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| 1 | High activity of hot electrons from bulk 3D graphene materials for efficient photocatalytic hydrogen production显示文摘为经由切开的水的氢生产的有效光催化剂的设计和合成从理论、实际的观点是很重要的。许多基于金属的半导体在最近的十年为这个目的被探索了。这里,第一次完全基于碳的材料,体积三在尺寸上的 cross-linked graphene (3DG ) ,为氢作为光催化剂被开发了生产。它展出 270 摩尔的显著的氢生产率 ??? 琠? 敧敮慲整挠瑹瑯硯捩稠湩 ? 潩獮愠摮爠慥瑣癩? 硯杹湥猠数楣獥 ? 佒 ? 。 | Yanhong Lu Bo Ma Yang Yang Erwei Huang Zhen Ge Tengfei Zhang Suling Zhang Landong Li Naijia Guan Yanfeng Ma Yongsheng Chen | 2017 | Nano Research2017,10,5: | 3 |
| 2 | An additive dripping technique using diphenyl ether for tuning perovskite crystallization for high-efficiency solar cells显示文摘 | Di Huang Tenghooi Goh Yifan Zheng Zilun Qin Jiao Zhao Suling Zhao Zheng Xu Andre D. Taylor | 2018 | Nano Research2018,11,5: | 3 |
| 3 | A Red-Emissive Sextuple Hydrogen-Bonding Self-Assembly Molecular Duplex Bearing Perylene Diimide Fluorophores for Warm-White Organic Light-Emitting Diode Application显示文摘一篇小说六倍结合氢(HB ) 自己组装分子的双适用的红射出的 perylene diimide (PDI ) fluorophores,也就是 PDIHB,被综合,并且它的分子的结构被 1 H NMR, 13 C NMR, TOFMS 和 2D NMR。与小分子的参考混合物 PDI 相比, PDIHB 处于稳固的状态(4.1% 对 2.1%) 显示出提高的荧光效率一次。更重要地,在 PDIHB 的笨重 HB oligoamide 海滨的存在能在薄稳固的电影触发在客人和主人 fluorophores 之间的有效空间分离州的、因此低效的精力转移在 2 wt% 发生在蓝射出的主人 2TPhNIHB 和红客人 PDIHB 之间客人 / 主人相配电影。作为结果,有 ITO/PEDOT 的相当简单的设备结构的一根处理答案的器官的轻射出的二极管(OLED ): PSS (40 nm )/PVK (40 nm )/PDIHB (2 wt%) :2TPhNIHB (50 nm )/Al (100 nm ) 能射出的 /LiF (0.8 nm ) 有稳定的委员会共产国际歌 de LEclairage 坐标的偏爱无关的温暖白人的 electroluminescence (0.42, 0.33 ) ,并且最大的亮度和这台设备的当前的效率分别地是 260 cd·m −2 和 0.49 cd·A −1, 。所有这些结果显示了那 HB 自己组装超分子的 fluorophores 能为白 OLED 申请充当未来的材料。 | Hui Zeng Qingyu Huang Jingjing Liu Yan Huang Jie Zhou Suling Zhao Zhiyun Lu | 2016 | Chinese Journal of Chemistry2016,34,4: | 2 |
| 4 | Simulation Analysis of Stress Field of Walnut Shell Composite Powder in Laser Additive Manufacturing Forming显示文摘A calculation model of stress field in laser additive manufacturing of walnut shell composite powder(walnut shell/Co-PES powder)was established.The DFLUX subroutine was used to implement the moveable application of a double ellipsoid heat source by considering the mechanical properties varying with temperature.The stress field was simulated by the sequential coupling method,and the experimental results were in good accordance with the simulation results.In addition,the distribution and variation of stress and strain field were obtained in the process of laser additive manufacturing of walnut shell composite powder.The displacement of laser additive manufacturing walnut shell composite parts gradually decreased with increasing preheating temperature,decreasing laser power and increasing scanning speed.During the cooling process,the displacement of laser additive manufacturing of walnut shell composite parts gradually increased with the increasing preheating temperature,decreasing scanning speed and increasing laser power. | Yueqiang Yu Tingang Ma Suling Wang Minzheng Jiang Yanling Guo Ting Jiang Shuaiqi Huang Ziming Zheng Bo Yan Jiyuan Lv | 2023 | Journal of Renewable Materials2023,11,1: | 1 |
| 5 | Metal phthalocyanine as photosensitizer for photodynamic therapy (PDT)显示文摘 | Jinling Huang Naisheng Chen Jiandong Huang Ersheng Liu Jinping Xue Suling Yang Ziqiang HUANG Jiancheng Sun | 2001 | Science in China Series B: Chemistry2001,,2: | 1 |
| 6 | Sequencing on two and three machines with setup, processing and removal times separated显示文摘 | Huang K Y | 1983 | International Journal of Production Research1983,21,: | 1 |
| 7 | 156 cases of bronchiolitis nursing intervention on显示文摘 | Li Qianmei Wu Suling Huang Han | 2012 | China Practical Medicine2012,18,33: | 1 |
| 8 | Sequencing on two and three machines with setup,processing and removal times separated显示文摘 | Sule D R Huang K Y | 1983 | International Journal of Production Research1983,21,: | 1 |
