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29篇 您的检索式:作者名="Lu Shaowei"
    题名 作者 年代 出处 被引量
1Artificial Structural Colors and Applications显示文摘Structural colors are colors generated by the interaction between incident light and nanostructures.Structural colors have been studied for decades due to their promising advantages of long-term stability and environmentally friendly properties compared with conventional pigments and dyes.Previous studies have demonstrated many artificial structural colors inspired by naturally generated colors from plants and animals.Moreover,many strategies consisting of different principles have been reported to achieve dynamically tunable structural colors.Furthermore,the artificial structural colors can have multiple functions besides decoration,such as absorbing solar energy,anti-counterfeiting,and information encryption.In the present work,we reviewed the typical artificial structural colors generated by multilayer films,photonic crystals,and metasurfaces according to the type of structures,and discussed the approaches to achieve dynamically tunable structural colors.Zhiyi Xuan Junyu Li Qingquan Liu Fei Yi Shaowei Wang Wei Lu 2021The Innovation2021,2,1:3
2Diversity, novelty, antimicrobial activity, and new antibiotics of cultivable endophytic actinobacteria isolated from psammophytes collected from Taklamakan Desert显示文摘Three hundred and twenty endophytic actinobacterial strains were isolated from psammophytes collected from Taklamakan Desert and identified. Among them, three strains already had been identified as new species of two genera and sixteen isolates showed relatively low 16 S rRNA similarities < 98.6% to validly described species. Seventy-five of the isolates were selected as representative strains to screen antibacterial activity and mechanism. Forty-seven strains showed antagonistic activity against at least one of the indicator bacteria. Two Streptomyces strains produced bioactive compounds inducing DNA damage, and two Streptomyces strains produced bioactive compounds with inhibitory activity on protein biosynthesis. Notably, the strain Streptomyces sp. 8P21H-1 that demonstrated both strong antibacterial activity and inhibitory activity on protein biosynthesis was prioritized for exploring new antibiotics.Under the strategy of integrating genetics-based discovery program and MS/MS-based molecular networking, two new streptogramin-type antibiotics, i.e., acetyl-griseoviridin and desulphurizing griseoviridin, along with known griseoviridin, were isolated from the culture broth of strain 8P21H-1. Their chemical structures were determined by HR-MS, and 1D and 2D NMR. Desulphurizing griseoviridin and griseoviridin exhibited antibacterial activities by inhibiting translation.Ting Wang Feina Li Qinpei Lu Gang Wu Zhongke Jiang Shaowei Liu Xugela Habden Elizaveta A.Razumova Ilya A.Osterman Petr V.Sergiev Olga A.Dontsova Xinxin Hu Xuefu You Chenghang Sun 2021Journal of Pharmaceutical Analysis2021,11,2:2
3Coupled Tamm plasmon polaritons induced narrow bandpass filter with ultra-wide stopband显示文摘Narrow bandpass filters(NBPFs)play important roles in optics,such as quantum communication,spectrometer,and wavelength division multiplexing.However,the stopband and restraint ability of traditional NBPFs is limited.In this article,a coupled Tamm plasmon polaritons(TPPs)induced transmission theory has been proposed to design high-efficiency NBPFs with ultra-wide deep stopbands.An NBPF at 1.55 μm has been experimentally demonstrated with full width at half maximum(FWHM)of 10 nm and stopband ranging from 0.2 to 25 μm which is 62 times wider than that of traditional ones.Furthermore,the restraint depth of the stopband reaches 0.03%,which is only 1/20 of a traditional filter with the same FWHM.Its advantage in restraining ambient light over traditional ones has also been demonstrated with an InGaAs infrared detector.It provides a very powerful way to capture specific narrowband optical signals from ultra-wide strong ambient light,especially useful for daytime quantum communications.Qingquan Liu Xinchao Zhao Chenlu Li Xinglei Zhou Yu Chen Shaowei Wang Wei Lu 2022Nano Research2022,15,5:2
4The Fracture of Concrete Based on Acoustic Emission显示文摘HU Shaowei LU Jun FAN Xiangqian 2011Advanced Materials Research2011,8081,:1
