首頁 > 專家說

催化劑研究方面比較好的導(dǎo)師?

來源:新能源網(wǎng)
時(shí)間:2024-08-17 10:59:25
熱度:

催化劑研究方面比較好的導(dǎo)師?【專家解說】:Catalysis Research of Relevance to Carbon Management: Progress, Chall

【專家解說】:Catalysis Research of Relevance to Carbon Management: Progress, Challenges, and Opportunities Hironori Arakawa, Michele Aresta,....Tobin J. Marks Chem. Rev. 2001, 101, 953-996此篇作者基本匯集了世界上一半的著名催化科學(xué)家,必讀! Organic Reactions at Well-Defined Oxide Surfaces Mark A. Barteau特拉華大學(xué)的催化牛人 Chem. Rev. 1996, 96, 1413-1430 ACID-base REACTIONS ON SOLID SURFACES: THE REACTIONS OF HCOOH, H&O, AND HCOOCH3 WITH OXYGEN ON Ag (110) M.A. BARTEAU, M. BOWKER and R.J. MADIX三位牛人的固體表面酸堿反應(yīng) Surface Science 94 (1980) 303-322 Chemical Structures and Performance of Perovskite Oxides M. A. Pen and J. L. G. Fierro關(guān)于鈣鈦礦氧化物的牛人綜述 Chem. Rev. 2001, 101, 1981-2017 The Binary Rare Earth Oxides二元稀土氧化物 Gin-ya Adachi* and Nobuhito Imanaka Chem. Rev. 1998, 98, 1479-1514 Oxygen vacancies in transition metal and rare earth oxides: Current state of understanding and remaining challenges過渡金屬和稀土氧化物的氧空穴,很著名的綜述 M. Veronica Ganduglia-Pirovano, Alexander Hofmann, Joachim Sauer Surface Science Reports 62 (2007) 219–270 **的一句名言“中東有石油,中國(guó)有稀土?!? Classical kinetics of catalytic reactions Gérald Djéga-Mariadassou and Michel Boudart Journal of Catalysis 216 (2003) 89–97經(jīng)典的機(jī)理與催化反應(yīng),必讀! Role of the Crystal-Field Theory in Determining the Structures of Spinels Jeremy K. Burdett 伯德特金屬固體物理 J. Am. Chem. Soc. 1982, 104, 92-95 Hideshi Hattori服部英教授的多相堿催化3篇綜述,填補(bǔ)田部教授的固體酸催化 Heterogeneous Basic Catalysis多相堿催化唯一Chem Rev綜述 Chem. Rev. 1995, 95. 537-550 CATALYSIS BY BASIC metaL OXIDES金屬氧化物的堿性催化 Materials Chemistry and Physics, 18 (1988) 533-552 Solid base catalysts: generation of basic sites and application to organic synthesis Applied Catalysis A: General 222 (2001) 247–259固體堿催化劑 Solid base catalysts for the synthesis of fine chemicals Yoshio Ono Journal of Catalysis 216 (2003) 406–415 前面講過Robert J. Davis的一篇在J Catal上的分子篩堿催化綜述 “Intelligent” reforming catalysts: Trace noble metal-doped Ni/Mg(Al)O derived from hydrotalcites Katsuomi Takehira 必將風(fēng)靡的智能重整催化劑 Journal of Natural Gas Chemistry 18(2009) 237–259 SURFACE REConSTRUCTION AND CATALYSIS G. A. Somorjai Annu. Rev. Phys. Chern. 1994.45: 721-51表面重建與催化 High technology catalysts towards 100% selectivity Fabrication, characterization and reaction studies G.A. Somorjai*, R.M. Rioux Catalysis Today 100 (2005) 201–215高選擇性的研究 POTENTIAL ENERGY SURFACES FOR CHEMICAL REACTIONS AT SOLID SURFACES Barbara J. Garrison and Deepak Srivastava在固體表面化學(xué)反應(yīng)的勢(shì)能面 Annu. Rev. Phys. Chern. 