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The article was published on 1970-01-01. It has received 612 citations till now.

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Multifunctional Sensor Based on Porous Carbon Derived from Metal-Organic Frameworks for Real Time Health Monitoring.

TL;DR: A flexible and simply structured bimodal sensor based on metal-organic frameworks derived porous carbon (PC) and polydimethylsiloxane (PDMS) composite that exhibits high sensitivity, fast response time, and high durability, indicating its potential application in sensing temperature.
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Luminescence response mode and chemical sensing mechanism for lanthanide-functionalized metal–organic framework hybrids

TL;DR: This comprehensive review systematically summarizes the luminescence response mode and chemical sensing mechanism for lanthanide-functionalized MOF hybrids (abbreviated as LnFMOFH).
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Photostimulus-Responsive Large-Area Two-Dimensional Covalent Organic Framework Films

TL;DR: It is demonstrated that a two-dimensional COF, constructed from a photo-responsive unit (1,2-bis(5-formyl-2-methylthien-3-yl)cyclopentene), can reversibly switch its electrical conductivity 200 times from low state (the open form) to high state ( the close form) upon irradiation with UV light.
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Electronic Structure Modeling of Metal-Organic Frameworks.

TL;DR: This Review canvases approaches to date to explore reactivity and electron transfer using periodic, molecular, and embedded models, with emphasis placed on the application of electronic structure theory.
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The Properties of Carbon Contacts

TL;DR: In this article, the properties of contacts between small spherules of silica are shown to be dependent on the structure and geometry of the carbon surface as determined by electron diffraction and microscopic studies.
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