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10篇 您的检索式:作者名="Tang Songyuan"
    题名 作者 年代 出处 被引量
1The Main Progress of Perovskite Solar Cells in 2020-2021显示文摘Perovskite solar cells(PSCs)emerging as a promising photovoltaic technology with high efficiency and low manufacturing cost have attracted the attention from all over the world.Both the efficiency and stability of PSCs have increased steadily in recent years,and the research on reducing lead leakage and developing eco-friendly lead-free perovskites pushes forward the commercialization of PSCs step by step.This review summarizes the main progress of PSCs in 2020 and 2021 from the aspects of efficiency,stability,perovskite-based tandem devices,and lead-free PSCs.Moreover,a brief discussion on the development of PSC modules and its challenges toward practical application is provided.Tianhao Wu Zhenzhen Qin Yanbo Wang Yongzhen Wu Wei Chen Shufang Zhang Molang Cai Songyuan Dai Jing Zhang Jian Liu Zhongmin Zhou Xiao Liu Hiroshi Segawa Hairen Tan Qunwei Tang Junfeng Fang Yaowen Li Liming Ding Zhijun Ning Yabing Qi Yiqiang Zhang Liyuan Han 2021Nano-Micro Letters2021,13,10:2
2Application of ICA to X-ray coronary digital subtraction angiography显示文摘Songyuan Tang Yongtian Wang Yen-Wei Chen 2012Neurocomputin- g2012,79,1:1
3Multiresolution elastic registration of X-ray angiography images u-sing thin-plate spline显示文摘YANG Jian WANG Yongtian TANG Songyuan 2005IEEE Transactions on Nuclear Science2005,54,1:1
4Multiresolution Elastic Registration of X-ray Angiography Images Using Thin-plate Spline显示文摘Yang Jian Wang Yongtian Tang Songyuan 0,,01:1
5Multiresolution Elastic Registration of X-ray Angiography Images Using Thin-Plate Spline显示文摘Yang Iian Wang Yongtian Tang Songyuan 2007IEEE Transactions on Nuclear Science2007,54,1:1
6Clinical observation of Qushi Xiezhuo formula in reducing monosodium urate crystal deposition in patients with axial spondyloarthritis显示文摘OBJECTIVE: To investigate effect of Qushi Xiezhuo formula (QSXZF) on axial spondyloarthritis (AxSpA) with a high incidence of monosodium serum urate (MSU) crystal deposition.METHODS: In this prospective cohort study, 62 Ax- SpA patients diagnosed with MSU crystal deposition from October 2012 to July 2015 were recruited for follow-up observation for 1 year after discharge from the hospital. Patients were divided into a case group with QSXZF treatment and a control group without any interventions. X-ray and dual-energy computed tomography were used to assess structural damage in the pelvis and sacroiliac joint and the volume of the MSU crystals. The Wilcoxon rank-sum test and Fisher's exact test were used to compare the proportion and distribution between the groups. RESULTS: A decrease in C-reactive protein (CRP) level, relief from back pain, and an increase in MSU crystal depositions were found in control patients. Compared with the control group, QSXZF reduced CRP levels and back pain to a greater extent, as well as reduced erythrocyte sedimentation rate levels, serum uric acid levels, Ankylosing Spondylitis Disease Activity Score, morning stiffness and MSU crystal deposition. CONCLUSION: QSXZF can lower progress of radiogrphaic grade at sacroiliac joint in AxSpA/AS patients with MSU crystal deposition by decreasing the inflammation response and reducing the serum uric acid and volume of MSU crystal deposition in sacroiliac joint. The above process may be attributed to the relieving the Qi-movement disturbance in the body, and eliminating turbidity and dampness by QSXZF.Li Aiwu Huang Yinger Zheng Songyuan Tang Cuiping Zhu Junqing Li Juan 2019Journal of Traditional Chinese Medicine2019,39,5:1
7Intensity-based robust similarity for multimodal image registration显示文摘Du Juan Tang Songyuan Jiang Tianzi Lu Zhensu 2006International Journal of Computer Mathematics2006,83,1:1
8Intensity-based robust similarity for multimodal image registration显示文摘Du Juan Tang Songyuan Jiang Tianzi Lu Zhensu 2006International Journal of Computer Mathamatics2006,83,:1
9BiVO_4 semiconductor sensitized solar cells显示文摘Semiconductor sensitized solar cells(SSSCs) are promising candidates for the third generation of cost-effective photovoltaic solar cells and it is important to develop a group of robust, environment-friendly and visible-light-responsive semiconductor sensitizers. In this paper, we first synthesized bismuth vanadate(Bi VO4) quantum dots by employing facile successive ionic layer adsorption and reaction(SILAR) deposition technique, which we then used as a sensitizer for solar energy conversion. The preliminary optimised oxide SSSC showed an efficiency of 0.36%, nearly 2 orders of magnitude enhancement compared with bare Ti O2, due to the narrow bandgap absorption of Bi VO4 quantum dots and intimate contact with the oxide substrate. This result not only demonstrates a simple method to prepare Bi VO4 quantum dots based solar cells, but also provides important insights into the low bandgap oxide SSSCs.Yi Li Jun Zhu Hui Chu Junfeng Wei Feng Liu Mei Lv Junwang Tang Bing Zhang Jianxi Yao Zhipeng Huo Linhua Hu Songyuan Dai 2015Science China Chemistry2015,58,9:0
10Ultrathin wavy nanowires of high-entropy alloy as cocktail solution in methanol oxidation reaction显示文摘High entropy alloys(HEAs)with adjustable composition and diverse surface active sites show good catalytic performance of methanol oxidation reaction(MOR).However,the synthesis and morphology control of HEA remains a challenge.Herein,we use a fast co-reduction method to synthesize a series of ultrathin wavy nanowires(WNWs)with an average diameter of 3–5nm,including Pt-based and Pd-based binary alloys,and HEA with different pairs of immiscible elements.The catalytic properties of PtPdAgCuNi WNWs show that the mass activity and stability of PtPdAgCuNi WNWs is higher than Pt and Pd WNWs.Meanwhile we explored the cocktail effect among high entropy alloy elements through annealing.The cocktail effect among the metal elements in PtPdAgCuNi WNWs provided more active sites with increased metal-metal interactions,thus improving the catalytic efficiency.Songyuan Yuan Xiran Zhu Hui Li Zheng Hu Qianqian Ren Wenbo Zhao Xiangyang Tang Shi Hu 2023Progress in Natural Science:Materials International2023,33,2:0
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