1995.46: 373-94 Elementary Processes at Gas/metal Interfaces By Gerhard Ertl Angew Chem IE (1976)金屬界面 Monitoring in situ catalytically active states of Ru catalysts for different methanol oxidation pathways R. Blume…R. Schlogl…and M. Kiskinova*弗里茨哈珀所的釕基催化 Phys. Chem. Chem. Phys., 2007, 9, 3648–3657 Mechanism of HCl oxidation (Deacon process) over RuO2 Núria López...Javier Pérez-Ramírez 牛人JPR教授在制氯的綜述 Journal of Catalysis 255 (2008) 29–39 Substitutional alloy of Ce and Al Qiao-Shi Zeng…鈰鋁結(jié)晶石,浙大去年很有影響力的一篇 PNAS February 24, 2009 vol. 106 no. 8 2515–2518 Deactivation of metal catalysts in liquid phase organic reactions Michèle Besson, Pierre Gallezot 液相有機(jī)反應(yīng)中金屬催化劑的失活 Catalysis Today 81 (2003) 547 Process options for converting renewable feedstocks to bioproducts Pierre Gallezot 可再生的原料 Green Chem., 2007, 9, 295–302 Catalytic Conversion of Biomass: Challenges and Issues Pierre Gallezot 生物質(zhì)催化轉(zhuǎn)化 ChemSusChem 2008, 1, 734 – 737 New possibilities and opportunities for basic and applied research on selective oxidation by solid catalysts: an overview G. Centia,*, M. Misonob 固體催化劑的選擇性氧化綜述 Catalysis Today 41 (1998) 287 The Desorption of Alcohols from metal Oxides. D. J. WHEELER…醇在金屬氧化物表面的脫附 J Catal, 1960 Research Perspectives during 40 Years of the Journal of Catalysis Frank S. Stone 催化學(xué)報(bào)40年歷史的總結(jié) Journal of Catalysis 216 (2003) 2–11 Environmental catalysis François Garin 環(huán)境催化綜述 Catalysis Today 89 (2004) 255–268 Catalytic conversion of methane to more useful chemicals and fuels: a challenge for the 21st century Jack H. Lunsford 甲烷的催化轉(zhuǎn)化展望 Catalysis Today 63 (2000) 165–174 Natural gas chemical transformations: The path to refining in the future Eduardo Falabell, Sousa-Aguiar…天然氣的未來 Catalysis Today 101 (2005) 3–7 Characterization of zeolite basicity using probe molecules by means of infrared and solid state NMR spectroscopies固體核磁表征分子篩的堿性 Manuel Sanchez-Sanchez, Teresa Blasco * Catalysis Today 143 (2009) 293–301 Transition metal phosphide hydroprocessing catalysts: A review S. Ted Oyama…加氫催化綜述 Catalysis Today 143 (2009) 94–107 Concepts in Theoretical Heterogeneous Catalytic Reactivity Rutger A. Van Santen; Matthew Neurock大牛的多相催化轉(zhuǎn)化的理論概念 Catalysis Reviews, 37: 4, 557 Hydrotalcite-like anionic clays in catalytic organic reactions Bert F. Sels; Dirk E. De Vos; Pierre A. Jacobs Catalysis Reviews, 43: 4, 443 水滑石類陰離子粘土的有機(jī)催化 Methane Oxyforming for Synthesis Gas Production Andrew P. E. York; Tian-cun Xiao; Malcolm L. H. Green… Catalysis Reviews, 49:4, 511 – 560 牛津甲烷的利用 Precious metal Catalysts Supported on Ceramic and metal Monolithic Structures for the Hydrogen Economy Robert J. Farrauto…氫能領(lǐng)域的負(fù)載型貴金屬催化劑 Catalysis Reviews, 49:2, 141 - 196 Catalytic Production of Liquid Fuels from Biomass-Derived Oxygenated Hydrocarbons: Catalytic Coupling at Multiple Length Scales 生物質(zhì)能 Dante A. Simonetti; James A. Dumesic Catalysis Reviews, 51: 3, 441 Gas Conversion to Liquid Fuels and Chemicals: The Methanol Route-Catalysis and Processes Development Touhami Mokrani; Mike Scurrell 