| 9 | Surface Engineered Ru_(2)Ni Multilayer Nanosheets for Hydrogen Oxidation Catalysis显示文摘The hydrogen oxidation reaction(HOR)in alkaline conditions is of great importance for the application of anion exchange membrane fuel cells(AEMFCs).However,the electrocatalysts for alkaline HOR generally suffer from the disadvantage of sluggish kinetics.Herein,we have fabricated Ru2Ni multilayered nanosheets(Ru2Ni MLNSs)in the layer-by-layer manner and engineered the surface properties via postannealing for efficient alkaline HOR.Detailed investigations reveal that such annealing at different temperatures can alter the surface properties of Ru2Ni MLNSs and thus regulate their adsorption abilities toward*H and*OH.In particular,the optimal catalyst exhibits a mass activity of 4.34 A mgRu−1 at an overpotential of 50 mV,which is 18.1 and 13.2 times higher than those of Ru/C(0.24 A mgRu−1)and Pt/C(0.33 A mgPt−1),respectively.Theoretical calculations indicate that the presence of surface O atoms can facilitate the HOR activity while the excessive coverage of O atoms on Ru2Ni surface leads to the strengthened H binding and the decay of HOR activity.This work not only provides an efficient catalyst for alkaline HOR,but it also may shed new light on the design of high-performance catalysts for electrocatalysis and beyond.We have fabricated Ru2Ni multilayer nanosheets(Ru2Ni MLNSs)and realized the surface engineering via an annealing process.Detailed investigations show that such surface engineering can regulate the surface properties and thus promote the alkaline HOR activity.Consequently,the optimal catalyst exhibits a much higher activity than those of commercial Ru/C and Pt/C and is a promising catalyst for alkaline HOR. | Juntao Zhang Xing Fan Suling Wang Maofeng Cao Lingzheng Bu Yong Xu Haiping Lin Xiaoqing Huang | 2023 | CCS Chemistry2023,5,8: | 0 |
| 10 | Machine learning enables intelligent screening of interface materials towards minimizing voltage losses for p-i-n type perovskite solar cells显示文摘Interface engineering is proved to be the most important strategy to push the device performance of the perovskite solar cell(PSC) to its limit, and numerous works have been conducted to screen efficient materials. Here, on the basis of the previous studies, we employ machine learning to map the relationship between the interface material and the device performance, leading to intelligently screening interface materials towards minimizing voltage losses in p-i-n type PSCs. To enhance the explainability of the machine learning models, molecular descriptors are used to represent the materials. Furthermore,experimental analysis with different characterization methods and device simulation based on the drift-diffusion physical model are conducted to get physical insights and validate the machine learning models. Accordingly, 3-thiophene ethylamine hydrochloride(Th EACl) is screened as an example, which enables remarkable improvements in VOCand PCE of the PSCs. Our work reveals the critical role of datadriven analysis in the high throughput screening of interface materials, which will significantly accelerate the exploration of new materials for high-efficiency PSCs. | Wu Liu Ning Meng Xiaomin Huo Yao Lu Yu Zhang Xiaofeng Huang Zhenqun Liang Suling Zhao Bo Qiao Zhiqin Liang Zheng Xu Dandan Song | 2023 | Journal of Energy Chemistry2023,,8: | 0 |
| 11 | An integrative drug repositioning framework discovered a potential therapeutic agent targeting COVID-19显示文摘The global spread of severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)requires an urgent need to find effective therapeutics for the treatment of coronavirus disease 2019(COVID-19).In this study,we developed an integrative drug repositioning framework,which fully takes advantage of machine learning and statistical analysis approaches to systematically integrate and mine large-scale knowledge graph,literature and transcriptome data to discover the potential drug candidates against SARS-CoV-2.Our in silico screening followed by wet-lab validation indicated that a poly-ADP-ribose polymerase 1(PARP1)inhibitor,CVL218,currently in Phase I clinical trial,may be repurposed to treat COVID-19.Our in vitro assays revealed that CVL218 can exhibit effective inhibitory activity against SARS-CoV-2 replication without obvious cytopathic effect.In addition,we