional materials. | Liu Jie Zhang Shengxia Hu Peipei Yin Yanan Liu Tianqi Luo Jie Zhai Pengfei Zeng Jian Duan Jinglai Yao Huijun Sun Youmei | 2018 | IMP & HIRFL Annual Report2018,,1: | 0 |
| 18 | Engineering the high-entropy phase of Pt-Au-Cu nanowire for electrocatalytic hydrogen evolution显示文摘Hydrogen economy,as the most promising alternative energy system,relies on the hydrogen production through sustainable water splitting which in turn relies on the high efficiency electrocatalysts.PtAuCu A1-phase alloy has been predicted to be a promising electrocatalyst for the hydrogen evolution.As such preferred phase of Pt-Au-Cu is not thermodynamically favored,herein,we stabilize PtAuCu alloy by engineering the high-entropy phase in the form of nanowire.Density functional theory(DFT)calculations indicate that,in comparison with the ordered phase and segregated phases with discrete hydrogen binding energy,the high-entropy phase provides a diverse combination of site composition to continuously tune the hydrogen binding energy,and thus generate a series of highly active sites for the hydrogen evolution.Reflecting the theoretical prediction,electrochemical tests show that the A1-phase PtAuCu nanowire significantly outperforms its nanoparticle counterpart with phase segregation,toward the electrocatalysis of hydrogen evolution,offering one of the best hydrogen evolution electrocatalysts. | Yanan Yu Guangdong Liu Shuaihu Jiang Ruya Zhang Huiqiu Deng Eric AStach Shujuan Bao Zhenhua Zeng Yijin Kang | 2023 | Nano Research2023,16,8: | 0 |
| 19 | Boosting cycling stability by regulating surface oxygen vacancies of LNMO by rapid calcination显示文摘Spinel LiNi_(0.5-x)Mn_(1.5+x)O_(4)(LNMO)has attracted intensive interest for lithium-ion battery due to its high voltage and high energy density.However,severe capacity fade attributed to unstable surface structure has hampered its commercialization.Oxygen vacancies(OVs)tend to occur in the surface of the material and lead to surface structure reconstruction,which deteriorates the battery performance during electrochemical cycling.Here,we utilize high-temperature-shock(HTS)method to synthesize LNMO materials with fewer surface OVs.Rapid calcination drives lower surface OVs concentration,reducing the content of Mn^(3+)and surface reconstruction layers,which is beneficial to obtain a stable crystal structure.The LNMO material synthesized by HTS method delivers an initial capacity of 127 mAh·g^(-1) at 0.1 C and capacity retention of 81.6%after 300 cycles at 1 C,and exhibits excellent performance at low temperature. | Haoran Jiang Cuihua Zeng Wei Zhu Jiawei Luo Zhedong Liu Jingchao Zhang Rui Liu Yunhua Xu Yanan Chen Wenbin Hu | 2024 | Nano Research2024,17,4: | 0 |
| 20 | Chromatin architectural alterations due to null mutation of a major CG methylase in rice显示文摘Associations between 3D chromatin architectures and epigenetic modifications have been characterized in animals.However,any impact of DNA methylation on chromatin architecture in plants is understudied,which is confined to Arabidopsis thaliana.Because plant species differ in genome size,composition,and overall chromatin packing,it is unclear to what extent findings from A.thaliana hold in other species.Moreover,the incomplete chromatin architectural profiles and the low-resolution high-throughput chromosome conformation capture(Hi-C)data from A.thaliana have hampered characterizing its subtle chromatin structures and their associations with DNA methylation.We constructed a high-resolution Hi-C interaction map for the null OsMET1-2(the major CG methyltransferase in rice)mutant(osmet1-2)and isogenic wild-type rice(WT).Chromatin structural changes occurred in osmetl-2,including intra-/inter-chromosomal interactions,compartment transition,and topologically associated domains(TAD)variations.Our findings provide novel insights into the potential function of DNA methylation in TAD formation in rice and confirmed DNA methylation plays similar essential roles in chromatin packing in A,thaliana and rice. | Jinbin Wang Xiaochong Li Qianli Dong Changping Li Juzuo Li Ning Li Baoxu Ding Xiaofei Wang Yanan Yu Tianya Wang Zhibin Zhang Yiyang Yu Man Lang Zixian Zeng Bao Liu Lei Gong | 2022 | Journal of Integrative Plant Biology2022,64,12: | 0 |