甲醇經(jīng)濟(jì),氣轉(zhuǎn)液 Catalysis Reviews, 51: 1, 1 Recent Advances in the Liquid-Phase Synthesis of metal Nanostructures with Controlled Shape and Size for Catalysis 液相中形貌尺寸可控合成納米金屬 Natalia Semagina; Lioubov Kiwi-Minsker Catalysis Reviews, 51: 2, 147 Selective Catalysis of Lactic Acid to Produce Commodity Chemicals Yongxian Fan; Chunhui Zhou; Xiaohong Zhu 浙工大去年很著名的乳酸催化轉(zhuǎn)化綜述 Catalysis Reviews, 51: 3, 293 Water Gas Shift Catalysis Chandra Ratnasamy; Jon P. Wagner 水汽轉(zhuǎn)換反應(yīng) Catalysis Reviews, 51: 3, 325 Aromatic Hydrogenation Catalysis: A Review Antonymuthu Stanislaus; Barry H. Cooper 芳烴的加氫催化 Catalysis Reviews, 36: 1, 75 Enhanced ethanol production inside carbon-nanotube reactors containing catalytic particles XIULIAN PAN…AND XINHE BAO* 包院士的碳納米管催化綜述 nature materials 石墨烯的化學(xué)研究進(jìn)展 傅強(qiáng), 包信和 科學(xué)通報(bào)2009 年第 54 卷第 18 期: 2657 ~ 2666 Chem Rev上關(guān)于多相催化著名的一期???Special Issue of ‘‘Introduction: Heterogeneous Catalysis’’ Volume 95, Number 3 May 1995 Methods for Preparation of Catalytic Materials 催化材料的制備,必讀! James A. Schwarz, Cristian Contescu and Adriana Contescu Oscillatory Kinetics in Heterogeneous Catalysis Ronald lmbihl and Gerhard Ertl* Turnover Rates in Heterogeneous Catalysis 最近被狂頂?shù)腡OF綜述,殊不知該期篇篇經(jīng)典 M. Boudart Supported metal Clusters: Synthesis, Structure, and Catalysis 牛人的催化材料綜述 B. C. Gates Spillover in Heterogeneous Catalysis 多相催化的溢流 W. Curtis Conner, Jr., J and John L. Falconer Modeling the Kinetics of Heterogeneous Catalysis 模擬和機(jī)理 H. Chuan Kang*, W. H. Weinberg* 推薦幾期其他雜志多相催化相關(guān)的專刊: Special Issue of ‘‘IB metals’’ Copper, Silver and Gold in Catalysis Catalysis Today 36 (1997) Special Issue of ‘‘Recent advances in catalytic production of hydrogen from renewable sources’’ Catalysis Today 129 (2007) 263–264 Special Issue of ‘‘Chemistry and physics of metal oxide nanostructures’’ Phys. Chem. Chem. Phys., 2009, 11, 3607 Special Issue of ‘‘Catalytic Synthesis and Utilization of Alcohols’’ Catalysis Today 147 (2009) 61 德國(guó)馬普-哈伯研究所的Hans-Joachim Freund教授,有實(shí)力N/S但據(jù)說號(hào)稱絕不發(fā)表N/S的牛人 Surface chemistry of carbon dioxide 最早拜讀Freund教授的文章 Surface Science Reports 25 (1996) 225-273 Molecular beam experiments on model catalysts Surface Science Reports 57 (2005) 157–298 Photochemistry on metal Nanoparticles Chem. Rev. 2006, 106, 4301-4320 Gold Supported on Thin Oxide Films: From Single Atoms to Nanoparticles Vol. 41, No. 8 August 2008 949-956 ACCOUNTS OF CHEMICAL RESEARCH Oxide ultra-thin films on metals: new materials for the design of supported metal catalysts Chem. Soc. Rev., 2008, 37, 2224–2242 美國(guó)德州A&M大學(xué)化學(xué)系的D. Wayne Goodman教授,表面化學(xué)及催化牛人 Model Catalytic Studies over metal Single Crystals Acc. Chem. Res. 1984, 17, 194-200 Catalysis: New Perspectives from Surface Science 科學(xué)的展望 SCIENCE, VOL. 236 Model Studies in