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| 1 | Synchrotrons radiation stability measurement and improvement显示文摘In the 3rd generation synchrotron light source,beside the orbit,air disturbance and ground vibration also could affect the position stability of photon beam in synchrotrons radiation measurement.In the condition of implementation of orbit feedback system at SSRF,the measured position stability of photon beam in synchrotrons radiation measurement station was presented in this paper.And then the improvement methods of position stability of photon beam were discussed.Finally the measured result was shown when the designed feedback system is implemented to improve the position stability of photon beam. | Tang Siwei Yin Chongxian Liu Dekang | 2012 | Nuclear Science and Techniques2012,23,1: | 2 |
| 2 | Cancer survival in C hina, 2003–2005: A population‐based study显示文摘 | Hongmei Zeng Rongshou Zheng Yuming Guo Siwei Zhang Xiaonong Zou Ning Wang Limei Zhang Jingao Tang Jianguo Chen Kuangrong Wei Suqin Huang Jian Wang Liang Yu Deli Zhao Guohui Song Jianshun Chen Yongzhou Shen Xiaoping Yang Xiaoping Gu Feng Jin Qilong Li Yanh | 2015 | Int. J. Cancer2015,,8: | 1 |
| 3 | Cancer survival in C hina, 2003–2005: A population‐based study显示文摘 | Hongmei Zeng Rongshou Zheng Yuming Guo Siwei Zhang Xiaonong Zou Ning Wang Limei Zhang Jingao Tang Jianguo Chen Kuangrong Wei Suqin Huang Jian Wang Liang Yu Deli Zhao Guohui Song Jianshun Chen Yongzhou Shen Xiaoping Yang Xiaoping Gu Feng Jin Qilong Li Yanh | 2015 | Cancer2015,,8: | 1 |
| 4 | A versatile AIE fluorogen with selective reactivity to primary amines for monitoring amination,protein labeling,and mitochondrial staining显示文摘Specific bioconjugation for native primary amines is highly valuable for both chemistry and biomedical research.Despite all the efforts,scientists lack a proper strategy to achieve high selectivity for primary amines,not to mention the requirement of fast response in real applications.Herein,we report a chromone-based aggregation-induced emission(AIE)fluorogen called CMVMN as a self-reporting bioconjugation reagent for selective primary amine identification,and its applications for monitoring bioprocesses of amination and protein labeling.CMVMN is AIE-active and capable of solid-state sensing.Thus,its electrospun films are manufactured for visualization of amine diffusion and leakage process.CMVMN also shows good biocompatibility and potential mitochondria-staining ability,which provides new insight for organelle-staining probe design.Combined with its facile synthesis and good reversibility,CMVMN would not only show wide potential applications in biology,but also offer new possibilities for molecular engineering. | Xinyuan He Huilin Xie Lianrui Hu Pengchao Liu Changhuo Xu Wei He Wutong Du Siwei Zhang Hao Xing Xinyue Liu Hojeong Park Tsz Shing Cheung Min-Hui Li Ryan T.K.Kwok Jacky W.Y.Lam Jian Lu Ben Zhong Tang | 2023 | Aggregate2023,4,1: | 0 |
| 5 | Bright,photostable and long-circulating NIR-II nanoparticles for whole-process monitoring and evaluation of renal transplantation显示文摘Kidney transplantation is the gold standard for the treatment of end-stage renal diseases(ESRDs).However,the scarcity of donor kidneys has caused more and more ESRD patients to be stuck on the waiting list for transplant surgery.Improving the survival rate for renal grafts is an alternative solution to the shortage of donor kidneys.Therefore,real-time monitoring of the surgical process is crucial to the success of kidney transplantation,but efficient methods and techniques are lacking.Herein,a fluorescence technology based on