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1 Recent reports on holey graphene showed that holey 2D nanosheets can outperform their intact counterp
2 f two-dimensional (2D) nanosheets results in holey 2D nanosheets that have abundant edge atoms.
3 tion perspectives, it is desirable to obtain holey 2D nanosheets with defined hole morphology and hol
4 y qualitative and quantitative properties of holey adaptive landscapes which may be related to the pa
5 bes how to create a grid surface coated with holey carbon by first inducing holes in a Formvar film t
6       It takes 4-5 h to make several hundred holey carbon grids and about 1 h to make the frozen-hydr
7  a Formvar film to act as a template for the holey carbon that is stable under cryo-electron microsco
8          An appropriate image of resulting ("holey") fitness landscapes is a (multidimensional) flat
9 th a high reversibility by using B,N-codoped holey graphene as a highly efficient catalyst for CO2 re
10 systematically tailoring the porosity in the holey graphene backbone, charge transport in the composi
11 hways as well as a high packing density, the holey graphene framework electrode can deliver a gravime
12           Here we report a three-dimensional holey graphene framework with a hierarchical porous stru
13                            Recent reports on holey graphene showed that holey 2D nanosheets can outpe
14 eport the design of a three-dimensional (3D) holey-graphene/niobia (Nb2O5) composite for ultrahigh-ra
15  carbon, carbon nanotubes and crosslinked or holey graphenes are used exclusively as the active elect
16 amework) scenario of biological evolution on holey landscapes assuming that it starts on a genotype f
17 rding to the properties of the corresponding holey landscapes.
18            Benefiting from the unique porous holey nanostructure and high catalytic activity of the c
19                           We find that these holey oxide nanosheets exhibit strong mechanical stabili
20                                        These holey oxide nanosheets represent a promising material pl
21                           Thus, instead of a holey protein array, the experimental model presented he
22  strategy for versatile synthesis of various holey transition metal oxide nanosheets with adjustable

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