Catalysis Using Surface Science Probes 又是那一期著名的文章之一 Chem. Rev. 1995, 95, 523-536 metal Oxide Surfaces and Their Interactions with Aqueous Solutions and Microbial Organisms Chem. Rev. 1999, 99, 77-174 High-pressure catalytic reactions over single-crystal metal surfaces 表面催化必讀經(jīng)典 Surface Science Reports 14 (1991) 1-107 Chemical and Electronic Properties of Bimetallic Surfaces 雙金屬表面 Acc. Chem. Res., Vol. 28, No. 12, 1995 Catalytically Active Gold: From Nanoparticles to Ultrathin Films Acc. Chem. Res. 2006, 39, 739-746 Precious little catalyst 前面介紹過的NATURE, 2008 UCR的Francisco Zaera教授 Infrared and molecular beam studies of chemical reactions on solid surfaces International Reviews in Physical Chemistry, 21: 3, 433 Regio-, Stereo-, and Enantioselectivity in Hydrocarbon Conversion on metal Surfaces Acc. Chem. Res. 1152-1160 August 2009 Vol. 42, No. 8 碳水化合物 Kinetics of Chemical Reactions on Solid Surfaces: Deviations from Conventional Theory Acc. Chem. Res. 2002, 35, 129-136 固體表面的催化 Organic chemistry on solid surfaces馬博士的文章 Surface Science Reports 61 (2006) 229–281 瑞士蘇黎世聯(lián)邦理工的Alfons Baiker教授 Aerogels in Catalysis Catalysis Reviews, 37: 4, 515 — 556 Supercritical Fluids in Heterogeneous Catalysis Chem. Rev. 1999, 99, 453-473 Utilization of carbon dioxide in heterogeneous catalytic synthesis² Appl. Organometal. Chem. 14, 751–762 (2000) Heterogeneous Enantioselective Hydrogenation over Cinchona Alkaloid Modified Platinum: Mechanistic Insights into a Complex Reaction Acc. Chem. Res. 2004, 37, 909-917 Oxidation of Alcohols with Molecular Oxygen on Solid Catalysts Chem. Rev. 2004, 104, 3037-3058 Catalytic Oxidations in Dense Carbon Dioxide Chem. Rev. 2009, 109, 2409–2454 拜科教授的綜述值得一讀 NOx Storage-Reduction Catalysis: From Mechanism and Materials Properties to Storage-Reduction Performance Chem. Rev. 2009, 109, 4054–4091
  1. 宇宙飛船上利用氫氣和氧氣在催化劑作用下反映作燃料電池的化學(xué)方程式是啥呀?
    2024-08-17
  2. 氫能是理想的清潔能源。科學(xué)家正在研究在使用催化劑和光照條件下將水分解得到氫氣的方法,該化學(xué)方程式是
    2024-08-17
  3. 合成氨為有效提高氫氣轉(zhuǎn)化率,實(shí)際生產(chǎn)中宜采取的措施有 A減低溫度 B最適合催化劑活性的適當(dāng)高溫
    2024-08-17
  4. 燃料電池 催化劑
    2024-08-17
  5. 宇宙 飛船上利用氫氣、氧氣在催化劑作用下反應(yīng)作燃料電池
    2024-08-17
  6. 一氧化碳和氫氣在催化劑下反應(yīng)能生成C5H10,問方程式?
    2024-08-17
  7. 石油催化劑
    2024-08-17
  8. 二氧化碳和氫氣在催化劑及加熱的條件下可轉(zhuǎn)化為水和甲烷,寫出此反應(yīng)的化學(xué)方程式,計(jì)算若66g二氧化碳發(fā)生
    2024-08-17
  9. 在有機(jī)反應(yīng)中,與氫氣反應(yīng)都要催化劑加熱嗎?
    2024-08-17
  10. 乙烯與氫氣加成為什么要加熱、加催化劑
    2024-08-17
  11. 第三屆能源與環(huán)境科學(xué)研究進(jìn)展國(guó)際學(xué)術(shù)會(huì)議可靠嗎
    2024-08-17
  12. 將氫氣和氮?dú)庠诟邷?、高壓和催化劑的條件下合成氨。反應(yīng)的化學(xué)方程式為——在潮濕的空氣里鐵表面吸附了一
    2024-08-17
  13. 二氧化碳若合理利用,是一種與水一樣重要的原料.最近,美國(guó)研究人員利用鎳和鈀作催化劑,將二氧化碳轉(zhuǎn)化
    2024-08-17
  14. 二氧化碳若合理利用,是一種與水一樣重要的原料.Ⅰ、最近,美國(guó)研究人員利用鎳和鈀作催化劑,將二氧化碳
    2024-08-17
  15. 二氧化碳若合理利用,是一種與水一樣重要三原料.最近,美國(guó)研究人員利用鎳和鈀作催化劑,將二氧化碳轉(zhuǎn)化
    2024-08-17