showed that CVL218 can interact with the nucleocapsid(N)protein of SARS-CoV-2 and is able to suppress the LPS-induced production of several inflammatory cytokines that are highly relevant to the prevention of immunopathology induced by SARS-CoV-2 infection. | Yiyue Ge Tingzhong Tian Suling Huang Fangping Wan Jingxin Li Shuya Li Xiaoting Wang Hui Yang Lixiang Hong Nian Wu Enming Yuan Yunan Luo Lili Cheng Chengliang Hu Yipin Lei Hantao Shu Xiaolong Feng Ziyuan Jiang Yunfu Wu Ying Chi Xiling Guo Lunbiao Cui Liang Xiao Zeng Li Chunhao Yang Zehong Miao Ligong Chen Haitao Li Hainian Zeng Dan Zhao Fengcai Zhu Xiaokun Shen Jianyang Zeng | 2021 | Signal Transduction and Targeted Therapy2021,6,5: | 0 |
| 12 | Intratumoral CD103+CD8+T cells predict response to neoadjuvant chemoimmunotherapy in advanced head and neck squamous cell carcinoma显示文摘Background Immune cell heterogenicity is known to determine the therapeutic response to cancer progression.Neoadjuvant chemoimmunotherapy(NACI)has shown clinical benefits in some patients with advanced head and neck squamous cell carcinoma(HNSCC),but the underlying mechanism behind this clinical response is unknown.The efficacy of NACI needs to be potentiated by identifying accurate biomarkers to predict clinical responses.Here,we attempted to identify molecules predicting NACI response in advanced HNSCC.Methods We performed combined single-cell RNA sequencing(scRNA-seq)and multiplex immunofluorescence(mIHC)staining with tumor samples derived from NACI-treated HNSCC patients to identify a new tumor-infiltrating cell(TIL)subtype,CD103+CD8+TILs,associated with clinical response,while both in vitro and in vivo assays were carried out to determine its antitumor efficiency.The regulatory mechanism of the CD103+CD8+TILs population was examined by performing cell-cell interaction analysis of the scRNA-seq data and spatial analysis of the mIHC images.Results We established intratumoral CD103+CD8+TILs density as a determinant of NACI efficacy in cancers.Our scRNA-seq results indicated that the population of CD103+CD8+TILs was dramatically increased in the responders of NACI-treated HNSCC patients,while mIHC analysis confirmed the correlation between intratumoral CD103+CD8+TILs density and NACI efficacy in HNSCC patients.Further receiver operating characteristic curve analysis defined this TIL subset as a potent marker to predict patient response to NACI.Functional assays showed that CD103+CD8+TILs were tumor-reactive T cells,while programmed cell death protein-1(PD-1)blockade enhanced CD103+CD8+TILs cytotoxicity against tumor growth in vivo.Mechanistically,targeting the triggering receptor expressed on myeloid cells 2-positive(TREM2+)macrophages might enhance the population of CD103+CD8+TILs and facilitate antitumor immunity during NACI treatment.Conclusions Our study highlights the impact of intratumoral CD103+CD8+TILs density on NACI efficacy in different cancers,while the efforts to elevate its population warrant further clinical investigation. | Siqi Ren Tianjun Lan Fan Wu Suling Chen Xue Jiang Chuying Huo Zitian Li Shule Xie Donghui Wu Ruixin Wang Yanyan Li Lin Qiu Guoxin Huang Shurui Li Xiaojuan Wang Meifeng Cen Tingting Cai Zhaoyu Lin Jinsong Li Bowen Li | 2023 | Cancer Communications2023,43,10: | 0 |
| 13 | CHARACTERIZATION OF MANGANESE PHTHALOCYANINE-Fe_3O_4 NANOPARTICLE COMPOSITE AND ITS ELECTROMAGNETORHEOLOGICAL FLUID显示文摘Manganese phthalocyanine (MnPc)-Fe3O4 nanoparticles composite was prepared and characterized. The results show that MnPc are completed on the surface of Fe3O4 nanoparticles in the state of single molecule. There is effective composite between MnPc and Fe3O4 nanoparticles which can improve the antioxidization ability of Fe3O4 nanoparticles greatly. The composite was dispersed into chlorinated paraffin oil to form electromag-netorheological (EMR) fluid with high activity, and the EMR properties of this EMR fluid are studied. | HUANG Jun GUAN Jianguo ZHAO Suling YUAN Runzhang Wuhan University of Technology | 1999 | Journal of Wuhan University of Technology(Materials Science)1999,14,1: | 0 |