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| 1 | Synthesis of PANI/AgC1, PANI/BaSO4 and PANI/TiO2 nanocompos- ires in CTAB/hexanol/water reverse micelle 显示文摘 | Sui Xiaomeng Chu Ying Xing Shuangxi | 2004 | Materials Letters2004,58,: | 1 |
| 2 | Self- organization of Spherical PANI/TiO2 Nanocomposites in Reverse Micelles显示文摘 | Sui Xiaomeng Chu Ying Xing Shuangxi | 2004 | Colloids and Surface A: Physicochemical and Engineering Aspects2004,251,13: | 1 |
| 3 | Synthesis of PANI/AgCl, PANI/BaSO4 and PANI/TiO2 Nanocomposites in CTAB/Hexanol/Water Reverse Micelle 显示文摘 | Sui Xiaomeng Chu Ying Xing Shuangxi | 2004 | Materials Letters2004,58,78: | 1 |
| 4 | Synthesis of PANI/AgCl, PANI/BaSO4, PANI/TiO2 nanocomposites in CTAB/hexanol/water reverse micelle 显示文摘 | Xiaomeng Sui Ying Chu Shuangxi Xing | 2004 | Materials Letters2004,58,: | 1 |
| 5 | Synthesis and characterization of polyaniline in CTAB/hexanol/water reversed micelle显示文摘 | Shuangxi Xing Ying Chu Xiaomeng Sui Zisheng Wu | 2005 | Journal of Materials Science2005,,1: | 1 |
| 6 | Selforganization of spherical PANI/TiO2 nanocomposites in reverse micelles 显示文摘 | Sui Xiaomeng Chu Ying Liu Chengzhan | 2004 | Colloids and Surfaces A:Physicochem Eng Aspects2004,251,10: | 1 |
| 7 | Synthesis of PANI/AgCl,PANI/BaSO4 and PANI/TiO2 nanocompo- sites in CTAB/hexanol/water reverse micelle显示文摘 | Sui Xiaomeng Chu Ying Liu Chengzhan | 2004 | Materials Letters2004,58,78: | 1 |
| 8 | SlMYB1 regulates the accumulation of lycopene, fruit shape, and resistance to Botrytis cinerea in tomato显示文摘Fruit lycopene,shape,and resistance are essential traits in vegetables whose final product is fruit,and they are also closely related to and strictly regulated by multiple transcription factors.Lycopene,which cannot be synthesized by the human body and can only be ingested from the outside,was important in maintaining human health.During fruit ripening and post-harvest,tomato plants face a variety of biotic or abiotic stresses,which might inf lict great damage to fruit quality due to its f lat shape and pointed tip during storage and transportation.Therefore,there is an urgent need for key molecular switches to simultaneously improve fruit lycopene and resistance to biotic stress during ripening.Here,we identified the MYB transcription factor SlMYB1 in tomato plants which could bind to the promoters of lycopene synthesis-related genes,SlLCY1,SlPSY2,and the pathogen-related gene SlPR5 directly,to regulate the fruit lycopene and resistance to Botrytis cinerea in tomato.In addition to regulating lycopene synthesis,SlMYB1 also regulates the content of soluble sugar,soluble protein and f lavonoid in tomato.What’s more,SlMYB1 could regulate the tomato fruit shape,making it smoother or f latter to prevent skin damage caused by vibration on fruits.RNA sequencing(RNA-seq)further showed that SlMYB1 fruit-specific expression lines had multiple differentially expressed genes compared with those from wild-type plants,suggesting that SlMYB1 might have multiple roles in fruit nutritional quality control and resistance to stresses,which is a rare occurrence in previous studies.In summary,our results revealed that SlMYB1 was an essential multi-functional transcription factor that could regulate the lycopene and resistance to Botrytis cinerea,and change the shape of fruit in tomato plants. | Ziyi Yin Jiazong Liu Haipeng Zhao Xiaomeng Chu Haoqi Liu Xiangyu Ding Chongchong Lu Xinyu Wang Xiangyu Zhao Yang Li Xinhua Ding | 2023 | Horticulture Research2023,10,2: | 0 |
| 9 | Efficient Grinding Method for Face Gear with Long Radius Disk Wheel显示文摘In order to improve the machining efficiency of the dish wheel grinding face gear, two changes are proposed:a disk wheel grinding face gear with a long radius and a multi-axis movement optimization method for tooth surface correction. Based on the grinding principle of face gears, the equation of the long radius disk wheel is deduced. Based on the structure of the machining tool, the tooth surface equations of the face gear shaped by the long radius disk wheel are established. Furthermore, an optimization model of face gear tooth surface correction is established, and the machine tool motion optimization of face gear tooth surface correction is completed;Finally, a long radius disk wheel grinding face gear test is performed. After the face gear tooth surface correction, the maximum value of the tooth surface deviation is reduced from 180 μm to 16 μm which verified the correctness of the machining method. | Yanzhong Wang Xiaomeng Chu Guoying Su Weiqiang Zhao Yueming He Long Wu | 2019 | Journal of Beijing Institute of Technology2019,28,3: | 0 |
| 10 | Hybrid Optimization Algorithm for Handwritten Document Enhancement显示文摘The Gannet Optimization Algorithm (GOA) and the Whale Optimization Algorithm (WOA) demonstrate strong performance;however, there remains room for improvement in convergence and practical applications. This study introduces a hybrid optimization algorithm, named the adaptive inertia weight whale optimization algorithm and gannet optimization algorithm (AIWGOA), which addresses challenges in enhancing handwritten documents. The hybrid strategy integrates the strengths of both algorithms, significantly enhancing their capabilities, whereas the adaptive parameter strategy mitigates the need for manual parameter setting. By amalgamating the hybrid strategy and parameter-adaptive approach, the Gannet Optimization Algorithm was refined to yield the AIWGOA. Through a performance analysis of the CEC2013 benchmark, the AIWGOA demonstrates notable advantages across various metrics. Subsequently, an evaluation index was employed to assess the enhanced handwritten documents and images, affirming the superior practical application of the AIWGOA compared with other algorithms. | Shu-Chuan Chu Xiaomeng Yang Li Zhang Václav Snášel Jeng-Shyang Pan | 2024 | Computers, Materials & Continua2024,78,3: | 0 |