2022
DOI: 10.1016/j.colsurfa.2022.129103
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Surfactant regulated synthesis of ZIF-8 crystals as carbonic anhydrase-mimicking nanozyme

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Cited by 9 publications
(3 citation statements)
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“…These techniques contribute to tracking internal reaction changes of nanozymes. Additionally, machine learning presents an attractive and effective tool that can be combined with DFT to achieve qualitative and quantitative determination of nanozyme activity. Despite the advantages in terms of stability and affordability, a common concern associated with nanozymes pertains to their comparatively lower activity when compared to their natural counterparts, which inevitably compromises their therapeutic efficacy. Therefore, it is imperative to establish effective strategies aimed at enhancing the catalytic activity of transition-metal-based nanozymes. An effective approach to enhance the activity of transition-metal-based nanozymes could involve emulating diverse aspects of natural enzymes, ranging from their geometric and electronic structures, followed by rapid screening of their activity through theoretical calculations.…”
Section: Discussionmentioning
confidence: 99%
“…These techniques contribute to tracking internal reaction changes of nanozymes. Additionally, machine learning presents an attractive and effective tool that can be combined with DFT to achieve qualitative and quantitative determination of nanozyme activity. Despite the advantages in terms of stability and affordability, a common concern associated with nanozymes pertains to their comparatively lower activity when compared to their natural counterparts, which inevitably compromises their therapeutic efficacy. Therefore, it is imperative to establish effective strategies aimed at enhancing the catalytic activity of transition-metal-based nanozymes. An effective approach to enhance the activity of transition-metal-based nanozymes could involve emulating diverse aspects of natural enzymes, ranging from their geometric and electronic structures, followed by rapid screening of their activity through theoretical calculations.…”
Section: Discussionmentioning
confidence: 99%
“…Zhang, Chen, and co‐workers demonstrated that CFA‐1 and ZIF‐100, also known as Zn 20 (cbIM) 39 (OH) (cbIM=5‐chlorobenzimidazolate), can not only capture and store CO 2 but can also be used as catalysts to hydrolyze CO 2 [234] . The concept of CO 2 capture and conversion has been extended to other carbonic anhydrase mimicking MOFs as well [235–238] …”
Section: Metal–organic Frameworkmentioning
confidence: 99%
“…[234] The concept of CO 2 capture and conversion has been extended to other carbonic anhydrase mimicking MOFs as well. [235][236][237][238]…”
Section: Cfa-1mentioning
confidence: 99%