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دانشجوعلاقه‌مند یادگیری
کتابخوان حرفه‌ایلذت مطالعه
نویسندهالهام‌گیری

Multi-Component Crystals : Synthesis, Concepts, Function

Tiekink, Edward (editor);Zukerman, Julio (editor)

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مشخصات کتاب

سال انتشار
۲۰۱۷
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PDF
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انگلیسی
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دربارهٔ کتاب

In this volume, contributions covering the theoretical and practical aspects of multicomponent crystals provide a timely and contemporary overview of the state-of-the art of this vital aspect of crystal engineering/materials science. With a solid foundation in fundamentals, multi-component crystals can be formed, for example, to enhance pharmaceutical properties of drugs, for the specific control of optical responses to external stimuli and to assemble molecules to allow chemical reactions that are generally intractable following conventional methods. **Contents**Pharmaceutical co-crystals: crystal engineering and applications Pharmaceutical multi-component crystals: improving the efficacy of anti-tuberculous agents Qualitative and quantitative crystal engineering of multi-functional co-crystals Control of photochromism in __N__-salicylideneaniline by crystal engineering Quinoline derivatives for multi-component crystals: principles and applications N-oxides in multi-component crystals and in bottom-up synthesis and applications Multi-component crystals and non-ambient conditions Co-crystals for solid-state reactivity and thermal expansion Solution co-crystallisation and its applications The salt-co-crystal continuum in halogen-bonded systems Large horizontal displacements of benzene-benzene stacking interactions in co-crystals Simultaneous halogen and hydrogen bonding to carbonyl and thiocarbonylfunctionality Crystal chemistry of the isomeric N,N’-bis(pyridin-n-ylmethyl)-ethanediamides, n = 2, 3 or 4 Solute・solvent interactions mediated by main group element (lone-pair)・・・π(aryl) interactions * The work collates contributions in the theoretical and practical aspects of multi-components crystals * Provides a timely and contemporary overview * Addresses scientists in crystallography, chemistry and materials science In this volume, contributions covering the theoretical and practical aspects of multicomponent crystals provide a timely and contemporary overview of the state-of-the art of this vital aspect of crystal engineering/materials science. With a solid foundation in fundamentals, multi-component crystals can be formed, for example, to enhance pharmaceutical properties of drugs, for the specific control of optical responses to external stimuli and to assemble molecules to allow chemical reactions that are generally intractable following conventional methods. Contents Pharmaceutical co-crystals: crystal engineering and applications Pharmaceutical multi-component crystals: improving the efficacy of anti-tuberculous agents Qualitative and quantitative crystal engineering of multi-functional co-crystals Control of photochromism in N -salicylideneaniline by crystal engineering Quinoline derivatives for multi-component crystals: principles and applications N-oxides in multi-component crystals and in bottom-up synthesis and applications Multi-component crystals and non-ambient conditions Co-crystals for solid-state reactivity and thermal expansion Solution co-crystallisation and its applications The salt-co-crystal continuum in halogen-bonded systems Large horizontal displacements of benzene-benzene stacking interactions in co-crystals Simultaneous halogen and hydrogen bonding to carbonyl and thiocarbonylfunctionality Crystal chemistry of the isomeric N,N’-bis(pyridin-n-ylmethyl)-ethanediamides, n = 2, 3 or 4 Solute・solvent interactions mediated by main group element (lone-pair)・・・π(aryl) interactions The work collates contributions in the theoretical and practical aspects of multi-components crystals Provides a timely and contemporary overview Addresses scientists in crystallography, chemistry and materials science In This Volume, Contributions Covering The Theoretical And Practical Aspects Of Multicomponent Crystals Provide A Timely And Contemporary Overview Of The State-of-the Art Of This Vital Aspect Of Crystal Engineering/materials Science. With A Solid Foundation In Fundamentals, Multi-component Crystals Can Be Formed, For Example, To Enhance Pharmaceutical Properties Of Drugs, For The Specific Control Of Optical Responses To External Stimuli And To Assemble Molecules To Allow Chemical Reactions That Are Generally Intractable Following Conventional Methods. Contents Pharmaceutical Co-crystals: Crystal Engineering And Applications Pharmaceutical Multi-component Crystals: Improving The Efficacy Of Anti-tuberculous Agents Qualitative And Quantitative Crystal Engineering Of Multi-functional Co-crystals Control Of Photochromism In N-salicylideneaniline By Crystal Engineering Quinoline Derivatives For Multi-component Crystals: Principles And Applications N-oxides In Multi-component Crystals And In Bottom-up Synthesis And Applications Multi-component Crystals And Non-ambient Conditions Co-crystals For Solid-state Reactivity And Thermal Expansion Solution Co-crystallisation And Its Applications The Salt-co-crystal Continuum In Halogen-bonded Systems Large Horizontal Displacements Of Benzene-benzene Stacking Interactions In Co-crystals Simultaneous Halogen And Hydrogen Bonding To Carbonyl And Thiocarbonylfunctionality Crystal Chemistry Of The Isomeric N, N'-bis(pyridin-n-ylmethyl)-ethanediamides, N = 2, 3 Or 4 Solute・solvent Interactions Mediated By Main Group Element (lone-pair)・・・π(aryl) Interactions Preface Contents List of contributors 1. Pharmaceutical co-crystals: crystal engineering and applications 2. Pharmaceutical multi-component crystals: improving the efficacy of anti-tuberculous agents 3. Qualitative and quantitative crystal engineering of multi-functional co-crystals 4. Control of photochromism in N-salicylideneaniline by crystal engineering 5. Quinoline derivatives for multi-component crystals: principles and applications 6. N-oxides in multi-component crystals and in bottom-up synthesis and applications 7. Multi-component crystals and non-ambient conditions 8. Co-crystals for solid-state reactivity and thermal expansion 9. Solution co-crystallisation and its applications 10. The salt–co-crystal continuum in halogen-bonded systems 11. Large horizontal displacements of benzene–benzene stacking interactions in co-crystals 12. Simultaneous halogen and hydrogen bonding to carbonyl and thiocarbonyl functionality 13. Crystal chemistry of the isomeric N,N'-bis(pyridin-n-ylmethyl)-ethanediamides, n = 2, 3 or 4 14. Solute–solvent interactions mediated by main group element(lone-pair)···π(aryl) interactions Index

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