bright,photostable and long-circulating aggregation-induced emission(AIE)active NIR-II nano-contrast agent DIPT-ICF nanoparticles for the whole-process monitoring and evaluation of renal transplantation has been reported.In the aggregated state,DIPT-ICF exhibits superior photophysical properties compared with the commercial dyes IR-26 and IR-1061.Besides,the long-circulating characteristic of the AIE nano-contrast agent helps to achieve renal angiography in kidney retrieval surgery,donor kidney quality evaluation,diagnosing vascular and ureteral complications,and assessment of renal graft reperfusion beyond renovascular reconstruction,which considerably outperforms the clinically approved indocyanine green(ICG). | Rongyuan Zhang Ping Shen Yu Xiong Tianjing Wu Gang Wang Yucheng Wang Liping Zhang Han Yang Wei He Jian Du Xuedong Wei Siwei Zhang Zijie Qiu Weijie Zhang Zheng Zhao Ben Zhong Tang | 2024 | National Science Review2024,11,2: | 0 |
| 6 | Organic near-infrared photodetectors with photoconductivityenhanced performance显示文摘Organic near-infrared(NIR)photodetectors with essential applications in medical diagnostics,night vision,remote sensing,and optical communications have attracted intensive research interest.Compared with most conventional inorganic counterparts,organic semiconductors usually have higher absorption coefficients,and their thin active layer could be sufficient to absorb most incident light for effective photogeneration.However,due to the relatively poor charge mobility of organic materials,it remains challenging to inhibit the photogenerated exciton recombination and effectively extract carriers to their respective electrodes.Herein,this challenge was addressed by increasing matrix conductivities of a ternary active layer(D–A–D structure NIR absorber[2TT-oC6B]:poly(N,N′-bis-4-butylphenyl-N,N′-bisphenyl)benzidin[PolyTPD]:[6,6]-phenyl-C61-butyric acid methyl ester[PCBM]=1:1:1)upon in situ incident light illumination,significantly accelerating charge transport through percolated interpenetrating paths.The greatly enhanced photoconductivity under illumination is intrinsically related to the unique donor–acceptor molecular structures of PolyTPD and 2TT-oC6B,whereas stable intermolecular interaction has been verified by systematic molecular dynamics simulation.In addition,an ultrafast charge transfer time of 0.56 ps from the NIR aggregation-induced luminogens of 2TT-oC6B absorber to PolyTPD and PCBM measured by femtosecond transient absorption spectroscopy is beneficial for effective exciton dissociation.The solution-processed organic NIR photodetector exhibits a fast response time of 83μs and a linear dynamic range value of 111 dB under illumination of 830 nm.Therefore,our work has opened up a pioneering window to enhance photoconductivity through in situ photoirradiation and benefit NIR photodetectors as well as other optoelectronic devices. | Siwei Zhang Zhenlong Li Jingzhou Li Bingzhe Wang Fang Chen Xubiao Li Shunjie Liu Jacky W.Y.Lam Guichuan Xing Jiangyu Li Zheng Zhao Feiyu Kang Guodan Wei Ben Zhong Tang | 2023 | Aggregate2023,4,5: | 0 |
