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| 1 | A novel crossentropy and entropy measures of IFSs and their applications显示文摘 | Mao Junjun Yao Dengbao Wang Cuicui | 2013 | Knowledge-Based Systems2013,48,: | 1 |
| 2 | Group Decision Mak- ing Methods Based on Intuitionistic Fuzzy Soft Matrices 显示文摘 | Junjun Mao Dengbao Yao Cuieui Wang | 2013 | Applied Mathematical Modelling2013,37,: | 1 |
| 3 | A Novel Cross - en- tropy and Entropy Measures of IFSs and Their Applications显示文摘 | Junjun Mao Dengbao Yao Cuicui Wang | 2013 | Knowledge - Based Systems2013,48,: | 1 |
| 4 | A Novel Cross Entropy and Entropy Measures of IFSs and Their Applict:ions显示文摘 | Mao Junjun | 2013 | Knowledge-BasedSystems2013,48,: | 1 |
| 5 | Laboratory study on high-temperature adsorption of HCI by dry-injection of Ca(OH)2 in a dual-layer granular bed filter显示文摘 | Junjun TAN Guohua YANG Jingqiao MAO Huichao DAI | 2014 | Frontiers of Environmental Science & Engineering2014,8,6: | 0 |
| 6 | Advances in electrocarboxylation reactions with CO_(2)显示文摘Recently,significant research has been conducted on the conversion of carbon dioxide(CO_(2))into value-added chemicals.With the decreasing cost of clean electricity,electrochemical methods have emerged as potential approaches for converting and fixing CO_(2).Organic electrochemical synthesis is a promising method for utilizing CO_(2)because it transforms CO_(2)into higher-value chemicals.This review introduces the research aspects of CO_(2)conversion and the mechanisms of CO_(2)organic electrocarboxylation reactions.Recent progress in electrocarboxylation with CO_(2)is discussed,considering organic substrates and cathode types under different reaction mechanisms.Finally,the challenges and prospects in this field are highlighted with the aim of further promoting the fundamental understanding of CO_(2)organic electrocarboxylation. | Junjun Mao Yubo Wang Bo Zhang Yang Lou Chengsi Pan Yongf Zhu Ying Zhang | 2024 | Green Carbon2024,2,1: | 0 |
| 7 | Genotypic variance in 13C-photosynthate partitioning and within-plant boll distribution in cotton显示文摘Background:Photosynthate partitioning and within-plant boll distribution play an important role in yield formation of cotton;however,if and how they interact to mediate yield remains unclear.The objective of this study was to investigate the genotypic variance in photosynthate partitioning and within-plant boll distribution,with a focus on their interactions with regard to yield and yield components.A field experiment was conducted in the Yellow River region in China in 2017 and 2018 using a randomized complete block design with three replicates.Photosynthate partitioning of three commercial cultivars(DP 99 B,Lumianyan 21 and Jimian 169),varying in yield potential,to different organs(including bolls)at early flowering,peak flowering,and peak boll-setting stages,as well as withinplant boll distribution at harvest,and their effects on yield formation were examined.Results:Lint yield of Jimian 169 was the highest,followed by Lumianyan 21 and DP 99 B.Similar differences were observed in the number of inner bolls and boll weight among the three cultivars.J169 partitioned significantly more photosynthate to the fruit and fiber than Lumianyan 21 and DP 99 B and allocated over 80%of assimilates to the inner bolls.Additionally,Lumianyan 21 allocated a higher proportion of photosynthate to bolls and fiber,with12.5%–17.6%more assimilates observed in the inner bolls,than DP 99 B.Conclusions:Genotypic variance in lint yield can be attributed to differences in the number of inner bolls and boll weight,which are affected by photosynthate partitioning.Therefore,the partitioning of photosynthate to fiber and inner bolls can be used as an important reference for cotton breeding and cultivation. | NIE Junjun QIN Dulin MAO Lili LIU Yanhui DONG Hezhong SONG Xianliang SUN Xuezhen | 2020 | Journal of Cotton Research2020,3,2: | 0 |
| 8 | Study of Quality Standards of Xiao’er Qingre Enema Preparation in Hospitals显示文摘Objective:To establish the quality standards for the preparation of Xiao’er Qingre enema in hospitals.Method:Thin-layer chromatography(TLC)was used to identify Radix Isatidis and Glycyrrhizae in the prescription.The content of(R,S)-Goitrin was determined by high-performance liquid chromatography(HPLC).Results:In TLC identification,there was no interference between the negative controls of Radix Isatidis and glycyrrhizae,and the spots were well-separated.The HPLC results of(R,S)-Goitrin showed a good linear relationship between the peak area and concentration within the range of 0.476-95.2μg·mL-1(r=0.9999).Conclusion:The TLC and HPLC methods established in this experiment are simple,reproducible,and specific,making them suitable for the quality control Xiao’er Qingre enema preparation in hospitals. | Ruizhong Wang Yurong Zhang Junjun Mao Shaoli Liang Yan Wu Lin Chen | 2024 | Journal of Clinical and Nursing Research2024,8,1: | 0 |
| 9 | Tet酶调控端粒和基因组稳定性的作用和机制显示文摘Tets家族催化5-甲基胞嘧啶转变为5-羟甲基胞嘧啶。在小鼠胚胎干细胞中单独干扰Tet1或/和Tet2,伴随着端粒重组下降,导致端粒长度缩短和基因组稳定性异常。 | Jiao Yang Renpeng Guo Hua Wang Xiaoying Ye Zhongcheng Zhou Jiameng Dan Haiying Wang Peng Gong Wei Deng Yu Yin Shi Qing Mao Lingbo Wang Junjun Ding Jinsong Li David L.Keefe Meelad M.Dawlaty Jianlong Wang Guo Liang Xu 刘林 | 2017 | 科学新闻2017,19,4: | 0 |
| 10 | Modulating microenvironments to enhance CO_(2) electroreduction performance显示文摘Microenvironments of the catalytic center,which play a vital role in adjusting electrocatalytic CO_(2) reduction reaction(ECO_(2) RR)activity,have received increasing attention during the past few years.However,controllable microenvironment construction and the effects of multi-microenvironment variations for improving ECO_(2) RR performance remain unclear.Herein,we summarize the representative strategies for tuning the catalyst and local microenvironments to enhance ECO_(2) RR selectivity and activity.The multifactor synergetic effects of microen-vironment regulation for enhancing CO_(2) accessibility,stabilizing key intermediates,and improving the performance of ECO_(2) RR catalysts are discussed in detail,as well as perspectives on the challenges when investigating ECO_(2) RR microenvironments.We anticipate that the discussions in this review will inspire further research in microenvironment engineering to accelerate the development of the ECO 2 RR for practical application. | Dan Wang Junjun Mao Chenchen Zhang Jiawei Zhang Junshan Li Ying Zhang Yongfa Zhu | 2023 | eScience2023,3,3: | 0 |