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| 1 | Progress of graphene growth on copper by chemical vapor deposition:Growth behavior and controlled synthesis显示文摘Recently,chemical vapor deposition (CVD) on copper has been becoming a main method for preparing large-area and highquality monolayer graphene.In this paper,we first briefly introduce the preliminary understanding of the microstructure and growth behavior of graphene on copper,and then focus on the recent progress on the quality improvement,number of layers control and transfer-free growth of graphene.In the end,we attempt to analyze the possible development of CVD growth of graphene in future,including the controlled growth of large-size single-crystal graphene and bilayer graphene with different stacking orders. | MA LaiPeng REN WenCai DONG ZaiLi LIU LianQing CHENG HuiMing | 2012 | Chinese Science Bulletin2012,57,23: | 6 |
| 2 | PAP3 Regulates Stamen but Not Petal Development in Capsicum annuum L.显示文摘Pepper flowers are hermaphroditic; the plant's male sterility trait is characterized by its inability to produce pollen grains. In the ABC model of flower development, B-function genes play roles in petal and stamen development in the angiosperm. In this study, a B-class gene designated as PAP3 (Gen Bank accession no. HM104635) was isolated in pepper. The gene encoded 226 amino acids and shared high similarity with the MADS-box protein family, with a conservative MADS domain and semiconservative K domain. Furthermore, the expression of PAP3 was abundant only in petals and anthers but not in leaves. A functional study employing virus-induced gene silencing(VIGS) showed that knockdown of PAP3 led to the shriveling of pollen grains and male sterility; however, it did not affect petal development. These results suggest an essential role for PAP3 in the development of the pepper stamen and in contributing to the variation of floral traits. | MA Ning LIU Chen YANG Wencai SHEN Huolin | 2016 | Horticultural Plant Journal2016,2,2: | 5 |
| 3 | The Temperature change in SnO2-based Gas Sensors During Sensing Reaction显示文摘 | LIU Wenli MA Wencai LI Lei | 2000 | Sensors and Actuators B2000,66,: | 1 |
| 4 | The temperature change in SnO2-based gas sensors during sensing reaction显示文摘 | LIU Wenli MA Wencai LI Lei LI Jianming | 2000 | Sensors and Actuators B2000,66,: | 1 |
| 5 | Activation of RAS/MAPK pathway confers MCL-1 mediated acquired resistance to BCL-2 inhibitor venetoclax in acute myeloid leukemia显示文摘Despite high initial response rates,acute myeloid leukemia(AML)treated with the BCL-2-selective inhibitor venetoclax(VEN)alone or in combinations commonly acquires resistance.We performed gene/protein expression,metabolomic and methylation analyses of isogenic AML cell lines sensitive or resistant to VEN,and identified the activation of RAS/MAPK pathway,leading to increased stability and higher levels of MCL-1 protein,as a major acquired mechanism of VEN resistance. | Qi Zhang Bridget Riley-Gillis Lina Han Yanan Jia Alessia Lodi Haijiao Zhang Saravanan Ganesan Rongqing Pan Sergej N.Konoplev Shannon R.Sweeney Jeremy A.Ryan Yulia Jitkova Kenneth Dunner Jr Shaun E.Grosskurth Priyanka Vijay Sujana Ghosh Charles Lu Wencai Ma Stephen Kurtz Vivian R.Ruvolo Helen Ma Connie CWeng Cassandra LRamage Natalia Baran Ce Shi Tianyu Cai Richard Eric Davis Venkata L.Battula Yingchang Mi Jing Wang Courtney D.DiNardo Michael Andreeff Jeffery W.Tyner Aaron Schimmer Anthony Letai Rose Ann Padua Carlos E.Bueso-Ramos Stefano Tiziani Joel Leverson Relja Popovic Marina Konopleva | 2022 | Signal Transduction and Targeted Therapy2022,7,3: | 1 |
| 6 | The temperature change in SnO2 based gas sensors during sensing reaction显示文摘 | Liu Wenli Ma Wencai Li Lei Li Jianming | 2000 | Sensors and Actuators2000,66,: | 1 |
