Chaofan Chen
Fujian Agriculture and Forestry University
6 Papers
Chaofan Chen is an academic researcher from Fujian Agriculture and Forestry University. The author has contributed to research in topics: Chemistry & Composite number. The author has an hindex of 1, co-authored 1 publications.
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Papers
Salicylic acid-mediated plasmodesmal closure via Remorin-dependent lipid organization.
Dingquan Huang,Yanbiao Sun,Zhiming Ma,Meiyu Ke,Yong Cui,Zichen Chen,Chaofan Chen,Changyang Ji,Tuan Minh Tran,Liang Yang,Sin Man Lam,Yanhong Han,Guanghou Shu,Jiří Friml,Yansong Miao,Liwen Jiang,Xu Chen +16 more
TL;DR: A molecular mechanism by which the key plant defense hormone, SA, triggers membrane lipid nanodomain reorganization, thereby regulating PD closure to impede virus spreading is unveiled.
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A facile pore size controlling strategy to construct rigid/flexible silica aerogels for super heat insulation and VOCs adsorption
Junyan Liu,Jingxiao Liu,Feiyan Shi,Chuangchuang Ma,Tianci Li,Chaofan Chen,Muhammad Wasim,K. Zhu,Huijun Sun,Ziwei Tian +9 more
TL;DR: In this article , two pore size controllable methods were proposed to construct rigid/flexible silica aerogels with an extensive range of pore sizes by controlling the binding modes among the gel network using methyltriethoxysilane (MTES) as silica source.
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Multi-copper oxidases SKU5 and SKS1 coordinate cell wall formation using apoplastic redox-based reactions in roots
Chaofan Chen,Yi Zhang,Jianfa Cai,Yuting Qiu,Chengxu Gao,Yi-Qun Gao,Meiyu Ke,Jiaomei Chen,Tongda Xu,Jiří Friml,Junqi Wang,Ruixi Li,Daiyin Chao,Baocai Zhang,Xu Chen,Zhen Gao +15 more
TL;DR: In this article , the role of the Arabidopsis (Arabidopsis thaliana) multicopper oxidase-like protein skewed 5 (SKU5) and its homolog SKU5-similar 1 (SKS1) in root cell wall formation through modulating ROS homeostasis was demonstrated.
A fluorescent nanoprobe based on N/S co-doped carbon dots coupled with molecularly imprinted polymers for the detection of curcumin
TL;DR: In this article , a fluorescence nanosensor using carbon quantum dots (N,S-CQD) embedded multifunctional molecularly imprinted polymer (N,[email protected]) composite was developed as a probe for the detection of curcumin.
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