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Catalytic reactions that are selective and efficient and allow the replacement of common stoichiometric oxidants with molecular oxygen from air at atmospheric pressure provide higher atom efficiency and water as the only side product. Focusing on the use of molecular oxygen as the terminal oxidant, this book covers recent advances in both heterogeneous and homogeneous catalytic systems in academia and industry.
Can one envision economic growth that is also sustainable because it takes into account the cultural, moral and religious values of those intended to benefit from economic development? To explore this question, the Woodstock Theological Center launched a collaborative research effort involving 40 Jesuit centers around the world, taking as its "raw material" the stories of specific, mostly poor, individuals and their communities as they were touched by economic globalization. Focusing on decisions made by the individuals as they encountered the forces of the global economy, the authors discern the values and creativity that guided these decisions and derive implications for development policy. The book's methodology draws on the Jesuit approach to discernment that stresses the ethical responsibility of all development actors. It envisions communities partnering with other development agents, such as government, business, and NGO's, based on a better understanding of the values that drive decisions.
Catalytic asymmetric synthesis has been one of the most active research areas in chemistry (Nobel Prize in 2001). The development of efficient chiral catalysts plays a crucial role in asymmetric catalysis. Although many chiral ligands/catalysts have been developed in the past decades, the most efficient catalysts are derived from a few core structures, called "privileged chiral catalysts". This ultimate "must have" and long awaited reference for every chemist working in the field of asymmetric catalysis starts with the core structure of the catalysts, explaining why a certain ligand or catalyst is so successful. It describes in detail the history, the basic structural characteristics, and th...
The most current information on growing field of copper catalysis Copper Catalysis in Organic Synthesis contains an up-to-date overview of the most important reactions in the presence of copper catalysts. The contributors—noted experts on the topic—provide an introduction to the field of copper catalysis, reviewing its development, scope, and limitations, as well as providing descriptions of various homo- and cross-coupling reactions. In addition, information is presented on copper-catalyzed C–H activation, amination, carbonylation, trifluoromethylation, cyanation, and click reactions. Comprehensive in scope, the book also describes microwave-assisted and multi-component transformation...
Winner of the ASCAP Deems Taylor Award for Popular Music Books (2002) Winner of the Society for Ethnomusicology's (SEM) Alan P. Merriam Prize (2003) Salsa is a popular dance music developed by Puerto Ricans in New York City during the 1960s and 70s, based on Afro-Cuban forms. By the 1980s, the Colombian metropolis of Cali emerged on the global stage as an important center for salsa consumption and performance. Despite their geographic distance from the Caribbean and from Hispanic Caribbean migrants in New York City, Caleños (people from Cali) claim unity with Cubans, Puerto Ricans and New York Latinos by virtue of their having adopted salsa as their own. The City of Musical Memory explores ...
This book discusses the developments in the synthesis and functionalization of different heterocycles based on the formation of carbon-carbon (C-C) and carbon-heteroatom (C-X) bonds using cross-dehydrogenative coupling (CDC). Consisting of 13 chapters, the book systematically describes the advances in the synthesis and functionalization of nitrogen, oxygen, and sulfur-containing heterocycles. It also discusses the various mechanistic pathways to help readers gain an in-depth understanding of the CDC reactions of heterocycles. Lastly, in order to promote green chemistry, it addresses a range of metal-free CDC reactions of heterocycles – an area that has attracted significant attention in both academic and industrial research.
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