Ali Morsali

Functional Metal-Organic Frameworks


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functionalization of vacant spaces (pores) inside the framework of MOFs (Figure 1.3) [14, 16]. These functions could be introduced prior to the self-assembly process by selection of desirable functional building blocks (pre-synthesis functionalization strategy) or after synthesis of the frameworks (post-synthesis functionalization strategy) [17, 18]. Unlimited ways for functionalization of MOFs is key factor to control their chemical properties and host–guest interactions. Definitely, we can state that tunability in chemical functionality and consequent ability in control over host–guest chemistry of MOFs has very essential roles in absorbing the attraction of scientist toward MOFs.

      Considering the diverse and useful characteristics of MOFs including regular crystalline structure, high porosity and surface area, hybrid inorganic–organic nature, satisfactory structural stability and tunability in chemical functionality, they are employed for different types of applications such as gas storage and separation [19–23], heterogeneous catalysis [24, 25] and photocatalysis [26–28], sensing [29–33], removal and separation of hazardous chemicals [34–36], drug delivery [37], bio sensing [38–41] and other medical applications [42] electrical conductivity [43] and electrochemical applications [44], ion storage and conductivity [45, 46], and designing MOF-based energetic materials [47]. Such diversity in chemical properties and application of MOFs show that intensive studies are necessary to identify the maximum capability of MOFs for each type of applications.

      Guest-interactive functions are those enabling to interact with guest-molecules for special purpose. In this regard, the guest-interactive functions must remain free during the synthesis of FMOFs or introduced in the framework through post-synthesis modification. Almost all functions applied as guest interactive site to sensitize the FMOFs to special guest.

      The next chapters of this book are structured based on these two approaches and effects of any function on the structure and application of FMOFs are discussed in details.