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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A sustainable approach to large area transfer of graphene and recycling of the copper substrate
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A sustainable approach to large area transfer of graphene and recycling of the copper substrate

机译:石墨烯大面积传递的可持续方法和铜基材的再循环

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Graphene, the prototypical two-dimensional material, has been a subject of much interest and extensive studies in the past few decades. Carbon dioxide, on the other hand, has gained infamy because of global climate change concerns. In this Communication, we demonstrate an unlikely but useful marriage between these two ostensibly juxtaposing carbon-containing compounds. Specifically, we address the challenges in sustainable graphene manufacturing by developing a new route for graphene transfer and reuse of the copper catalyst substrate via carbonic acid enabled electrochemical under-etching delamination. Electrochemical reduction of the cuprous oxide (Cu2O) interlayer between the copper catalyst substrate and the chemical vapour deposition (CVD) synthesized surface layer graphene is achieved by using carbon dioxide as the precursor for making a conductive carbonic acid electrolyte. This under-etching delamination approach to graphene transfer mitigates the conventional need for harsh chemical etchants that otherwise expend the copper catalyst. This approach also removes the need for the concomitant multiple subsequent rinsing steps typically needed for chemical etching or delamination via salt/alkali based electrolytes, thereby significantly reducing the process water usage. In addition, we also show the application of using food-grade ethyl cellulose as the thin film handle layer for the transfer process. This inexpensive and environmentally benign alternative for the polymeric thin film replaces the conventionally used high grade polymers that are typically solvated in harsh solvents. We expect our development to enable more environmentally sustainable and cost-effective strategies for the large-scale integration of graphene and analogous 2D materials and their devices, and also to generate new application streams for value-added uses of industrially captured carbon dioxide.
机译:石墨烯是过去几十年来的原型二维材料,这是一个兴趣和广泛研究的主题。另一方面,二氧化碳因全球气候变化问题而获得臭名昭着的问题。在这种通信中,我们在这两个表面上并置的含碳化合物之间证明了不太可能但有用的婚姻。具体而言,通过开发通过碳酸的电化学欠蚀刻分层开发用于石墨烯转移和铜催化剂基材的新途径来解决可持续石墨烯制造中的挑战。通过使用二氧化碳作为制备导电碳酸电解质的前体来实现铜催化剂基质和化学气相沉积(CVD)合成表面层石墨烯之间的氧化亚铜(Cu2O)中间层的电化学还原。该蚀刻石墨烯转移的蚀刻分层方法减轻了诸如消耗铜催化剂的苛刻化学蚀刻剂的常规需要。该方法还去除通常需要通过盐/碱基电解质进行化学蚀刻或分层所需的伴随多个后续冲洗步骤的需要,从而显着降低了工艺用水。此外,我们还显示使用食品级乙基纤维素作为转移过程的薄膜手柄层的应用。该聚合物薄膜的这种廉价且环境良性的替代方案取代了通常在苛刻溶剂中溶剂的常规使用的高级聚合物。我们希望开发开发能够为石墨烯和类似2D材料及其设备的大规模集成,以及为工业上捕获二氧化碳的增值用途产生新的应用流,以实现更环境可持续和成本效益的策略。

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