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8篇 您的检索式:作者名="Zunk"
    题名 作者 年代 出处 被引量
1Hypefinsulinism and cerebral microangiopathy 显示文摘Zunke P Schiek A Buschmen HC 1996Stroke1996,27,2:1
2Structural properties of zinc oxide deposited using atmospheric pressure combustion chemical vapour deposition 显示文摘Zunke I Wolf S Heft A 2014Journal of Applied Phys- ics2014,565,1:1
3Low-temperature hydrogen transport using a palladium/copper membrane显示文摘Lessing P A Wood H C Zunk L D 0,,11:1
4Therapeutic potential of lysosomal cathepsins for neurodegenerative diseases显示文摘Lysosomes are ubiquitous and dynamic organelles with a central role in degradation and recycling of damaged cell components and misfolded proteins,otherwise known as autophagy.Autophagy plays a fundamental role in the process of correcting cell homeostasis and cellular survival.Unsurprisingly,this process is essential in the central nervous system,as neurons are not able to easily eliminate altered proteins given their post-mitotic state.Susy Prieto Huarcaya Friederike Zunke 2023Neural Regeneration Research2023,18,8:1
5Removal mechanisms in polishing of silicon based advanced ceramics显示文摘KLOCKE F ZUNKE R 2009CIRP Armal s-Manufacturing Technology2009,,:1
6Phylogenetic relationships in tribe Lepidieae (Brassicaceae) based on chloroplast DNA restriction site variation显示文摘ZUNK K MUMMENHOFF K HURKA H 1999Canadian Journal of Botany1999,77,2:1
7The role of lysosomes in alpha-synucleinopathies: a focus on glial cells显示文摘Lysosomes are the major degradative compartments within eukaryotic cells.Besides their role in the degradation and recycling of intra-and extracellular molecules,they further mediate important biological processes,such as immune signaling and perpetuation of nutrientand energy homeostasis.Denise Balta Friederike Zunke 2022Neural Regeneration Research2022,17,7:0
8Efficiency-loss analysis of monolithic perovskite/silicon tandem solar cells by identifying the patterns of a dual two-diode model’s current-voltage curves显示文摘In this work,we developed a simple and direct circuit model with a dual two-diode model that can be solved by a SPICE numerical simulation to comprehensively describe the monolithic perovskite/crystalline silicon(PVS/c-Si)tandem solar cells.We are able to reveal the effects of different efficiency-loss mechanisms based on the illuminated current density-voltage(J-V),semi-log dark J-V,and local ideality factor(m-V)curves.The effects of the individual efficiency-loss mechanism on the tandem cell’s efficiency are discussed,including the exp(V/VT)and exp(V/2VT)recombination,the whole cell’s and subcell’s shunts,and the Ohmic-contact or Schottky-contact of the intermediate junction.We can also fit a practical J-V curve and find a specific group of parameters by the trial-and-error method.Although the fitted parameters are not a unique solution,they are valuable clues for identifying the efficiency loss with the aid of the cell’s structure and experimental processes.This method can also serve as an open platform for analyzing other tandem solar cells by substituting the corresponding circuit models.In summary,we developed a simple and effective methodology to diagnose the efficiency-loss source of a monolithic PVS/c-Si tandem cell,which is helpful to researchers who wish to adopt the proper approaches to improve their solar cells.Yuheng Zeng Zetao Ding Zunke Liu Wei Liu Mingdun Liao Xi Yang Zhiqin Ying Jingsong Sun Jiang Sheng Baojie Yan Haiyan He Chunhui Shou Zhenhai Yang Jichun Ye 2023Journal of Semiconductors2023,44,8:0
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