O programa se organiza em torno de uma única área de concentração, "Química", que se desdobra em cinco sub-áreas robustas: Química Analítica, Química Inorgânica, Química Orgânica, Físico-Química e Materiais. Cada sub-área oferece um conjunto de disciplinas coerente e aprofundado, projetado para fornecer uma formação especializada de alto nível.
Bibliografia:
1) D A Skoog, F J Holeer, T A Nieman, Princípios de Análise Instrumental, 6 ed, Bookman, Porto Alegre, 2009.
2) D A Skoog, D M West, F J Holeer, S R Crouch, Fundamentos de Química Analítica, Cengage Learning, São Paulo, 2009.
3) F Rouessac, A Rouessac, Chemical Analysis: Modern Instrumentation, Methods and Techniques, 2 ed, Wiley, Inglaterra, 2007.
4) D S Hage, J D Carr, Química Analítica e Análise Quantitativa, Pearson Prentice Hall, São Paulo, 2012.
5) F A Settle, Handbook of Instrumental Techniques for Analytical Chemistry, Prentice Hall, Nova Jersey, 1997.
6) F Cienfuegos, D Vaitsman, Análise Instrumental, Interciência, Rio de Janeiro, 2000.
7) D C Harris, Explorando a Química Analítica, LTC, Rio de Janeiro, 2011.
8) J N Butler, Ionic Equilibrium: Solubility and pH Calculations, Wiley, Nova York, 1998.
9) D C Harris, Análise Química Quantitativa, 8 ed, LTC, Rio de Janeiro, 2012.
10) P C Meier, R E Zünd, Statistical Methods in Analytical Chemistry, 2 ed, Wiley, Nova York, 2000.
Bibliografia:
1) D A Skoog, F J Holeer, T A Nieman, Princípios de Análise Instrumental, 6 ed, Bookman, Porto Alegre, 2009.
2) K Altria, Capillary Elextrophoresis Guidebook, Humana Press, Nova Jersey, 1996.
3) D A Skoog, D M West, F J Holeer, S R Crouch, Fundamentos de Química Analítica, Cengage Learning, São Paulo, 2009.
4) F Rouessac, A Rouessac, Chemical Analysis: Modern Instrumentation, Methods and Techniques, 2 ed, Wiley, Inglaterra, 2007.
5) D C Harris, Explorando a Química Analítica, LTC, Rio de Janeiro, 2011.
6) F A Settle, Handbook of Instrumental Techniques for Analytical Chemistry, Prentice Hall, Nova Jersey, 1997.
7) F Cienfuegos, D Vaitsman, Análise Instrumental, Interciência, Rio de Janeiro, 2000.
8) C H Collins, G L Braga, P S Bonato, Fundamentos de Cromatografia, 1 ed, Editora da Unicamp, Campinas, 2006.
9) W J Lough, I W Wainer, High Performance Liquid Chromatography: Fundamental principles and practice, Champman & Hall USA, Nova York, 1996.
10) D C Harris, Análise Química Quantitativa, 8 ed, LTC, Rio de Janeiro, 2012.
11) L R Snyder, J J Kirkland, J W Dolan. Introduction to modern liquid chromatography, 3 ed, Wiley, EUA, 2009.
12) H Shintan, J Polonsky, Handbook of Capillary Electrophoresis Aplications, Blackie Academic & Professional, Reino Unido, 1997.
Bibliografia:
1) R L M Moreau, M E P B de Siqueira, Toxicologia Analítica, 1 ed, Guanabara Koogan, Rio de Janeiro, 2008.
2) S Mitra, Sample Preparation Techniques in Analytical Chemistry. Wiley- Interscience, 2003.
3) J Pawliszyn, H L Lord, Handbook of Sample Preparation, Wiley-Blackwell: Inglaterra, 2010.
4) Z B Alfassi, C M Wai, Preconcentration Techniques for Trace Elements, 1 ed, CRC Press INC., 1992.
5) L R Snyder, J J Kirkland, J W Dolan. Introduction to modern liquid chromatography, 3 ed, Wiley, EUA, 2009.
Bibliografia:
1) A J Bard, L R Faulkner, Electrochemical methods, 2 ed, Wiley, 2001.
2) A M O Brett, C M A Brett, Eletroquímica: Princípios, métodos e aplicações, Almedina, 1996.
3) J Heyrowsky, J Kuta, Principles of Polarography, Academic Press, 1966.
4) J Wang, Analytical Electrochemistry, Wiley, 2006.
5) F Scholz, Electroanalytical Methods, 2 ed, Sringer, 2010.
Bibliografia:
1) J. Wang, Analytical Electrochemistry, Wiley-VCH, Alemanha, 2006.
2) A. J. Bard, L. R. Faulkner, Electrochemical Methods, Wiley, Alemanha, 2000.
3) E. J. O'M. Bockris, A.K.N. Reddy, Modern electrochemistry, vol.2, Plenum Press, New York, 1970.
Bibliografia:
1) B B Neto, I S Scarminio, R E Bruns, Como Fazer Experimentos. 4 ed, Editora Unicamp, Campinas, 2010.
