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1

Baker, R. T. K., 1938-, Murrell Larry L. 1942-, American Chemical Society Meeting, American Chemical Society. Division of Colloid and Surface Chemistry., and Symposium on New Catalytic Materials and Techniques (1989 : Miami Beach, Fla.), eds. Novel materials in heterogeneous catalysis. American Chemical Society, 1990.

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2

Baker, R. Terry K., and Larry L. Murrell, eds. Novel Materials in Heterogeneous Catalysis. American Chemical Society, 1990. http://dx.doi.org/10.1021/bk-1990-0437.

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3

Shirran, Colette. Novel sulfur ligands for palladium catalysis. University College Dublin, 1998.

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4

Cybulski, Andrzej, Jacob A. Moulijn, and Andrzej Stankiewicz, eds. Novel Concepts in Catalysis and Chemical Reactors. Wiley-VCH Verlag GmbH & Co. KGaA, 2010. http://dx.doi.org/10.1002/9783527630882.

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5

Bravo-Suárez, Juan J., Michelle K. Kidder, and Viviane Schwartz, eds. Novel Materials for Catalysis and Fuels Processing. American Chemical Society, 2013. http://dx.doi.org/10.1021/bk-2013-1132.

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6

Lakes, Aisling M. Novel diamine and phosphinamine ligands and their application in asymmetric catalysis. University College Dublin, 1997.

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7

Moulijn, Jacob A., Andrzej Cybulski, and Andrzej I. Stankiewicz. Novel concepts in catalysis and chemical reactors: Improving the efficiency for the future. Wiley-VCH, 2010.

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8

T, Andras Maria, Hepp Aloysius F, and United States. National Aeronautics and Space Administration., eds. Reactivity of [pi]-complexes of Ti, V, and Nb towards dithioacetic acid: Synthesis and structure of novel metal sulfur-containing complexes. National Aeronautics and Space Administration, 1990.

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9

T, Andras Maria, Hepp Aloysius F, and United States. National Aeronautics and Space Administration., eds. Reactivity of [pi]-complexes of Ti, V, and Nb towards dithioacetic acid: Synthesis and structure of novel metal sulfur-containing complexes. National Aeronautics and Space Administration, 1990.

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10

Philippou, A. Solid state NMR studies of zeolite catalysis and investigation of novel microporous titanosilicates. UMIST, 1995.

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11

1945-, İmamoğlu Yavuz, and Bencze L, eds. Novel metathesis chemistry: Well-defined initiator systems for specialty chemical synthesis, tailored polymers, and advanced material applications. Kluwer Academic Publishers, 2003.

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12

Butcher, Mark L. A study of some novel cationic complexes of the group 4 metals and their applications in Ziegler-Natta catalysis. typescript, 1994.

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13

Khan, Waheed. Novel mesoporous catalysts. UMIST, 1998.

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14

Schmitt, Maja. Novel homogeneous ziegler-natta catalysts. University of Birmingham, 1992.

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15

Nugent, Nicholas. Novel homogeneous ziegler-natta catalyst. University of Birmingham, 1995.

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16

Inokuma, Tsubasa. Development of Novel Hydrogen-Bond Donor Catalysts. Springer Japan, 2013. http://dx.doi.org/10.1007/978-4-431-54231-5.

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17

Atalay, Süheyda, and Gülin Ersöz. Novel Catalysts in Advanced Oxidation of Organic Pollutants. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-28950-2.

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18

Ottone, Carminna, Simelys Hernández, Marco Armandi, and Barbara Bonelli. Testing Novel Water Oxidation Catalysts for Solar Fuels Production. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-12712-1.

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19

Luceno, James. Catalyst (Star Wars): A Rogue One Novel. Del Rey, 2016.

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20

Ahuja, Vishal. Analysis of novel transition metals as catalysts for oxygen delignification. National Library of Canada, 2001.

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21

Ciric, Ana. How to utilize COb2s?: Studies of novel COb2 sreduction catalysts. Sweet Briar College], 2005.

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22

Ciric, Ana. How to utilize CO₂?: Studies of novel CO₂ reduction catalysts. Sweet Briar College], 2005.

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23

Noyori, Ryōji. Kenkyū wa mizumizushiku: Nōberu Kagakushō no kotoba. Nagoya Daigaku Shuppankai, 2002.

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24

Singh, Lakhveer, Durga Madhab Mahapatra, and Hong Liu, eds. Novel Catalyst Materials for Bioelectrochemical Systems: Fundamentals and Applications. American Chemical Society, 2020. http://dx.doi.org/10.1021/bk-2020-1342.

