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Co-Ligand Engineering of d10 Metal-Based Homochiral Coordination Polymers: Synthesis, Optical Properties, and Photoinduced Transformations

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1. Introduction 24
1.1. Noncentrosymmetric (NCS) Materials 24
1.2. Homochiral Coordination Polymers (HCPs) 25
1.3. Constructing Rigid Frameworks of HCPs as Optical Materials 28
1.4. Solid-State Structural Transformations in HCPs 30
1.5. Co-ligand Engineering Strategy for Multifunctional HCPs 31
1.6. References 34
2. Multifunctional d10 Metal-Based Homochiral Coordination Polymers Exhibiting Photoluminescence and Second-Harmonic Generation 46
2.1. Tunable Photoluminescence and Efficient Second-Harmonic Generation with Circular Dichromic Response in [M2(RIAP)2(bpy)2] and [M2(SIAP)2(bpy)2] (M = Zn and Cd) 46
2.1.1. Experimental Section 46
2.1.2. Results and Discussion 72
2.1.3. Summary 98
2.1.4. References 99
3. Zn-Based Homochiral Coordination Polymers Undergoing Ordered and Disordered Structural Transformations by Photoinduced [2+2] Cycloaddition 103
3.1. Dimensional Transformation in [Zn2(SIAP)2(dpe)4(H2O)4]·6H2O and [Zn2(RIAP)2(dpe)4(H2O)4]·6H2O undergoing [2+2] Photocycloaddition 103
3.1.1. Experimental Section 103
3.1.2. Results and Discussion 127
3.1.3. Summary 149
3.1.4. References 150
3.2. Stimuli-Responsive Structural Transformation in [Zn2(SIAP)(dpe)2(OH)(H2O)]·NO3·2H2O and [Zn2(RIAP)(dpe)2(OH)(H2O)]·NO3·2H2O 152
3.2.1. Experimental Section 152
3.2.2. Results and Discussion 174
3.2.3. Summary 204
3.2.4. References 205
4. Conclusion 208
5. Publications and Corresponding Chapter 213

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