| Applications of Cucurbit[n]urils (n=7 or 8) in Pharmaceutical Sciences and Complexation of Biomolecules |
25 |
| Chemical Sensors Based on Cucurbit[n]uril Macrocycles |
19 |
| Bambusuril Anion Receptors |
16 |
| MIL-53 and its Isoreticular Analogues: a Review of the Chemistry and Structure of a Prototypical Flexible Metal-Organic Framework |
15 |
| A Chemical Biology View of Bioactive Small Molecules and a Binder-Based Approach to Connect Biology to Precision Medicines |
15 |
| Recent Development and Application of Conductive MOFs |
14 |
| Kinetics Inside, Outside and Through Cucurbiturils |
12 |
| Novel Topology in Semiconducting Tetrathiafulvalene Lanthanide Metal-Organic Frameworks |
11 |
| Acyclic Cucurbit[n]uril-type Receptors: Preparation, Molecular Recognition Properties and Biological Applications |
10 |
| Reviewing Rare Earth Succinate Frameworks from the Reticular Chemistry Point of View: Structures, Nets, Catalytic and Photoluminescence Applications |
10 |
| Rotations in Excited ICT States - Fluorescence and its Microenvironmental Sensitivity |
9 |
| Reaction-based AIE-active Fluorescent Probes for Selective Detection and Imaging |
9 |
| Hemicucurbit[n]urils and Their Derivatives - Synthesis and Applications |
9 |
| Hetero-Bambusurils |
9 |
| C-3-Symmetrical pi-Scaffolds: Useful Building Blocks to Construct Helical Supramolecular Polymers |
9 |
| Aggregation Induced Phosphorescence in the Main Group |
8 |
| Cucurbiturils as Reaction Containers for Photocycloaddition of Olefins |
8 |
| Compositions and Structures of Zeolitic Imidazolate Frameworks |
8 |
| Tracking CO Release in Cells via the Luminescence of Donor Molecules and/or their By-Products |
8 |
| Conducting Polymer Nanostructures and their Derivatives for Flexible Supercapacitors |
8 |
| Synthesis of Colloidal Halide Perovskite Quantum Dots/Nanocrystals: Progresses and Advances |
8 |
| Pillar[n]arenes at the Chemistry-Biology Interface |
8 |
| Chemistry Education Fostering Creativity in the Digital Era |
8 |
| Recent Developments in AIEgens for Non-doped and TADF OLEDs |
7 |
| A Framework for Learning in the Chemistry Laboratory |
7 |
| Postsynthetic Covalent Modification in Covalent Organic Frameworks |
7 |
| Potential Applications of Cucurbit[n]urils Inclusion Complexes in Photodynamic Therapy |
7 |
| Electroactive Metalorganic Frameworks |
7 |
| Metal-Organic Cages for Biomedical Applications |
7 |
| Mathematical Analysis of Chemical Reaction Systems |
7 |
| Metal-organic Frameworks Incorporating Multiple Metal Elements |
6 |
| Cucurbit[n]uril Host-Guest Complexes of Acids, Photoacids, and Super Photoacids |
6 |
| Macrocyclic Amphiphiles for Drug Delivery |
6 |
| Gold-Catalyzed Hydrofunctionalizations and Spiroketalizations of Alkynes as Key Steps in Total Synthesis |
6 |
| Gold(I)-Catalysis for the Synthesis of Terpenoids: From Intramolecular Cascades to Intermolecular Cycloadditions |
6 |
| Inorganic Reactions Self-organize Life-like Microstructures Far from Equilibrium |
6 |
| Pillar[n]arenes for Construction of Artificial Transmembrane Channels |
6 |
| Advanced Functional Materials Constructed from Pillar[n]arenes |
6 |
| Dual Stimuli-Responsive Cross-Linked AIE Supramolecular Polymer Constructed through Hierarchical Self-Assembly |
6 |
| Luminescent Solar Concentrators Based on Aggregation Induced Emission |
6 |
| Aggregation-induced Phosphorescence Enhancement in Ir-III Complexes |
6 |
| Quantum Dots Based Photocatalytic Hydrogen Evolution |
5 |
| Molecular Recognition of Water-soluble Pillar[n]arenes Towards Biomolecules and Drugs |
5 |
| Solid State and Aggregation Induced Emissive Chromophores by Multi-component Syntheses |
5 |
| Reticular Chemistry of Multifunctional Metal-Organic Framework Materials |
5 |
| Portal Effects on the Stability of Cucurbituril Complexes |
5 |
| polyMOF Formation from Kinked Polymer Ligands via ortho-Substitution |
5 |
| Cucurbituril As A Versatile Tool to Tune the Functions of Proteins |
5 |
| Templating Effects in the Dynamic Chemistry of Cucurbiturils and Hemicucurbiturils |
5 |
| Supramolecular Assemblies of Cucurbiturils with Photoactive, -conjugated Chromophores |
5 |