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6篇 您的检索式:作者名="Yanlong FU"
    题名 作者 年代 出处 被引量
1High-performance silicon−graphene hybrid plasmonic waveguide photodetectors beyond 1.55μm显示文摘Graphene has attracted much attention for the realization of high-speed photodetection for silicon photonics over a wide wavelength range.However,the reported fast graphene photodetectors mainly operate in the 1.55μm wavelength band.In this work,we propose and realize high-performance waveguide photodetectors based on bolometric/photoconductive effects by introducing an ultrathin wide silicon−graphene hybrid plasmonic waveguide,which enables efficient light absorption in graphene at 1.55μm and beyond.When operating at 2μm,the present photodetector has a responsivity of ~70 mA/W and a setup-limited 3 dB bandwidth of >20 GHz.When operating at 1.55μm,the present photodetector also works very well with a broad 3 dB bandwidth of >40 GHz(setup-limited)and a high responsivity of ~0.4 A/W even with a low bias voltage of−0.3 V.This work paves the way for achieving highresponsivity and high-speed silicon-graphene waveguide photodetection in the near/mid-infrared ranges,which has applications in optical communications,nonlinear photonics,and on-chip sensing.Jingshu Guo Jiang Li Chaoyue Liu Yanlong Yin Wenhui Wang Zhenhua Ni Zhilei Fu Hui Yu Yang Xu Yaocheng Shi Yungui Ma Shiming Gao Limin Tong Daoxin Dai 2020Light(Science & Applications)2020,9,1:10
2Growth factor regulatory system:a new system for not truly recognized organisms显示文摘Growth,development,aging,and disease occurrence in organisms,especially animals or Homo sapiens,are regulated by different regulatory systems in vivo.The nervous,endocrine,metabolic,and immune systems are the traditional biological systems essential for the growth,development,and metabolism of the body.These systems maintain a balance and precisely biologically regulate every aspect of life activities under normal circumstances.However,in abnormal situations,owing to endogenous or exogenous attack,these regulatory systems result in dysfunction,subsequently leading to illness or injury(Muggianu et al.,2018).In the classical neuroendocrine regulatory system,Cushing’s syndrome is defined as a series of abnormal clinical symptoms with chronic overproduction of glucocorticoids in the adrenal cortex.Its clinical manifestations are“moon face”and“buffalo hump,”involving blood circulation,bone metabolism,and gonadal function,among others.In addition,severe trauma or burn leads to an imbalanced immune regulatory system,resulting in excessive inflammatory reactions and sepsis.Thus,an independent or cooperative regulation of multiple regulatory systems is critical in maintaining the body’s homeostasis,healthy development,and growth.Jian Xiao Zhuofeng Lin Hua Qin Zhilong Zheng Fanghua Gong Yanlong Liu Xiaokun Li Xiaobing Fu 2020Science China(Life Sciences)2020,63,3:5
3Integrating full-length transcriptomics and metabolomics reveals the regulatory mechanisms underlying yellow pigmentation in tree peony(Paeonia suffruticosa Andr.)flowers显示文摘Tree peony(Paeonia suffruticosa Andr.)is a popular ornamental plant in China due to its showy and colorful flowers.However,yellow-colored flowers are rare in both wild species and domesticated cultivars.The molecular mechanisms underlying yellow pigmentation remain poorly understood.Here,petal tissues of two tree peony cultivars,“High Noon”(yellow flowers)and“Roufurong”(purple–red flowers),were sampled at five developmental stages(S1–S5)from early flower buds to full blooms.Five petal color indices(brightness,redness,yellowness,chroma,and hue angle)and the contents of ten different flavonoids were determined.Compared to“Roufurong,”which accumulated abundant anthocyanins at S3–S5,the yellow-colored“High Noon”displayed relatively higher contents of tetrahydroxychalcone(THC),flavones,and flavonols but no anthocyanin production.The contents of THC,flavones,and flavonols in“High Noon”peaked at S3 and dropped gradually as the flower bloomed,consistent with the color index patterns.Furthermore,RNA-seq analyses at S3 showed that structural genes such as PsC4Hs,PsDFRs,and PsUFGTs in the flavonoid biosynthesis pathway were downregulated in“High Noon,”whereas most PsFLSs,PsF3Hs,and PsF3’Hs were upregulated.Five transcription factor(TF)genes related to flavonoid biosynthesis were also upregulated in“High Noon.”One of these TFs,PsMYB111,was overexpressed in tobacco,which led to increased flavonols but decreased anthocyanins.Dual-luciferase assays further confirmed that PsMYB111 upregulated PsFLS.These results improve our understanding of yellow pigmentation in tree peony and provide a guide for future molecular-assisted breeding experiments in tree peony with novel flower colors.Xiaoning Luo Daoyang Sun Shu Wang Sha Luo Yaqi Fu Lixin Niu Qianqian Shi Yanlong Zhang 2021Horticulture Research2021,8,1:5
4BiOBr-carbon nitride heterojunctions: Synthesis, enhanced activity and photocatalytic mechanism 显示文摘Fu Jie Tian Yanlong Chang Binbin 2012J Mater Chem2012,22,21:1
5Mesoporous solid acid catalysts of sulfated zirconia/SBA - 15 derived from a vapor - induced hydrolysis route 显示文摘Chang Binbin Fu Jie Tian Yanlong 2012Applied Catalysis A: General2012,437,:1
6Macro-superlubricity in sputtered MoS_(2)-based films by decreasing edge pinning effect显示文摘To date,MoS_(2) can only be achieved at microscale.Edge pinning effect caused by structure defects is the most obvious barrier to expand the size of structural superlubricity to macroscale.Herein,we plan to pin edge planes of MoS_(2) with nanospheres,and then the incommensurate structure can be formed between adjacent rolling nanoparticles to reduce friction.The sputtered MoS_(2) film was prepared by the physical vapor deposition(PVD)in advance.Then enough Cu_(2)O nanospheres(~40 nm)were generated in situ at the edge plane of MoS_(2) layers by liquid phase synthesis.An incommensurate structure(mismatch angle(θ)=8°)caused by MoS_(2) layers was formed before friction.The friction coefficient of the films(5 N,1,000 r/min)was~6.0×10^(−3) at the most.During friction,MoS_(2) layers pinned on numerous of Cu_(2)O nanoparticles reduced its edge pinning effect and decreased friction.Moreover,much more incommensurate was formed,developing macro-superlubricity.Chunmeng DONG Dong JIANG Yanlong FU Desheng WANG Qinqin WANG Lijun WENG Ming HU Xiaoming GAO Jiayi SUN 2024Friction2024,12,1:0
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