| 7 | The Temperature Change in SnO2 - based Gas Sensors During Sensing Reaction 显示文摘 | LIU Wenli MA Wencai LI Lei LI Jianming | 2000 | Sensors and Actuators B2000,66,: | 1 |
| 8 | Stably doped graphene transparent electrode with improved lightextraction for efficient flexible organic light-emitting diodes显示文摘Graphene-based flexible transparent electrodes(FTEs)are promising candidate materials for developing next-generation flexible organic light-emitting diodes(OLEDs).However,the quest for high-efficiency OLEDs is hindered by the low light-extraction and charge injection efficiencies of graphene electrode.Here,we combine the frustrated Lewis pair doping with nanostructure engineering to obtain high-performance graphene FTE.A p-type dopant aci-nitromethane-tris(pentafluorophenyl)borane(ANBCF)was synthesized and deposited on graphene FTE to form an aperiodic nanostructure,which not only improves the light-extraction but also stably p-dopes graphene to enhance its hole injection.The use of ANBCF-doped graphene as the anode enables high-efficiency flexible green OLEDs with external quantum efficiency(EQE)and power efficiency(PE)out-performing most flexible graphene OLEDs of comparable structure.This study provides a simple and effective pathway to fabricate high-performance graphene FTEs for efficient flexible OLEDs. | Lai-Peng Ma Zhongbin Wu Yukun Yan Dingdong Zhang Shichao Dong Jinhong Du Dongge Ma Hui-Ming Cheng Wencai Ren | 2023 | Nano Research2023,16,11: | 0 |
| 9 | Control of the ultrafast photo-electronic dynamics of a chemical-vapor-deposited-grown graphene by ozone oxidation显示文摘Diverse ultrafast dynamics have been reported on different graphene prepared by different methods.Chemicalvapor-deposited(CVD)growth is regarded as a very promising method for highly efficient production of graphene.However,CVD-grown graphene usually presents only one of the diverse ultrafast dynamics.Thus,control of the ultrafast photo-electronic dynamics of CVD-grown graphene is vital to present diversity for different photodetection applications of CVD-grown graphene.In this paper,we report on the first realization to our knowledge of control of the ultrafast dynamics of CVD-grown graphene and the manifestation of diverse ultrafast dynamics on sole CVD-grown graphene.We study the ultrafast photoelectronic dynamics of CVD-grown graphene with different degrees of oxidation caused by ozone oxidation using femtosecond time-resolved transient differential transmission spectroscopy,and we find that the ultrafast dynamics can evolve obviously with the time of ozone oxidation.The diverse ultrafast dynamics reported previously on different monolayer graphenes prepared by different methods are achieved on the sole CVD-grown graphene by controlling oxidation time.The mechanism for manipulation of the ultrafast dynamics by ozone oxidation is revealed by Raman spectroscopy as the control of the Fermi level of CVD-grown graphene.Simulations of dynamics based on the optical conductivity model of graphene and Fermi level change well reproduce the observed diverse ultrafast dynamics.Our results are very important for the diverse applications of graphene and open a new path toward the diverse ultrafast dynamics on sole graphene prepared by any method. | MIN GUO LAI-PENG MA WENCAI REN TIANSHU LAI | 2020 | Photonics Research2020,8,1: | 0 |
