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5篇 您的检索式:作者名="DiWang"
    题名 作者 年代 出处 被引量
1Involvement of hydrogen peroxide and nitric oxide in salt resistance in the calluses from Populus euphratica显示文摘FENGZHANG YUPINGWANG YINGLIYANG HAOWU DIWANG JIANQUANLIU 2007Plant, Cell & Environment2007,,7:1
2Stimuli-Responsive FluorescentPoly(N-isopropylacrylamide) Microgels Labeled with Phenylboronic AcidMoieties as Multifunctional Ratiometric Probes for Glucose and Temperatures显示文摘DiWang* Tao Liu Jun Yin 2011Macromolecules2011,44,:1
3Quick Locating Algorithm for Turning Points in Discrete Point Set of Curve显示文摘By using analytic geometric method, a new algorithm is advanced on quick locating for turning points in discrete point set of plane curve. The algorithm is simple in structure and has high computation efficiency, and can quickly locate for turning points in discrete point set of plane parameter curve as well.BingtuanWang DiWang LichengChen 2004Journal of Systems Science and Information2004,2,4:0
4由长链醇选择性氧化制备香料(英文)显示文摘The activity and the selectivity of Ru and Pt based carbon catalysts in the selective oxidation of long-chain aliphatic alcohols (C8, C10, C12) have been investigated. Ru/AC and Pt/AC always showed good initial activity, however deactivation phenomena rapidly depressed the catalytic per-formance of the catalysts. These phenomena can be limited by modification of Ru/AC and Pt/AC with Au improving the durability of the catalyst. Ru/AC and AuRu/AC showed good selectivity to the corresponding aldehyde (>95%) making these catalysts promising for fragrances manufacturing. The advantage in using Au modified catalyst lies on the easier regeneration procedure com-pared to the one necessary for Ru/AC. Pt /AC and AuPt/AC showed a lower selectivity to aldehyde promoting the formation of the acid and the ester formation respectively. The addition of water in the solvent system speeds up the reaction rate but drastically decreased the selectivity to aldehyde especially in the case of Pt based catalysts.AlbertoVilla CarineE-Chan-Thaw MarcoSchiavoni SebastianoCampisi DiWang Laura Pratia 2014催化学报2014,35,6:0
5Graphitized Cu-β-cyclodextrin polymer driving an efficient dual-reaction-center Fenton-like process by utilizing electrons of pollutants for water purification显示文摘Excessive consumption of energy and resources is a major challenge in wastewater treatment.Here,a novel heterogeneous Fenton-like catalyst consisting of Cu-doped graphenelike catalysts (Cu-GCD NSs) was first synthesized by an enhanced carbothermal reduction of β-cyclodextrin (β-CD).The catalyst exhibits excellent Fenton-like catalytic activity for the degradation of various pollutants under neutral conditions,accompanied by low H_(2)O_(2)consumption.The results of structural characterization and theoretical calculations confirmed that the dual reaction centers (DRCs) were constructed on Cu-GCD NSs surface through C-O-Cu bonds supported on zero-valent copper species,which play a significant role in the high-performance Fenton-like reaction.The pollutants that served as electron donors were decomposed in the electron-poor carbon centers,whereas H_(2)O_(2)and dissolved oxygen obtained these electrons in the electron-rich Cu centers through C-O-Cu bonds,thereby producing more active species.This study demonstrates that the electrons of pollutants can be efficiently utilized in Fenton-like reactions by DRCs on the catalyst surface,which provides an effective strategy to improve Fenton-like reactivity and reduce H_(2)O_(2)consumption.Weixiang Liao Lai Lyu DiWang Chun Hu Tong Li 2023Journal of Environmental Sciences2023,,4:0
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