Ultrathin Graphdiyne Nanowires with Diameters below 3 nm: Synthesis, Photoelectric Effect, and Enhanced Raman Sensing

Author:

Yang Linchangqing1,Li Junfang1,Yin Meng1,Kong Qingkong2,Xi Guangcheng1ORCID

Affiliation:

1. Key Laboratory of Analytical Chemistry for Consumer Products Chinese Academy of Inspection and Quarantine Beijing 100176 China

2. School of the Environment and Safety Engineering Jiangsu University Zhenjiang 212013 China

Abstract

AbstractDue to the intrinsic layered structure, graphdiyne (GDY) strongly tends to form 2D materials, therefore, most of the current research are based on GDY 2D structures. Up to now, the synthesis of its ultrathin nanowires with a high aspect ratio has not been reported. Here, the ultrathin GDY nanowires with diameters below 3 nm are reported for the first time by a two‐phase interface synthesis method, which has excellent crystallinity and an aspect ratio of more than 2500. Evidence shows that the GDY ultrathin nanowires are formed by the oriented‐attachment mechanism of nanoparticles. The GDY ultrathin nanowires exhibit a significant quantum confinement effect, enhanced photoelectric effect, and promising applications in surface‐enhanced Raman sensing.

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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