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25

Al-Turki, Turki Mohammad. Studies of novel Ziegler-Natta catalysts for the polymerisation of [alpha]-alkenes. University of Birmingham, 1988.

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26

Parry, John David. The preparation and characterisation of novel alloy catalysts for the hydrogenation of triglyceride oils. University of Birmingham, 1987.

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27

Grant, Kenneth Alan. The characterisation, and activity of Pt-Sn / Alumina catalysts prepared by a novel sol route. Brunel University, 1992.

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28

Govindarajan, Nirmala. The community catalyst: A novel inspired by the life experiences of a civil servant. Sapna, 2016.

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29

Wayman, Morris. Develop a novel biomass catalysed pretreatment and hydrolysis for cosolvent fuel butanol and ethanol fermentation. Morris Wayman Limited, 1987.

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30

Bravo-Suarez, Juan J., Viviane Schwartz, and Michelle K. Kidder. Novel Materials for Catalysis and Fuel Processing. Oxford University Press, Incorporated, 2014.

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31

Development Of Novel Hydrogenbond Donor Catalysts. Springer Verlag, Japan, 2012.

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32

Inokuma, Tsubasa. Development of Novel Hydrogen-Bond Donor Catalysts. Springer, 2013.

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33

Inokuma, Tsubasa. Development of Novel Hydrogen-Bond Donor Catalysts. Springer, 2015.

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34

Inokuma, Tsubasa. Development of Novel Hydrogen-Bond Donor Catalysts. Springer London, Limited, 2013.

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35

Frost, Christopher Gregory. Novel enantiopure ligands for asymmetric catalysis. 1994.

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36

Yang, Zhenyu, and Jinsheng Zhao, eds. Novel Nanomaterials for Energy Storage and Catalysis. MDPI, 2024. http://dx.doi.org/10.3390/books978-3-7258-0765-9.

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37

Petrosius, Steven C. Development and reactivity of novel heterogeneous catalysts for hydrocarbon conversions. 1992.

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38

Novel Synthetic Chemistry of Ureas and Amides Springer Theses. Springer, 2012.

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39

Novel Catalytic and Separation Processes Based on Ionic Liquids. Elsevier Science & Technology Books, 2017.

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40

Elliott, Mark Christopher. Transition metal catalysis: Application to the synthesis of novel heterocycles. 1994.

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41

Centi, Gabriele, Angelo Basile, Marcello De Falco, and Gaetano Iaquaniello. Catalysis, Green Chemistry and Sustainable Energy: New Technologies for Novel Business Opportunities. Elsevier, 2019.

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42

Centi, Gabriele, Angelo Basile, Marcello De Falco, and Gaetano Iaquaniello. Catalysis, Green Chemistry and Sustainable Energy: New Technologies for Novel Business Opportunities. Elsevier, 2019.

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43

Moulijn, Jacob A., Andrzej Cybulski, and Andrzej Stankiewicz. Novel Concepts in Catalysis and Chemical Reactors: Improving the Efficiency for the Future. Wiley & Sons, Incorporated, John, 2013.

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44

Moulijn, Jacob A., Andrzej Cybulski, and Andrzej Stankiewicz. Novel Concepts in Catalysis and Chemical Reactors: Improving the Efficiency for the Future. Wiley & Sons, Incorporated, John, 2011.

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45

Moulijn, Jacob A., Andrzej Cybulski, and Andrzej Stankiewicz. Novel Concepts in Catalysis and Chemical Reactors: Improving the Efficiency for the Future. Wiley & Sons, Incorporated, John, 2011.

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46

Moulijn, Jacob A., Andrzej Cybulski, and Andrzej Stankiewicz. Novel Concepts in Catalysis and Chemical Reactors: Improving the Efficiency for the Future. Wiley-VCH Verlag GmbH, 2010.

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47

Reactivity of [pi]-complexes of Ti, V, and Nb towards dithioacetic acid: Synthesis and structure of novel metal sulfur-containing complexes. National Aeronautics and Space Administration, 1990.

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48

Duell, Bradley Lee. Preparation of novel heterocyclic catalysts for the hydrolysis of active phosphorus and carboxylate esters. 1987.

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49

Sahoo, Basudev. Visible Light Photocatalyzed Redox-Neutral Organic Reactions and Synthesis of Novel Metal-Organic Frameworks. Springer, 2016.

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50

Sahoo, Basudev. Visible Light Photocatalyzed Redox-Neutral Organic Reactions and Synthesis of Novel Metal-Organic Frameworks. Springer, 2018.

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