5Evaluation on concrete fracture procedure based on acoustic emission parameters 显示文摘HU Shaowei LU Jun FEIPENG Xiao 2011Journal of Testing and Evaluation2011,39,2:1
6显示文摘 Lu Wei Li Ning 2002Materials Research Bulletin2002,37,:1
7Strengthen and real-time monitoring of RC beam using 'intelligent' CFRP with embeded FBG sensors显示文摘Lu Shaowei Xie Huaiqin 2007Construction and Building Materials2007,21,9:1
8High-Efficiency Intracavity Continuous-Wave Green-Light Generation by Quasiphase Matching in a Bulk Periodically Poled MgO: LiNbO 3 Crystal显示文摘Shaowei Chu Ying Zhang Bin Wang Yong Bi Yalin Lu 2008Advances in OptoElectronics2008,,:1
9Fabrication and characterization of polymer composites surface coated F e3 O 4/ MWCNT s hybrid buckypaper as a novel microwave‐absorbing structure显示文摘Shaowei Lu Keming Ma Xiaoqiang Wang Xuhai Xiong Weikai Xu Caixia Jia 2015J. Appl. Polym. Sci2015,,:1
10Strengthen and real-time monitoring of RC beam using 'intelligent' CFRP with embedded FBG sensors显示文摘Lu Shaowei Xie Huaiqin 2007Construction and Building Materials2007,21,9:1
11Study on characteristics of acoustic emission property in the normal concrete fracture test 显示文摘Hu Shaowei Lu Jun Zhong Xiaoqing 2011Advanced Materials Research2011,,:1
12The fracture of concrete based on acoustic emission 显示文摘Hu Shaowei Lu Jun Fan Xiangqian 2011Advanced Materials Research2011,8081,:1
13Concrete damage constitutive relation based on characteristic parameters of acoustic emission显示文摘HU Shaowei LU Jun FAN Xiangqian 2012Applied Me- chanics and Materials2012,,157158:1
14Experimental exploration of five-qubit quantum error-correcting code with superconducting qubits显示文摘Quantum error correction is an essential ingredient for universal quantum computing.D espite tremendous experimental efforts in the study of quantum error correction,to date,there has been no demonstration in the realis ation of universal quantum error-correcting code,with the subsequent verification of all key features including the identification of an arbitrary physical error,the capability for transversal manipulation of the logical state and state decoding.To address this challenge,we experimentally realise the [5,1,3]code,the so-called smallest perfect code that permits corrections of generic single-qubit errors.In the experiment,having optimised the encoding circuit,we employ an array of superconducting qubits to realise the [5,1,3] code for several typical logical states including the magic state,an indispensable resource for realising non-Clifford gates.The encoded states are prepared with an average fidelity of 57.1(3)% while with a high fidelity of 98.6(1)% in the code space.Then,the arbitrary single-qubit errors introduced manually are identified by measuring the stabilisers.We further implement logical Pauli operations with a fidelity of 97.2(2)% within the code space.Finally,we realise the decoding circuit and recover the input state with an overall fidelity of 74.5(6)%,in total with 92 gates.Our work demonstrates each key aspect of the [5,1,3] code and verifies the viability of experimental realisation of quantum error-correcting codes with superconducting qubits.Ming Gong Xiao Yuan Shiyu Wang Yulin Wu Youwei Zhao Chen Zha Shaowei Li Zhen Zhang Qi Zhao Yunchao Liu Futian Liang Jin Lin Yu Xu Hui Deng Hao Rong He Lu Simon C.Benjamin Cheng-Zhi Peng Xiongfeng Ma Yu-Ao Chen Xiaobo Zhu Jian-Wei Pan 2022National Science Review2022,9,1:1
15Fabrication of catalytically active Au/Pt/Pd trimetallic nanoparticles by rapid injection of NaBH4显示文摘Haijun Zhang Lilin Lu Yingnan Cao Shuang Du Zhong Cheng Shaowei Zhang 2014Materials Research Bulletin2014,49,1:1
16Preparation, magnetism and microwave adsorption performance of ultrathin Fe3Q/carbon nanotube sandwich buckypaper 显示文摘Lu Shaowei Xu Weikai Xiong Xuhai 2014Journal of Alloys and Com- pounds2014,606,:1
17Properties of VO 2 thin film prepared with precursor VO(acac) 2显示文摘Mei Pan Hongmei Zhong Shaowei Wang Jie Liu Zhifeng Li Xiaoshuang Chen Wei Lu 2004Journal of Crystal Growth2004,,1:1