2) D C Montgomery, C R Runger, Estatística Aplicada e Probabilidade Para Engenheiros. 4 ed, LTC, 2009.
3) K R Beebe, R J Pell, M B Seasholtz, Chemometrics: a Practical Guide. Nova York, Wiley, 1998.
Bibliografia:
1) M Trojanowicz, Flow Injection Analysis, World Scientific, EUA, 2000.
2) J Ruzicka, E H Hansen, Flow Injection Analysis, 2 Ed, Wiley, 1988.
3) D A Skoog, J J Leary, Princípios de Análise Instrumental, 5 ed., Artmed, 2002.
Bibliografia:
1) B R Eggins, Chemical Sensors and Biosensors, Wiley, 2002.
2) C S S R Kumar, Nanomaterials for Biosensors, Wiley, 2007.
3) R W Cattrall, Chemical Sensors, Oxford Science Publications, 1997.
4) F G Banica, Chemical Sensors and Biosensors, Wiley, 2012.
Bibliografia:
1) D A Skoog, F J Holler, T A Nieman, Principles of Instrumental Analysis, 5 ed, 2006.
2) C Burgess, Spectrophotometry, luminescence and colour, Elsevier, 1995.
3) B Valeur, Molecular Fluorescence, Wiley-VCH, Weinheim, 2002.
4) B Welz, M Sperling, Atomic Absorption Spectrometry, 3 ed, Wiley-VCH, 1999.
Bibliografia:
1) J E Huheey, E A Keiter, R L Keiter, Inorganic Chemistry Principles, 4 ed, Harpercollins, 1993.
2) F A Cotton, G Wilkinson, C A Murillo, M Bochmann, Advanced Inorganic Chemistry, 6 ed, Wiley, 1999.
3) C E Housecroft, A G Sharpe, Inorganic Chemistry, 3 ed, Pearson, Inglaterra, 2008.
Bibliografia:
1) Huheey, J.E. et al., Inorganic Chemistry Principles, 4 ed, Harper Collins, 1993.
2) F A Cotton, et al., Advanced Organic Chemistry, 6 ed, Wiley, 1999.
3) A. Yamamoto, Organotransition Metal Chemistry, Wiley, New York.
Bibliografia:
1) J E Huheey, E A Keiter, R L Keiter, Inorganic Chemistry Principles, 1993.
2) F A Cotton, G Wilkinson, Advanced Inorganic Chemistry, 6 ed, Wiley, 1999.
3) A Yamamoto, Organotransition Metal Chemistry, Wiley, Nova York, 1986.
Bibliografia:
1) N. Farrel, Transition Metal Complexes as Drugs and Chemotherapeutic Agents, Human press, 2000.
2) S J Lippard, J M Berg, Principles of Bioinorganic Chemistry, University Science Books, 1994.
3) J Bertini, H B Gray, Biological Inorganic Chemistry, University Science Book, 2007.
Bibliografia:
1) D K Chakrabarty, B. Viswanathan, Heterogeneous Catalysis, 1 Ed, New Age International Ltd., 2008.
2) M. Bowker, The Basis and Applications of Heterogeneous Catalysis, Oxford, 1998.
3) Atkins, P., Princípios de Química, BOOKMAN, 2001.
Bibliografia:
1) F A Carey, R J Sundberg, Advanced Organic Chemistry, Plenum press, 5 ed, 2007.
2) J March, Advanced Organic Chemistry: Reactions, Mechanism and Structure, 7 ed, McGraw-Hill, 2013.
Bibliografia:
1) F.A. Carey, R.J. Sundberg, Advanced Organic Chemistry, 4 ed, 2004.
2) J. March, Advanced Organic Chemistry, 6 ed., McGraw-Hill, 2007.
3) J Clayden, et al, Organic Chemistry, 2 ed , Oxford, 2008.
Bibliografia:
1) T D W Claridge, High-Resolution NMR Techniques in Organic Chemistry, Elsevier, 2005.
2) R M Silverstein, G S Bassler, T C Morril, Identificação Espectrométrica de Compostos Orgânicos, 7 ed, LTC, 2007.
3) J T Watson, O D Sparkman, Introduction to Mass Spectrometry, 4 ed, Wiley, 2007.
Bibliografia:
1) R C Larock, Comprehensive Organic Transformations, 2 ed, Wiley, EUA, 1999.
2) M B Smith, Organic Synthesis, 3 ed, Elsevier Academic Press, Inglaterra, 2011.
3) L Kürti, B Czakó, Strategic Applications of Named Reactions in Organic Synthesis, Elsevier, 2005.
4) K C Nicolaou, E J Sorensen, Classics in Total Synthesis, 1 ed, VCH, 1996.
Bibliografia:
1) G L Patrick, An Introduction to Medicinal Chemistry, 5 ed, Oxford University Press, 2013.
2) R B Silverman, The Organic Chemistry of Drug Design and Drug Action, 2 ed, Elsevier, 2004.
3) E J Barreiro, C A M Fraga, Química Medicinal – as bases moleculares da ação dos fármacos, 2 ed, Artmed, 2008.
