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6篇 您的检索式:作者名="Hongjiang Lin"
    题名 作者 年代 出处 被引量
1The Chinese Hα Solar Explorer(CHASE) mission: An overview显示文摘The Chinese Hα Solar Explorer(CHASE), dubbed “Xihe”—Goddess of the Sun, was launched on October 14, 2021 as the first solar space mission of China National Space Administration(CNSA). The CHASE mission is designed to test a newly developed satellite platform and to acquire the spectroscopic observations in the Hα waveband. The Hα Imaging Spectrograph(HIS)is the scientific payload of the CHASE satellite. It consists of two observational modes: raster scanning mode and continuum imaging mode. The raster scanning mode obtains full-Sun or region-of-interest spectral images from 6559.7 to 6565.9 ? and from 6567.8 to 6570.6 ? with 0.024 ? pixel spectral resolution and 1 min temporal resolution. The continuum imaging mode obtains photospheric images in continuum around 6689 ? with the full width at half maximum of 13.4 ?. The CHASE mission will advance our understanding of the dynamics of solar activity in the photosphere and chromosphere. In this paper, we present an overview of the CHASE mission including the scientific objectives, HIS instrument overview, data calibration flow, and first results of on-orbit observations.Chuan Li Cheng Fang Zhen Li MingDe Ding PengFei Chen Ye Qiu Wei You Yuan Yuan MinJie An HongJiang Tao XianSheng Li Zhe Chen Qiang Liu Gui Mei Liang Yang Wei Zhang WeiQiang Cheng JianXin Chen ChangYa Chen Qiang Gu QingLong Huang MingXing Liu ChengShan Han HongWei Xin ChangZheng Chen YiWei Ni WenBo Wang ShiHao Rao HaiTang Li Xi Lu Wei Wang Jun Lin YiXian Jiang LingJie Meng Jian Zhao 2022Science China(Physics,Mechanics & Astronomy)2022,65,8:7
2Phosphorylation switch modulates the interdigitated pattern of PIN1 localization and cell expansion in Arabidopsis leaf epidermis显示文摘在多细胞的纸巾以内,房间可以并列地形成一单个或多重的极的轴,而是它是不清楚的普通机制是否管理极的轴形成的不同类型。大头针蛋白质的 phosphorylation 地位,被 PINOID (PID ) 蛋白质 kinase 和 PP2A 蛋白质磷酸酶直接影响,被知道在根和射击顶的双极的房间调整大头针本地化的顶端基础的极性。这里,我们提供证据 phosphorylation 调停地位的大头针极性开关广泛地被用来与交错的脑叶和缩进包括多极的人行道房间(PC ) 在 Arabidopsis 调制细胞的进程。当 FYPP1 基因,编码称为联系 phytochrome 的 serine/threonine 蛋白质磷酸酶的 PP2A,被击倒时或当 PID 基因是 overexpressed (35S::PID ) 时, PC interdigitation 的度也极大地被减少。这些基因修正引起了 PIN1 本地化从脑叶切换到缩进区域。PP2A 和 PID 调停了 PIN1 本地化切换惊人地类似于他们在另外的房间的大头针蛋白质的顶端基础的极性开关的规定。我们的调查结果为 PIN1 极性形成,在织物 / 器官两个都为模式形成是关键的一个基本细胞的过程和细胞的层次的规定建议普通机制。Hongjiang Li Deshu Lin Pankaj Dhonukshe Shingo Nagawa Dandan Chen Jifi Friml Ben Scheres Hongwei Guo Zhenbiao Yang 2011Cell Research2011,21,6:7
3Cytokinin signaling regulates pavement cell morphogenesis in Arabidopsis显示文摘难题有交错的脑叶的塑造片的 Arabidopsis 叶人行道房间(PC ) 并且缩排是一个好模型系统调查在纸巾以内协调房间极性和形状形成的机制。植物生长素被显示了 GTPase 依赖的发信号由激活 ROP 协调 interdigitation 小径。识别另外的部件或机制,我们与反常 PC 形态发生为异种屏蔽了并且发现细胞激动素发信号调整 PC interdigitation 模式。在细胞激动素累积的减小和在细胞激动素发信号的缺点(例如在 ARR7-over-expressing 线, ahk3cre1 细胞激动素受体异种,和 ahp12345 细胞激动素表明异种) 提高的 PC interdigitation,而细胞激动素的生产过剩和细胞激动素在一根 ARR20 在表示上线发信号的在激活上在整个子叶推迟了或废除 PC interdigitation。基因、生物化学的分析建议表明 ROP 在上游的行为压制交错的模式的形成的那细胞激动素。我们的结果提供控制 PC 形状的小径的新奇机械学的理解并且揭开为细胞激动素在房间形态发生发信号的一个新角色。Hongjiang Li Tongda Xu Deshu Lin Mingzhang Wen M ingtang Xie Jērōme Duclercq Agnieszka Bielach Jungmook Kim G Venugopala Reddy Jianru Zuo Eva Benková Jiгi Friml Hongwei Guoz Zhenbiao Yang 2013Cell Research2013,23,2:2
4Hazard assessment on secondary mountain hazards triggered by the Wenchuan earthquake 显示文摘Yongshun Hart Hongjiang Lin 2009Journal of Applied Remote Sensing2009,,16:1
5Biosynthesis of spherical Fe 3 O 4 /bacterial cellulose nanocomposites as adsorbents for heavy metal ions显示文摘Huixia Zhu Shiru Jia Tong Wan Yuanyuan Jia Hongjiang Yang Jing Li Lin Yan Cheng Zhong 2011Carbohydrate Polymers2011,,4:1
6Revealing the output power potential of bifacial monolithic all-perovskite tandem solar cells显示文摘Bifacial monolithic all-perovskite tandem solar cells have the promise of delivering higher output power density by inheriting the advantages of both tandem and bifacial architectures simultaneously.Herein,we demonstrate,for the first time,the bifacial monolithic all-perovskite tandem solar cells and reveal their output power potential.The bifacial tandems are realized by replacing the rear metal electrodes of monofacial tandems with transparent conduction oxide electrodes.Bandgap engineering is deployed to achieve current matching under various rear illumination conditions.The bifacial tandems show a high output power density of 28.51 mW cm−2 under a realistic rear illumination(30 mW cm−2).Further energy yield calculation shows substantial energy yield gain for bifacial tandems compared with the monofacial tandems under various ground albedo for different climatic conditions.This work provides a new device architecture for higher output power for all-perovskite tandem solar cells under real-world conditions.Hongjiang Li Yurui Wang Han Gao Mei Zhang Renxing Lin Pu Wu Ke Xiao Hairen Tan 2022eLight2022,2,1:0
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