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| 1 | Synthesis of methanol and ethanol over CuZnAl slurry catalyst prepared by complete liquid-phase technology显示文摘A new method,named the complete liquid-phase technology,has been applied to prepare catalysts for methanol synthesis.Its main innovative thought lies in preparing slurry catalysts directly from raw solution.Activity tests indicate that the CuZnAl slurry catalyst prepared by the new method can efficiently catalyze conversion of syngas to ethanol in a slurry reactor,while CO conversion reaches 35.9%and ethanol selectivity is more than 20%,with a total alcohol selectivity of more than 87%.No deactivation was found during the 192 h reaction. | Wei HUANG Linmei YU Wenhui LI Zhili MA | 2010 | Frontiers of Chemical Science and Engineering2010,4,4: | 3 |
| 2 | Unusual power-dependent and time-dependent upconversion luminescence in nanoerystals Y2O3 : Ho3+/Yb3+显示文摘 | YANG LINMEI SONG HONGWEI YU LIXIN | 2006 | J Lumin2006,116,: | 1 |
| 3 | Synthesis of methanol and ethanol over Cu-Zn-A1 slurry catalyst pre- pared by complete liquid-phase technology 显示文摘 | Huang Wei Li Wenhui Yu Linmei | 2010 | Frontiers of Chemical Engineering in China2010,4,4: | 1 |
| 4 | Towards an Understanding of the Role of Clay Minerals in'Cde Oil Formation, Migration and Aeoumulation显示文摘 | Linmei Wu Chunhui Zhi John Keeling Dongshen Tong Weihua Yu | 2012 | Earth-Science Reviews2012,115,: | 1 |
| 5 | New insights into developmental biology of Eimeria tenella revealed by comparative analysis of mRNA N6-methyladenosine modification between unsporulated oocysts and sporulated oocysts显示文摘Evidence showed that N6-methyladenosine(m^(6)A)modification plays a pivotal role in influencing RNA fate and is strongly associated with cell growth and developmental processes in many species.However,no information regarding m^(6)A modification in Eimeria tenella is currently available.In the present study,we surveyed the transcriptome-wide prevalence of m^(6)A in sporulated oocysts and unsporulated oocysts of E.tenella.Methylated RNA immunoprecipitation sequencing(MeRIP-seq)analysis showed that m^(6)A modification was most abundant in the coding sequences,followed by stop codon.There were 3,903 hypermethylated and 3,178 hypomethylated mRNAs in sporulated oocysts compared with unsporulated oocysts.Further joint analysis suggested that m^(6)A modification of the majority of genes was positively correlated with mRNA expression.The mRNA relative expression and m^(6)A level of the selected genes were confirmed by quantitative reverse transcription PCR(RT-qPCR)and MeRIP-qPCR.GO and KEGG analysis indicated that differentially m^(6)A methylated genes(DMMGs)with significant differences in mRNA expression were closely related to processes such as regulation of gene expression,epigenetic,microtubule,autophagy-other and TOR signaling.Moreover,a total of 96 DMMGs without significant differences in mRNA expression showed significant differences at protein level.GO and pathway enrichment analysis of the 96 genes showed that RNA methylation may be involved in cell biosynthesis and metabolism of E.tenella.We firstly present a map of RNA m^(6)A modification in E.tenella,which provides significant insights into developmental biology of E.tenella. | Qing Liu Bingjin Mu Yijing Meng Linmei Yu Zirui Wang Tao Jia Wenbin Zheng Wenwei Gao Shichen Xie Xingquan Zhu | 2024 | Journal of Integrative Agriculture2024,23,1: | 0 |
| 6 | Code-based Sequential Aggregate Signature Scheme显示文摘This paper proposes the first code-based quantum immune sequential aggregate signature(SAS)scheme and proves the security of the proposed scheme in the random oracle model.Aggregate signature(AS)schemes and sequential aggregate signature schemes allow a group of potential signers to sign different messages respectively,and all the signatures of those users on those messages can be aggregated into a single signature such that the size of the aggregate signature is much smaller than the total size of all individual signatures.Because of the aggregation of many signatures into a single short signature,AS and SAS schemes can reduce bandwidth and save storage;moreover,when a SAS is verified,not only the valid but also the order in which each signer signed can be verified.AS and SAS schemes can be applied to traffic control,banking transaction and military applications.Most of the existing AS and SAS schemes are based either on pairing or Rivest-Shamir-Adleman(RSA),and hence,can be broken by Shor’s quantum algorithm for Integer Factoring Problem(IFP)and Discrete Logarithm Problem(DLP).There are no quantum algorithms to solve syndrome decoding problems.Hence,code-based cryptography is seen as one of the promising candidates for post-quantum cryptography.This paper shows how to construct quantum immune sequential aggregate signatures based on coding theory.Specifically,we construct our scheme with the first code based signature scheme proposed by Courtois,Finiasz and Sendrier(CFS).Compared to the CFS signature scheme without aggregation,the proposed sequential aggregate signature scheme can save about 90%storage when the number of signers is asymptotically large. | Bennian Dou Lei Xu Xiaoling Yu LinMei Cong Zuo | 2022 | Computers, Materials & Continua2022,,12: | 0 |
| 7 | Monolithic integrated micro-supercapacitors with ultra-high systemic volumetric performance and areal output voltage显示文摘Monolithic integrated micro-supercapacitors(MIMSCs) with high systemic performance and cell-number density are important for miniaturized electronics to empower the Internet of Things.However,fabrication of customizable MIMSCs in an extremely small space remains a huge challenge considering key factors such as materials selection,electrolyte confinement,microfabrication and device-performance uniformity.Here,we develop a universal and large-throughput microfabrication strategy to address all these issues by combining multistep lithographic patterning,spray printing of MXene micro electrodes and controllable 3D printing of gel electrolytes.We achieve the monolithic integration of electrochemically isolated micro-supercapacitors in close proximity by leveraging high-resolution micropatterning techniques for micro electrode deposition and 3D printing for precise electrolyte deposition.Notably,the MIMSCs obtained demonstrate a high areal-number density of 28 cells cm^(-2)(340 cells on 3.5 × 3.5 cm^(2)),a record areal output voltage of 75.6 V cm^(-2),an acceptable systemic volumetric energy density of 9.8 mWh cm^(-3)and an unprecedentedly high capacitance retention of 92% after 4000 cycles at an extremely high output voltage of 162 V.This work paves the way for monolithic integrated and microscopic energy-storage assemblies for powering future microele ctronics. | Sen Wang Linmei Li Shuanghao Zheng Pratteek Das Xiaoyu Shi Jiaxin Ma Yu Liu Yuanyuan Zhu Yao Lu Zhong-Shuai Wu Hui-Ming Cheng | 2023 | National Science Review2023,10,3: | 0 |