| 10 | Effects of edge on graphene plasmons as revealed by infrared nanoimaging显示文摘We used scattering-type scanning near-field optical microscopy(s-SNOM)to investigate the plasmonic properties of edges in well-defined graphene nanostructures,including sharp tapers,nanoribbons and nanogaps,which were all fabricated via the growth-etching chemical vapor deposition(GECVD)method.The obtained near-field images revealed the localized plasmon modes along the graphene nanoribbon;these modes strongly depended on the size of the graphene pattern,the angle of the tapered graphene and the infrared excitation wavelength.These interesting plasmon modes were verified by numerical simulations and explained by the reflection,and interference of electromagnetic waves at the graphene–SiO_(2) edge.The constructive interference at the graphene nanogap caused by charge accumulation was demonstrated for the first time.Using the infrared nanoimaging technique,greater plasmon broadening was observed in the zigzag edge than in the armchair edge.Our study suggests that graphene edges should be separated by an effective working distance to avoid the overlapping of localized plasmon modes,which is very important for the design of graphene-based plasmonic circuits and devices. | Qingyang Xu Teng Ma Mohammad Danesh Bannur Nanjunda Shivananju Sheng Gan Jingchao Song Cheng-Wei Qiu Hui-Ming Cheng Wencai Ren Qiaoliang Bao | 2016 | Light(Science & Applications)2016,5,1: | 0 |
| 11 | Correction: Activation of RAS/MAPK pathway confers MCL-1 mediated acquired resistance to BCL-2 inhibitor venetoclax in acute myeloid leukemia显示文摘Correction to:Signal Transduction and Targeted Therapy(2022)7:1–13,https://doi.org/10.1038/s41392-021-00870-3 In the original version of this article,given name of 4th author Yannan Jia was incorrectly published as Yanan Jia.The original article has been corrected.Open Access This article is licensed under a Creative Commons Attribution 4.0 International License,which permits use,sharing,adaptation,distribution and reproduction in any medium or format,as long as you give appropriate credit to the original author(s)and the source. | Qi Zhang Bridget Riley-Gillis Lina Han Yannan Jia Alessia Lodi Haijiao Zhang Saravanan Ganesan Rongqing Pan Sergej N.Konoplev Shannon R.Sweeney Jeremy A.Ryan Yulia Jitkova Kenneth Dunner Jr Shaun E.Grosskurth Priyanka Vijay Sujana Ghosh Charles Lu Wencai Ma Stephen Kurtz Vivian R.Ruvolo Helen Ma Connie C.Weng Cassandra L.Ramage Natalia Baran Ce Shi Tianyu Cai Richard Eric Davis Venkata L.Battula Yingchang Mi Jing Wang Courtney D.DiNardo Michael Andreeff Jeffery W.Tyner Aaron Schimmer Anthony Letai Rose Ann Padua Carlos E.Bueso-Ramos Stefano Tiziani Joel Leverson Relja Popovic Marina Konopleva | 2022 | Signal Transduction and Targeted Therapy2022,7,5: | 0 |
| 12 | Finding finer functions for partially characterized proteins by protein-protein interaction networks显示文摘Based on high-throughput data, numerous algorithms have been designed to find functions of novel proteins. However, the effectiveness of such algorithms is currently limited by some fundamental factors, including (1) the low a-priori probability of novel proteins participating in a detailed function; (2) the huge false data present in high-throughput datasets; (3) the incomplete data coverage of functional classes; (4) the abundant but heterogeneous negative samples for training the algorithms; and (5) the lack of detailed functional knowledge for training algorithms. Here, for partially characterized proteins, we suggest an approach to finding their finer functions based on protein interaction sub-networks or gene expression patterns, defined in function-specific subspaces. The proposed approach can lessen the above-mentioned problems by properly defining the prediction range and functionally filtering the noisy data, and thus can efficiently find proteins’ novel functions. For thousands of yeast and human proteins partially characterized, it is able to reliably find their finer functions (e.g., the translational functions) with more than 90% precision. The predicted finer functions are highly valuable both for guiding the follow-up wet-lab validation and for providing the necessary data for training algorithms to learn other proteins. | LI YanHui GUO Zheng MA WenCai YANG Da WANG Dong ZHANG Min ZHU ding ZHONG GuoCai LI YongJin YAO Chen WANG Jing | 2007 | Chinese Science Bulletin2007,52,24: | 0 |