| 7 | Hepatic Zbtb18 (Zinc Finger and BTB Domain Containing 18) alleviates hepatic steatohepatitis via FXR (Farnesoid X Receptor)显示文摘A lasting imbalance between fatty acid synthesis and consumption leads to non-alcoholic fatty liver disease(NAFLD),coupled with hepatitis and insulin resistance.Yet the details of the underlying mechanisms are not fully understood.Here,we unraveled that the expression of the transcription factor Zbtb18 is markedly decreased in the livers of both patients and murine models of NAFLD.Hepatic Zbtb18 knockout promoted NAFLD features like impaired energy expenditure and fatty acid oxidation(FAO),and induced insulin resistance.Conversely,hepatic Zbtb18 overexpression alleviated hepato-steatosis,insulin resistance,and hyperglycemia in mice fed on a high-fat diet(HFD)or in diabetic mice.Notably,in vitro and in vivo mechanistic studies revealed that Zbtb18 transcriptional activation of Farnesoid X receptor(FXR)mediated FAO and Clathrin Heavy Chain(CLTC)protein hinders NLRP3 inflammasome activity.This key mechanism by which hepatocyte’s Zbtb18 expression alleviates NAFLD and consequent liver fibrosis was further verified by FXR’s deletion and forced expression in mice and cultured mouse primary hepatocytes(MPHs).Moreover,CLTC deletion significantly abrogated the hepatic Zbtb18 overexpression-driven inhibition of NLRP3 inflammasome activity in macrophages.Altogether,Zbtb18 transcriptionally activates the FXR-mediated FAO and CLTC expression,which inhibits NLRP3 inflammasome’s activity alleviating inflammatory stress and insulin resistance,representing an attractive remedy for hepatic steatosis and fibrosis. | Lei Zhang Jiabing Chen Xiaoying Yang Chuangpeng Shen Jiawen Huang Dong Zhang Naihua Liu Chaonan Liu Yadi Zhong Yingjian Chen Kaijia Tang Jingyi Guo Tianqi Cui Siwei Duan Jiayu Li Shangyi Huang Huafeng Pan Huabing Zhang Xiaoqiang Tang Yongsheng Chang Yong Gao | 2024 | Signal Transduction and Targeted Therapy2024,9,2: | 0 |
| 8 | Current situation of carbon emissions and countermeasures in China's ironmaking industry显示文摘The iron and steel industry(ISI) involves high energy consumption and high pollution. ISI in China, a leading country in the ISI,consumed 15% of the country’s total energy and produced more than 50% of the global ISI’s carbon emissions. Therefore, in the context of global low-carbon economy and emission reduction requirements, low-carbon smelting technology in the ISI has attracted increasingly more attention in China. This review summarizes the current status of carbon emissions and energy consumption in China’s ISI and discusses the development status and prospects of low-carbon ironmaking technology. The main route to effectively reducing carbon emissions is to develop a gas-based direct reduction process and replace sintering with pelletizing, both of which focus on developing pelletizing technology. However,the challenge of pelletizing process development is to obtain high-quality iron concentrates. Consequently, the present paper also summarizes the development status of China’s mineral processing technology, including fine-grained mineral processing technology, magnetization roasting technology, and flotation collector application. This paper aims to provide a theoretical basis for the low-carbon development of China’s ISI in terms of a dressing–smelting combination. | Chenmei Tang Zhengqi Guo Jian Pan Deqing Zhu Siwei Li Congcong Yang Hongyu Tian | 2023 | International Journal of Minerals,Metallurgy and Materials2023,30,9: | 0 |
| 9 | Growth of skyrmionic MnSi nanowires on Si: Critical importance of the SiO2 layer显示文摘在 B20 结构的 MnSi 是形成一个 skyrmion 格子的一个原型的螺旋磁体,在应用磁场下面的一块像旋涡的旋转质地。我们系统地经由控制帮助氧化物的化学蒸汽免职探索了单个水晶 MnSi nanowires 的合成并且观察了 skyrmion 的典型签名在 MnSi nanowires 的磁性的订。SiO 的厚度 < 潜水艇 class= “ a-plus-plus ” > Si 底层上的 2 层在获得 B20 MnSi skyrmion nanowires 的高收益起关键作用。生长机制被建议那与最佳 SiO 的存在一致 < 潜水艇 class= “ a-plus-plus ” > 2 厚度。一张生长阶段图为各种各样的 MnSi nanostructures 基于各种各样的生长条件的广泛的研究被构造。helicoidal 和 skyrmion 的坚持在一个维的电线中的磁性的订被交流和 dc 直接揭示磁性的大小。 | Siwei Tang Ivan Kravchenko Jieyu Yi Guixin cao Jane Howe David Mandrus Zheng Gai | 2014 | Nano Research2014,7,12: | 0 |