2018
DOI: 10.1002/adfm.201803872
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Graphene‐Enhanced Nanomaterials for Wall Painting Protection

Abstract: Wall paintings as the highly valuable treasure have been facing severe damaging problems over the years. Ca(OH) 2 as a promising material to protect them has been studied for more than a decade. However, the synthesis methods are still costly, complex, and usually, involve an organic solvent. In addition, problems such as large particle size (>150 nm), slow and weak carbonation, and low consolidation strength for wall paintings remain unsolved. This study demonstrates an unprecedented concept of wall painting … Show more

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Cited by 36 publications
(32 citation statements)
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“…Notably, the featured peaks of ZIS, WO, and C are detected at a depth of 2 mm. [38,39] The C-wood thickness is 6 mm, as shown in Figure S21a (Supporting Information). When the system is placed in the water, it is free-floating at the water-air interface and 2 mm of the wood is immersed in the water.…”
Section: Resultsmentioning
confidence: 99%
“…Notably, the featured peaks of ZIS, WO, and C are detected at a depth of 2 mm. [38,39] The C-wood thickness is 6 mm, as shown in Figure S21a (Supporting Information). When the system is placed in the water, it is free-floating at the water-air interface and 2 mm of the wood is immersed in the water.…”
Section: Resultsmentioning
confidence: 99%
“…Herein, there is a possible reason for the synthesis of the smaller LDH that p-CDs act as a surfactant during the nucleation and growth of LDH, preventing further growth of LDH sheets and assembly into micron-sized owers. [30][31][32] When CDs are introduced into the reaction, they will be overlaid on the petals of LDH. CDs with positive charge has a greater inhibitory effect on the anisotropic growth of the LDH crystal than CDs with negative charge.…”
Section: Resultsmentioning
confidence: 99%
“…The two-dimensional (2D) solid material with weak interlayer interaction provides the application possibility in many new fields requiring special functions and open structure. After modifying or special processing, monolayer/oligolayer 2D solid/suspension can be achieved, which has more open and flexible structures, well-regulated surface-active sites, as well as distinctive assembly and functionalized properties, and they have been used in catalysis, nanodevices, , and functional films. , In recent years, layered zeolites with monolayer/oligolayer features have been highlighted as new 2D nanoporous solid materials with research significance and practical value. Until now, the difficulties of preparing monolayer/oligolayer zeolite in an efficient, economical, and green way seriously hinder its sustainable development . Meanwhile, the full potential of 2D zeolites has not yet been unearthed and exploited, and new applications are pending to be discovered as well.…”
Section: Introductionmentioning
confidence: 99%