Books on the topic 'Organic synthesis problems'

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1

C, Bittner, ed. Organic synthesis workbook II. Weinheim: Wiley-VCH, 2001.

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2

Pavel, Kočovský, Tureček František, and Hájíček Josef, eds. Synthesis of natural products: Problems of stereoselectivity. Boca Raton, Fla: CRC Press, 1986.

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3

Coxon, J. M. Worked solutions in organic chemistry. London: Blackie Academic & Professional, 1998.

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4

B, Zwanenburg, Mikołajczyk Marian 1937-, and Kiełbasiński Piotr, eds. Enzymes in action: Green solutions for chemical problems. Dordrecht: Kluwer Academic Publishers, 2000.

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5

B, Zwanenburg, Mikołajczyk Marian 1937-, and Kiełbasiński Piotr, eds. Enzymes in action: Green solutions for chemical problems. Boston: Kluwer Academic Publishers, 2000.

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6

Nantz, Michael, George S. Zweifel, and Hasan Palandoken. Problems in Organic Synthesis. Freeman & Company, W. H., 2009.

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7

Problems in Organic Synthesis. Freeman & Company, W. H., 2009.

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8

Bittner, Christian, Anke S. Busemann, Ulrich Griesbach, Frank Haunert, and Wolf-Rüdiger Krahnert. Organic Synthesis Workbook II. Wiley & Sons, Incorporated, John, 2001.

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9

Bittner, Christian, Anke S. Busemann, Ulrich Griesbach, Frank Haunert, Wolf-Rüdiger Krahnert, Andrea Modi, Jens Olschimke, and Peter L. Steck. Organic Synthesis Workbook II. Wiley-VCH, 2001.

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10

Organic synthesis workbook. Weinheim: Wiley-VCH, 2000.

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11

Kinzel, Tom, Felix Major, Christian Raith, Thomas Redert, Florian Stecker, Nina Tölle, and Julia Zinngrebe. Organic Synthesis Workbook III. Wiley-VCH, 2007.

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12

(Contributor), P. Anderson, H. K. Beyer (Contributor), P. Gallezot (Contributor), R. Harjula (Contributor), H. G. Karge (Contributor), U. Rymsa (Contributor), G. Schulz-Ekloff (Contributor), et al., eds. Post-Synthesis Modification I (Molecular Sieves). Springer, 2002.

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13

Hudlic'ky, Milos. Fluorine Chemistry for Organic Chemists. Oxford University Press, 2000. http://dx.doi.org/10.1093/oso/9780195131567.001.0001.

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This book is a synthesis of two of Hudlicky's earlier books outlining the many unpredictable properties of fluorine and its compounds that are not analogous to the properties of any other halogens and their compounds. It is divided into two separate sections, the first presenting peculiar reactions as problems to be solved. Each reaction can be analyzed in the lab without the help of the second section, however if a solution is not easily reached, the second section provides discussion of the problems, outlining the products of the reactions and their mechanisms. Among the 105 reactions outlined are the introduction of fluorine into organic molecules, reduction and oxidation of fluorine compounds, reactions of fluorocompounds with halogens and their derivatives, nitration, acid catalyzed reactions, organometallic syntheses, and pyrolyses. The reactions are documented in the experimental material of the earlier volumes and will be important background knowledge for anyone working in organic chemistry.
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14

(Editor), Binne Zwanenburg, Marian Mikolajczyk (Editor), and Piotr Kielbasinski (Editor), eds. Enzymes in Action Green Solutions for Chemical Problems (Nato Science Partnership Sub-series: 1: Disarmament Technologies continued within Nato Science ... (NATO Science Partnership Sub-Series: 1:). Springer, 2001.

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15

Janina, Kaszubska, ed. Problemy syntezy organicznej. Szczecin: Wydawn. Uczelniane Politechniki Szczecińskiej, 1987.

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16

Yamamoto, Hisashi, Massimo Olivucci, Margherita Venturi, Michael J. Krische, Chi-Huey Wong, Jean-Marie Lehn, Steven V. Ley, et al. Synthetic and Structural Problems. Springer, 2014.

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17

Kuznetsov, Yuriy, Inna Levina, and Igor Zavarzin. Estrogens and antiestrogens. Modern synthetic approaches to directed modification of estra-1,3,5(10)-triene steroids: goals, reactions, and methods. LCC MAKS Press, 2021. http://dx.doi.org/10.29003/m2020.978-5-317-06626-0.

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The monograph summarizes the information over the past 20 years on the currently widely used and promising methods for the synthesis of estra-1,3,5(10)-triene derivatives by modifying natural estrogens - estrone and estradiol. The main practical goals of modifying this class of steroids and achievements in the chemistry of steroidal antiestrogens, which are promising drugs for hormonal therapy, are considered. Special attention is paid to the stereochemical features of the reactions and the specific problems of modification of the steroid nucleus of estratrienes associated with the presence of an aromatic fragment in their structure. In addition, the data on the reactivity and stereochemical aspects of the transformations of 13-epiestratriene steroids were summarized. The monograph is intended for a wide range of specialists in the field of organic synthesis, organic, bioorganic, and medicinal chemistry.
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18

DAVIS. Computer Representation of the Stereochemistry of Organic Molecules: With Application to the Problem of Discovery of Organic Synthesis by Computer. Birkhauser Verlag, 2013.

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19

Mark, James E., Dale W. Schaefer, and Gui Lin. The Polysiloxanes. Oxford University Press, 2015. http://dx.doi.org/10.1093/oso/9780195181739.001.0001.

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Polysiloxanes are the most studied inorganic and semi-inorganic polymers because of their many medical and commercial uses. The Si-O backbone endows polysiloxanes with intriguing properties: the strength of the Si-O bond imparts considerable thermal stability, and the nature of the bonding imparts low surface free energy. Prostheses, artificial organs, objects for facial reconstruction, vitreous substitutes in the eyes, and tubing take advantage of the stability and pliability of polysiloxanes. Artificial skin, contact lenses, and drug delivery systems utilize their high permeability. Such biomedical applications have led to biocompatibility studies on the interactions of polysiloxanes with proteins, and there has been interest in modifying these materials to improve their suitability for general biomedical application. Polysiloxanes examines novel aspects of polysiloxane science and engineering, including properties, work in progress, and important unsolved problems. The volume, with ten comprehensive chapters, examines the history, preparation and analysis, synthesis, characterization, and applications of these polymeric materials.
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