Journal Article10.1039/C3CS60255A
Molecularly designed architectures – the metalloligand way
Girijesh Kumar,Rajeev Gupta +1 more
228
TL;DR: The present review is expected to provide new strategies for constructing functional materials through metalloligands for challenging and practical applications by focusing on the recent progress achieved through assorted molecular building blocks towards generating ordered networks.
read more
Abstract: Designed materials offer noteworthy applications which are often architecture dependent. Despite knowing such a fact, one of the major challenges faced by the scientific community is to find ways to predict and, if possible, control the resultant architecture of a network. If such an exercise is fruitful, it creates enormous opportunities to synthesize exotic materials with tailor-made applications. Any network is composed of individual molecules and the transition from a single molecule to a network can be achieved through several routes taking advantage of synthetic chemistry. There exists a molecular building block at the heart of such a transition which mediates such a process from a single molecule to a network. Although a large number of building blocks have created assorted materials, utilization of a well-defined coordination complex as the building block (i.e., metalloligand) is unique for the construction of a designed architecture. A coordination complex as the building block offers structural rigidity that places the auxiliary functional groups to a pre-organized conformation. Such auxiliary functional groups could then coordinate a secondary metal ion or be involved in the self-assembly via weak interactions, such as hydrogen bonds. This review focuses on the recent progress achieved through assorted molecular building blocks towards generating ordered networks. Broadly, two classes of metalloligands will be discussed: those offering hydrogen bond sensitive functional groups and those tendering coordination bond responsive groups. Nevertheless, the result is the construction of networks of a highly-ordered nature in both cases. The present review is expected to provide new strategies for constructing functional materials through metalloligands for challenging and practical applications.
read more
Chat with Paper
AI Agents for this Paper
Find similar papers on Google Scholar, PubMed and Arxiv
Write a critical review of this paper
Analyze citations of this paper to find unaddressed research gaps
Citations
Single-Phase White-Light-Emitting and Photoluminescent Color-Tuning Coordination Assemblies
TL;DR: Some state-of-the-art assembly methods and successful design models relevant to the above three categories are elaborated to demonstrate how to achieve efficient and controllable white-light emission in a single-phase material through a tunable PL approach.
487
Supramolecular assembly based on “emerging” intermolecular interactions of particular interest to coordination chemists
TL;DR: An overview of supramolecular assembly sustained by intermolecular contacts pertinent to the coordination chemistry community is presented in this paper, with comments on the nature of these interactions and information on the energy of stabilisation they impart.
198
Supramolecular catalysis based on discrete heterometallic coordination-driven metallacycles and metallacages
TL;DR: The rational design and facile construction of discrete heterometallic supramolecular catalysts have precipitated a surge of research interest in emulating sophisticated natural catalysts with well-defined cavities and inlaid active sites, allowing conversion of encapsulated substrates with high chemo-, regio-, and stereoselectivity as mentioned in this paper.
192
Selective separation of CO2 and CH4 for biogas upgrading on zeolite NaKA and SAPO-56
TL;DR: In this article, commercial and potential adsorbents were investigated for the separation of CO2 from CH4, which is relevant for the upgrading of raw biogas, and the main focus of the paper was on the working c...
120
References
Pillared porphyrin homologous series: intergrowth in metal-organic frameworks.
TL;DR: Three new porphyrin-based, pillared paddle-wheel homologous series of frameworks PPF-3, -4, and -5 are reported, where 2D layers are pillared by bipyridine with three different packing arrangements.
185
Metal-metal multiple bonds in ordered assemblies. 1. Tetranuclear molybdenum and tungsten carboxylates involving covalently linked metal-metal quadruple bonds. Molecular models for subunits of one-dimensional stiff-chain polymers
180
Hydrogen-Bonded Porphyrinic Solids: Supramolecular Networks of Octahydroxy Porphyrins
TL;DR: In this paper, a columnar structure for tetrakis(3,5'-dihydroxyphenyl)porphyrin and its derivatives was found, where the position of the peripheral hydroxyl groups, the choice of metallo- or free base porphyrin, and the nature of the solvate dramatically influence structural features.
178