Yilong Zhou
Southeast University
42 Papers
141 Citations
Yilong Zhou is an academic researcher from Southeast University. The author has contributed to research in topics: Graphene & Nanoparticle. The author has an hindex of 14, co-authored 32 publications. Previous affiliations of Yilong Zhou include Lawrence Berkeley National Laboratory.
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Papers
Spongy Graphene as a Highly Efficient and Recyclable Sorbent for Oils and Organic Solvents
Hengchang Bi,Xiao Xie,Kuibo Yin,Yilong Zhou,Wan Shu,Longbing He,Feng Xu,Florian Banhart,Litao Sun,Rodney S. Ruoff +9 more
TL;DR: In this article, spongy graphene (SG), a shape-mouldable and nanoporous material with a high specific surface area used as a versatile and recyclable sorbent material, is proposed and studied.
Graphene oxide as high-performance dielectric materials for capacitive pressure sensors
TL;DR: In this paper, an ultra-sensitive GO-based capacitive pressure sensor with graphene as electrodes was presented, which can detect a subtle pressure of ∼0.24Pa with a fast response time (∼100m) and a high sensitivity ( ∼ 0.8kPa−1).
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Low temperature casting of graphene with high compressive strength
Hengchang Bi,Kuibo Yin,Xiao Xie,Yilong Zhou,Neng Wan,Feng Xu,Florian Banhart,Litao Sun,Rodney S. Ruoff +8 more
TL;DR: A pH-mediated hydrothermal reduction which is combined with moulding methods and allows controllable fabrication of compact high density graphene macrostructures with various shapes is reported.
Large-range Control of the Microstructures and Properties of Three-dimensional Porous Graphene
TL;DR: This work proposes a facile and highly effective strategy for large-range tailoring the porous architecture and its properties by a modified freeze casting process and demonstrates a very convenient and general protocol to finely tailor the structure and further benefit the various applications of porous graphene.
Highly enhanced performance of spongy graphene as an oil sorbent
TL;DR: In this paper, a spongy graphene with a highly enhanced performance as an oil sorbent was demonstrated, achieving an absorption capacity of 616 times of its own weight, which is approximately 8 times higher than that in previous reports.
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