Bibliografia:
1) D A Macquerie, J D Simon, Physical Chemistry: A Molecular Approach, University Science Books, 1997.
2) I Levine, Physical Chemistry, 6 ed., McGraw – Hill, 2009.
3) W J Moore, Physical Chemistry, 5 ed, Editora Longman, 1980.
Bibliografia:
1) L Pauling, B Wilson Jr, Introduction to Quantum Mechanics, Dover, 1985.
2) P Atkins, R Friedman, Molecular Quantum Mechanics, University Press, 2008.
3) F Jensen, Introduction to Computational Chemistry, 2 ed, Wiley, 1999.
Bibliografia:
1) J O M Bockris, A K N Reddy, Modern Electrochemistry, 2 ed., KLUWER, 2000.
2) B E Conway, Theory and principles of electrode processes, Ronald press, 1965.
3) C H Hamann, A Hamnett, W Vielstich, Electrochemistry, 2 ed, Wiley-VCH, 2007.
Bibliografia:
1) R Aroca, Surface Enhanced Vibrational Spectroscopy 1 ed, Wiley, 2006.
2) J R Ferraro, K Nakamoto, Introductory Raman Spectroscopy, 2 ed, Elsevier, 2003.
3) D C Harris, M D Bertolucci, Symmetry and Spectroscopy, Dover, 1978.
Bibliografia:
1) M P Allen, D J Tildesley, Computer Simulation of Liquids, Oxford Science Publications,1997.
2) F Jensen, Introduction to computational Chemistry, Wiley, 2002.
3) G Ciccotti, D Frenkel, Simulation of Liquids and Solids, North-Holland, 1987.
Bibliografia:
1) T L Hill, An Introduction to Statistical Thermodynamics, Dover, 1987.
2) G Castellan, Fundamentos de Físico-Química, LTC, 2001.
3) H B Callen, Thermodynamics and an introduction to thermostatistics, 2 ed, Wiley, 1985.
Bibliografia:
1) I N Levine, Quantum Chemistry, Prentice-Hall, 1991.
2) J D M Vianna, A Fazzio, S Canuto, Teoria quântica de moléculas e sólidos, Livraria da Física, 2004.
3) N W Ashcroft, Solid State Physics, Saunde, College Publishing, 1976.
Bibliografia:
1) C S Tsai, Biomacromolecules: Introduction to Structure, Function and Informatics, Wiley, 2006.
2) S F Sun, Physical Chemistry of Macromolecules, 2.ed, Wiley, 2004.
3) F Wold, Macromoléculas: Estrutura e Função, Edgard Blucher, 1975.
Bibliografia:
1) N W Ashcroft, N D Mermin, Solid State Physics, Holt, Rineheart and Winston, 1976.
2) C Kittel, Introdução à física do estado sólido, LTC, 2006.
3) J Singleton, Band Theory and Electronic Properties of Solids, Oxford, 2001.
Bibliografia:
1) I. N. Levine, Quantum Chemistry, 4th ed, Prentice-Hall, 1991.
2) P. W. Atkins, Molecular Quantum Mechanics, Oxford University Press, 1983.
Bibliografia:
1) Rogone, D.V., Thermodynamics of Materials: Thermodynamics, vol I, Wiley, 1994.
2) Rogone, D.V., Thermodynamics of Materials: Kinetics, vol II, Wiley, 1994.
3) Hudson, J. B., Thermodynamics of Materials, Wiley, 1996.
Bibliografia:
1) Atkins, P. W., Físico-Química, vol.2, 8ª ed. LTC, 2008.
2) Floger, H.S., Elementos de Engenharia das Reações, 3ª ed. LTC, 2002.
3) Levenspiel, O., Engenharia das Reações Químicas, Edgar Blücher, 2000.
Bibliografia:
1) G A Ozin, et al, Nanochemistry: A Chemical Approach to Nanomaterials, 2 ed, RSC Publishing, 2008.
2) D Vollath, Nanomaterials, 2 ed, Wiley-VCH, 2008.
3) C P Poole Jr., F J Owens, Introduction to Nanotechnology, Wiley; 1 ed, 2003.
Bibliografia:
1) E N Kaufmann, Characterization of Materials Vol 1 and 2, Wiley, 2003.
2) D Brandon, W D Kaplan, Microstructural Characterization of Materials, Wiley, 1999.
3) J I Goldstein, et al, Scanning Electron Microscopy and X-ray Microanalysis, Plenum Press, 1992.
4) W D Callister, Materials Science and Engineering, Wiley, 1994.
Bibliografia:
1) R Narayan, P Colombo, Advances in Bioceramics and Porous Ceramics IV, Wiley, 2011.
2) W Holand, G H Beall, Glass Ceramic Technology, 2 ed, Wiley, 2012.
Bibliografia:
1) M F C Ladd, R A Palmer, Structure determination by X-Ray Crystallography, Plenum Press, 1994.
2) M Woofson, An Introduction to X-Ray Crystallography, Cambridge University Press, 1997.
3) C Giacovazzo, et al, Fundamentals of Crystallography, 2 ed, 2002.