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关于此项目
经验公式(希尔记法):
C28H16Br2
化学文摘社编号:
分子量:
512.23
NACRES:
NA.23
PubChem Substance ID:
UNSPSC Code:
12352103
MDL number:
InChI
1S/C28H16Br2/c29-27-21-13-5-1-9-17(21)25(18-10-2-6-14-22(18)27)26-19-11-3-7-15-23(19)28(30)24-16-8-4-12-20(24)26/h1-16H
SMILES string
BrC1=C2C(C=CC=C2)=C(C3=C(C=CC=C4)C4=C(Br)C5=C3C=CC=C5)C6=CC=CC=C61
InChI key
NPNNLGXEAGTSRN-UHFFFAOYSA-N
assay
≥98% (HPLC)
form
powder
mp
348-352 °C
Quality Level
signalword
Warning
hcodes
Hazard Classifications
Eye Irrit. 2 - Skin Irrit. 2 - STOT SE 3
target_organs
Respiratory system
存储类别
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
Yen-Chia Chen et al.
Nature nanotechnology, 10(2), 156-160 (2015-01-13)
Bandgap engineering is used to create semiconductor heterostructure devices that perform processes such as resonant tunnelling and solar energy conversion. However, the performance of such devices degrades as their size is reduced. Graphene-based molecular electronics has emerged as a candidate
Surface-Assisted Reactions toward Formation of Graphene Nanoribbons on Au(110) Surface.
Lorenzo M, et al.
The Journal of Physical Chemistry C, 119(5), 2427-2437 (2015)
Akimitsu Narita et al.
Chemical record (New York, N.Y.), 15(1), 295-309 (2014-11-22)
In this article, we describe our chemical approach, developed over the course of a decade, towards the bottom-up synthesis of structurally well-defined graphene nanoribbons (GNRs). GNR synthesis can be achieved through two different methods, one being a solution-phase process based
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