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Growing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability

机译:使用自然丰富的硅藻土模板生长三维生物形态石墨烯粉以实现高溶液加工性

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摘要

Mass production of high-quality graphene with low cost is the footstone for its widespread practical applications. We present herein a self-limited growth approach for producing graphene powders by a small-methane-flow chemical vapour deposition process on naturally abundant and industrially widely used diatomite (biosilica) substrates. Distinct from the chemically exfoliated graphene, thus-produced biomorphic graphene is highly crystallized with atomic layer-thickness controllability, structural designability and less noncarbon impurities. In particular, the individual graphene microarchitectures preserve a three-dimensional naturally curved surface morphology of original diatom frustules, effectively overcoming the interlayer stacking and hence giving excellent dispersion performance in fabricating solution-processible electrodes. The graphene films derived from as-made graphene powders, compatible with either rod-coating, or inkjet and roll-to-roll printing techniques, exhibit much higher electrical conductivity (∼110,700 S m−1 at 80% transmittance) than previously reported solution-based counterparts. This work thus puts forward a practical route for low-cost mass production of various powdery two-dimensional materials.
机译:低成本大量生产高质量石墨烯是其广泛实际应用的基础。我们在本文中提出了一种自限生长方法,该方法通过在自然丰富且工业上广泛使用的硅藻土(biosilica)基底上的小甲烷流化学气相沉积工艺生产石墨烯粉。与化学剥离的石墨烯不同,如此制得的生物形态石墨烯高度结晶,具有原子层厚度可控性,结构设计性和较少的非碳杂质。特别是,各个石墨烯微体系结构保留了原始硅藻壳的三维自然曲面形貌,有效克服了层间堆叠,因此在制造溶液可加工电极时具有出色的分散性能。源自石墨烯粉末的石墨烯薄膜可与棒涂或喷墨和卷对卷印刷技术兼容,表现出更高的电导率(在80时约为110,700 S m -1 透射率百分比)比以前报告的基于溶液的对应物更高。因此,这项工作为低成本批量生产各种粉状二维材料提供了一条可行的途径。

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