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7篇 您的检索式:作者名="WEI Gaoling"
    题名 作者 年代 出处 被引量
1Nanoscale zero-valent iron supported on biochar for the highly efficient removal of nitrobenzene显示文摘The application of nanoscale zero-valent iron (nZVI) in the remediation of contaminated groundwater or wastewater is limited due to its lack of stability, easy aggregation and iron leaching. To address this issue, nZVI was distributed on oak sawdust-derived biochar (BC) to obtain the nZVI/BC composite for the highly efficient reduction of nitrobenzene (NB). nZVI, BC and nZVI/BC were characterized by scanning electron microscopy (SEM), X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). For nZVI/BC, nZVI particles were uniformly dispersed on BC. nZVI/BC exhibited higher removal efficiency for NB than the simple summation of bare nZVI and BC. The removal mechanism was investigated through the analyses of UV-Visible spectra, mass balance and XPS. NB was quickly adsorbed on the surface of nZVI/BC, and then gradually reduced to aniline (AN), accompanied by the oxidation of nZVI to magnetite. The effects of several reaction parameters, e.g., NB concentration, reaction pH and nZVI/BC aging time, on the removal of NB were also studied. In addition to high reactivity, the loading of nZVI on biochar significantly alleviated Fe leaching and enhanced the durability of nZVI.Gaoling Wei Jinhua Zhang Jinqiu Luo Huajian Xue Deyin Huang Zhiyang Cheng Xinbai Jiang 2019Frontiers of Environmental Science & Engineering2019,13,4:3
2High-mobility air-stable n-type field-effect transistors based on large-area solution-processed organic single- crystal arrays显示文摘处理答案的 n 类型器官的半导体 micro/nanocrystals (OSMC ) 是为发展的基本元素便宜,大区域,并且所有器官的 logic/complementary 电路。然而,空气马厩的开发,为认识到高效的设备的高度排列的 n 隧道 OSMC 数组在他们的 p 隧道对应物后面远落后。此处,我们在场为大规模、处理答案的制造的一个简单一步舞斜坡涂层方法高度排列了,空气马厩, n 隧道塑造带子的单人赛水晶的 N, N 二度(2-phenylethyl )-perylene-3,4:9,10-tetracarboxylic diimide (BPE-PTCDI ) 数组。底层上的条纹被发现为大区域的亚微米带子数组的形成关键的斜坡和有图案的光致抗蚀剂(PR ) 。BPE-PTCDI 亚微米带子的宽度和厚度能被控制答案集中以及斜坡角度细微地调节。产生 BPE-PTCDI 亚微米带子数组拥有最佳电子活动性直到 2.67 厘米 2? 楷桴琠敨戠慩? 潶瑬条吗?Liang Wang Xiujuan Zhang Gaole Dai Wei Deng Jiansheng Jie Xiaohong Zhang 2018Nano Research2018,11,2:3
3Effect of binders on microstructure and photo electrochemical properties of the TiO2 film photoelectrodes显示文摘Wu Wei Zhao Gaoling Hsn Gaorong 2007Materials Letters2007,61,:1
4Artificial Intelligence in Pharmaceutical Sciences显示文摘Drug discovery and development affects various aspects of human health and dramatically impacts the pharmaceutical market.However,investments in a new drug often go unrewarded due to the long and complex process of drug research and development(R&D).With the advancement of experimental technology and computer hardware,artificial intelligence(AI)has recently emerged as a leading tool in analyzing abundant and high-dimensional data.Explosive growth in the size of biomedical data provides advantages in applying AI in all stages of drug R&D.Driven by big data in biomedicine,AI has led to a revolution in drug R&D,due to its ability to discover new drugs more efficiently and at lower cost.This review begins with a brief overview of common AI models in the field of drug discovery;then,it summarizes and discusses in depth their specific applications in various stages of drug R&D,such as target discovery,drug discovery and design,preclinical research,automated drug synthesis,and influences in the pharmaceutical market.Finally,the major limitations of AI in drug R&D are fully discussed and possible solutions are proposed.Mingkun Lu Jiayi Yin Qi Zhu Gaole Lin Minjie Mou Fuyao Liu Ziqi Pan Nanxin You Xichen Lian Fengcheng Li Hongning Zhang Lingyan Zheng Wei Zhang Hanyu Zhang Zihao Shen Zhen Gu Honglin Li Feng Zhu 2023Engineering2023,,8:1
5Organophosphorus flame retardants and plasticizers: sources, occurrence, toxicity and human exposure 显示文摘WEI Gaoling LI Dingqiang ZHUO Muning 2015Environmental Pollution2015,196,:1
6Microstructure and Mechan- ical Properties of Yttriast Abilized Zirconia Coatings Pre- pared by Plasmas Pray Physical Vapor Deposition 显示文摘GAOL H GUO H B WEI L L 2015Ce- ramics International2015,41,7:1
7Controlled Growth of Large-Area Aligned Single-Crystalline Organic Nanoribbon Arrays for Transistors and Light-Emitting Diodes Driving显示文摘Organic field-effect transistors(OFETs) based on organic micro-/nanocrystals have been widely reported with charge carrier mobility exceeding 1.0 cm^2V^(-1)s^(-1), demonstrating great potential for high-performance, low-cost organic electronic applications. However, fabrication of large-area organic micro-/nanocrystal arrays with consistent crystal growth direction has posed a significant technical challenge. Here, we describe a solution-processed dip-coating technique to grow large-area, aligned 9,10-bis(phenylethynyl) anthracene(BPEA) and 6,13-bis(triisopropylsilylethynyl) pentacene(TIPSPEN) single-crystalline nanoribbon arrays. The method is scalable to a 5 9 10 cm^2 wafer substrate, with around 60% of the wafer surface covered by aligned crystals. The quality of crystals can be easily controlled by tuning the dip-coating speed. Furthermore, OFETs based on well-aligned BPEA and TIPS-PEN single-crystalline nanoribbons were constructed.By optimizing channel lengths and using appropriate metallic electrodes, the BPEA and TIPS-PEN-based OFETs showed hole mobility exceeding 2.0 cm^2V^(-1)s^(-1)(average mobility 1.2 cm^2V^(-1)s^(-1)) and 3.0 cm^2V^(-1)s^(-1)(average mobility2.0 cm^2V^(-1)s^(-1)), respectively. They both have a high on/off ratio(I_(on)/I_(off))>10~9. The performance can well satisfy the requirements for light-emitting diodes driving.Wei Wang Liang Wang Gaole Dai Wei Deng Xiujuan Zhang Jiansheng Jie Xiaohong Zhang 2017Nano-Micro Letters2017,9,4:1
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