18Oxygen Reduction Reaction Catalyzed by Carbon-Supported Platinum Few-Atom Clusters:Significant Enhancement by Doping of Atomic Cobalt显示文摘Oxygen reduction reaction(ORR)plays an important role in dictating the performance of various electrochemical energy technologies.As platinum nanoparticles have served as the catalysts of choice towards ORR,minimizing the cost of the catalysts by diminishing the platinum nanoparticle size has become a critical route to advancing the technological development.Herein,first-principle calculations show that carbon-supported Pt9 clusters represent the threshold domain size,and the ORR activity can be significantly improved by doping of adjacent cobalt atoms.This is confirmed experimentally,where platinum and cobalt are dispersed in nitrogen-doped carbon nanowires in varied forms,single atoms,few-atom clusters,and nanoparticles,depending on the initial feeds.The sample consisting primarily of Pt_(2~7)clusters doped with atomic Co species exhibits the best mass activity among the series,with a current density of 4:16Amg^(-1)_(Pt)at+0.85V vs.RHE that is almost 50 times higher than that of commercial Pt/C.Bingzhang Lu Qiming Liu Forrest Nichols Rene Mercado David Morris Ning Li Peng Zhang Peng Gao Yuan Ping Shaowei Chen 2020Research2020,,1:1
19Nanowrinkled Carbon Aerogels Embedded with FeN_(x) Sites as Effective Oxygen Electrodes for Rechargeable Zinc-Air Battery显示文摘Rational design of single-metal atom sites in carbon substrates by a flexible strategy is highly desired for the preparation of high-performance catalysts for metal-air batteries.In this study,biomass hydrogel reactors are utilized as structural templates to prepare carbon aerogels embedded with single iron atoms by controlled pyrolysis.The tortuous and interlaced hydrogel chains lead to the formation of abundant nanowrinkles in the porous carbon aerogels,and single iron atoms are dispersed and stabilized within the defective carbon skeletons.X-ray absorption spectroscopy measurements indicate that the iron centers are mostly involved in the coordination structure of FeN_(4),with a minor fraction(ca.1/5)in the form of FeN_(3)C.First-principles calculations show that the FeN_(x) sites in the Stone-Wales configurations induced by the nanowrinkles of the hierarchically porous carbon aerogels show a much lower free energy than the normal counterparts.The resulting iron and nitrogen-codoped carbon aerogels exhibit excellent and reversible oxygen electrocatalytic activity,and can be used as bifunctional cathode catalysts in rechargeable Zn-air batteries,with a performance even better than that based on commercial Pt/C and RuO_(2) catalysts.Results from this study highlight the significance of structural distortions of the metal sites in carbon matrices in the design and engineering of highly active single-atom catalysts.Ting He Bingzhang Lu Yang Chen Yong Wang Yaqiang Zhang John L.Davenport Alan P.Chen Chih-Wen Pao Min Liu Zhifang Sun Alexander Stram Alexander Mordaunt Jairo Velasco Jr Yuan Ping Yi Zhang Shaowei Chen 2019Research2019,,1:1
20Ultrafast Preparation of Nonequilibrium FeNi Spinels by Magnetic Induction Heating for Unprecedented Oxygen Evolution Electrocatalysis显示文摘Carbon-supported nanocomposites are attracting particular attention as high-performance,low-cost electrocatalysts for electrochemical water splitting.These are mostly prepared by pyrolysis and hydrothermal procedures that are time-consuming(from hours to days)and typically difficult to produce a nonequilibrium phase.Herein,for the first time ever,we exploit magnetic induction heating-quenching for ultrafast production of carbon-FeNi spinel oxide nanocomposites(within seconds),which exhibit an unprecedentedly high performance towards oxygen evolution reaction(OER),with an ultralow overpotential of only+260 mV to reach the high current density of 100 mA cm^(-2).Experimental and theoretical studies show that the rapid heating and quenching process(ca.10^(3)K s^(-1))impedes the Ni and Fe phase segregation and produces a Cl-rich surface,both contributing to the remarkable catalytic activity.Results from this study highlight the unique advantage of ultrafast heating/quenching in the structural engineering of functional nanocomposites to achieve high electrocatalytic performance towards important electrochemical reactions.Bingzhang Lu Qiming Liu Chunyang Wang Zaheer Masood David J.Morris Forrest Nichols Rene Mercado Peng Zhang Qingfeng Ge Huolin L.Xin Shaowei Chen 2022Research2022,,4:0
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