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4篇 您的检索式:作者名="Anbin Wu"
    题名 作者 年代 出处 被引量
1Model for end-stage liver disease versus the Child-Pugh score in predicting the post-transplant 3-month and 1-year mortality in a cohort of Chinese recipients显示文摘Zhiyong Guo Xiaoshun He Linwei Wu Weiqiang Ju Anbin Hu Qiang Tai Dongping Wang Yi Ma Guodong Wang Xiaofeng Zhu Jiefu Huang 2010Surgery Today2010,,1:1
2Model for end-stage liver disease versus the Child-Pugh score in predicting the post-transplant 3-month and 1-year mortality in a cohort of Chinese recipients显示文摘Zhiyong Guo Xiaoshun He Linwei Wu Weiqiang Ju Anbin Hu Qiang Tai Dongping Wang Yi Ma Guodong Wang Xiaofeng Zhu Jiefu Huang 2010Surgery Today2010,,1:1
3Highly Reversible Zn Metal Anodes Enabled by Increased Nucleation Overpotential显示文摘Dendrite formation severely compromises further development of zinc ion batteries. Increasing the nucleation overpotential plays a crucial role in achieving uniform deposition of metal ions. However, this strategy has not yet attracted enough attention from researchers to our knowledge. Here, we propose that thermodynamic nucleation overpotential of Zn deposition can be boosted through complexing agent and select sodium L-tartrate(Na-L) as example. Theoretical and experimental characterization reveals L-tartrate anion can partially replace H_(2)O in the solvation sheath of Zn^(2+), increasing de-solvation energy. Concurrently, the Na^(+) could absorb on the surface of Zn anode preferentially to inhibit the deposition of Zn^(2+) aggregation. In consequence, the overpotential of Zn deposition could increase from 32.2 to 45.1 mV with the help of Na-L. The Zn-Zn cell could achieve a Zn utilization rate of 80% at areal capacity of 20 mAh cm^(-2). Zn-LiMn_(2)O_(4) full cell with Na-L additive delivers improved stability than that with blank electrolyte. This study also provides insight into the regulation of nucleation overpotential to achieve homogeneous Zn deposition.Zhengqiang Hu Fengling Zhang Anbin Zhou Xin Hu Qiaoyi Yan Yuhao Liu Faiza Arshad Zhujie Li Renjie Chen Feng Wu Li Li 2023Nano-Micro Letters2023,15,10:0
4Yanshanian–Himalayan geodynamic transformation of the northwestern Junggar Basin, southwestern Central Asian Orogenic Belt (CAOB), and its significance for petroleum accumulation显示文摘The northwestern Junggar Basin in the southwestern Central Asian Orogenic Belt is a typical petroliferous basin.The widely distributed reservoirs in Jurassic–Cretaceous strata indicate that the region records Yanshanian–Himalayan tectonic activity,which affected the accumulation and distribution of petroleum.The mechanism of this effect,however,has not been fully explored.To fill the knowledge gap,we studied the structural geology and geochemistry of the well-exposed Wuerhe bitumen deposit.Our results indi-cate that deformation and hydrocarbon accumulation in the northwestern Junggar Basin during the Yanshanian–Himalayan geodynamic transformation involved two main stages.During the Yanshanian orogeny,a high-angle extensional fault system formed in Jurassic–Cretaceous strata at intermediate to shallow depths owing to dextral shear deformation in the orogenic belt.This fault system connected at depth with the Permian–Triassic oil–gas system,resulting in oil ascending to form fault-controlled reservoirs(e.g.,a veined bitumen deposit).During the Himalayan orogeny,this fault system was deacti-vated owing to sinistral shear caused by far-field stress related to uplift of the Tibetan Plateau.This and the reservoir densification caused by cementation formed favorable hydrocarbon preservation and accu-mulation conditions.Therefore,the secondary oil reservoirs that formed during the Yanshanian–Himalayan tectonic transformation and the primary oil reservoirs that formed during Hercynian–Indosinian orogenies form a total and complex petroleum system comprising conventional and uncon-ventional petroleum reservoirs.This might be a common feature of oil–gas accumulation in the Central Asian Orogenic Belt and highlights the potential for petroleum exploration at intermediate–shal-low depths.Dongming Zhi Jingkun Zhang Tao Wu Anbin Wu Yong Tang Yin Liu Jian Cao 2023Geoscience Frontiers2023,14,4:0
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