Net topology

sxp

Ingested production record from rcsr+mofplus. Per-field provenance in field_sources.

JSON · mfpx

96 vertices and 288 edges in the unit cell. 84 of them leave the cell and continue into a neighbouring one; those are drawn in the accent colour and end at a hollow node. Squares are vertices of coordination 5 or more, circles of 4 or fewer. Drag to rotate, or focus the figure and use the arrow keys.

Crystallographic description

Spacegroup
not recorded
Cell lengths
a = 4.3652 Å, b = 4.3652 Å, c = 4.3652 Å
Cell angles
α = 90.00°, β = 90.00°, γ = 90.00°
Atoms in cell
96
Transitivity pqrs
not recorded
Catenated
no
No, on the MOF+ name heuristic: that source marks a catenated net by a -c in its name, which the legacy client filters on, and this is that marker read back. A name heuristic, not a computed property of the topology, and not a measurement either source made.

Canonical key

Systre key
3 1 2 0 0 0 1 3 0 0 0 1 4 0 0 0 1 5 0 0 0 1 6 0 0 0 1 7 0 0 0 2 3 0 0 0 2 4 0 0 0 2 8 0 0 0 2 9 0 0 0 2 10 0 0 0 3 5 0 0 0 3 9 0 0 0 3 11 0 0 0 3 12 0 0 0 4 5 0 0 0 4 9 0 0 0 4 13 0 0 0 4 14 0 0 0 5 9 0 0 0 5 15 0 0 0 5 16 0 0 0 6 17 0 0 0 6 18 0 0 0 6 19 0 0 0 6 20 0 0 0 6 21 0 0 0 7 22 0 0 0 7 23 0 0 0 7 24 0 0 0 7 25 0 0 0 7 26 0 0 0 8 23 1 0 0 8 27 0 0 0 8 28 0 0 0 8 29 0 0 0 8 30 0 0 0 9 31 0 0 0 9 32 0 0 0 10 22 0 1 0 10 33 0 0 0 10 34 0 0 0 10 35 0 0 0 10 36 0 0 0 11 21 0 0 1 11 25 1 0 0 11 36 0 0 1 11 37 0 0 0 11 38 0 0 0 12 34 0 -1 0 12 39 0 0 0 12 40 0 0 0 12 41 0 0 0 12 42 0 0 0 13 35 0 0 0 13 39 1 0 -1 13 40 1 0 -1 13 41 1 0 -1 13 42 1 0 -1 14 21 0 0 0 14 24 0 0 0 14 36 0 0 0 14 37 0 0 -1 14 38 0 0 -1 15 22 0 0 0 15 33 0 -1 0 15 34 0 -1 0 15 35 0 -1 0 15 38 0 0 0 16 26 0 0 0 16 27 0 -1 -1 16 28 0 -1 -1 16 29 0 -1 -1 16 30 0 -1 -1 17 18 0 0 0 17 19 0 0 0 17 32 -1 1 0 17 42 0 1 0 17 43 0 0 0 18 20 0 0 0 18 24 0 0 0 18 28 -1 0 0 18 32 -1 1 0 19 20 0 0 0 19 25 0 1 0 19 29 0 0 -1 19 32 -1 1 0 20 32 -1 1 0 20 39 0 0 -1 20 44 0 0 0 21 36 0 0 0 21 38 0 0 -1 21 45 0 0 0 22 27 0 -1 -1 22 34 0 -1 0 22 35 0 -1 0 23 24 0 0 0 23 25 0 0 0 23 31 -1 0 0 23 43 0 0 0 24 26 0 0 0 24 31 -1 0 0 25 26 0 0 0 25 31 -1 0 0 26 31 -1 0 0 26 44 0 -1 0 27 28 0 0 0 27 29 0 0 0 27 40 1 0 0 28 30 0 0 0 28 46 0 0 0 29 30 0 0 0 29 47 0 0 0 30 33 0 0 0 30 41 0 1 0 31 33 0 0 0 32 37 0 0 0 33 34 0 0 0 33 35 0 0 0 34 47 0 0 0 35 46 0 0 -1 36 37 0 0 -1 36 42 1 0 -1 37 38 0 0 0 37 48 0 0 0 38 39 0 0 0 39 40 0 0 0 39 41 0 0 0 40 42 0 0 0 40 45 0 0 1 41 42 0 0 0 41 48 -1 0 0 43 45 0 0 1 43 46 -1 0 0 43 47 0 0 0 43 48 -1 1 0 44 45 0 0 0 44 46 -1 0 -1 44 47 0 0 -1 44 48 -1 1 -1 45 46 -1 0 -1 45 47 0 0 -1 46 48 0 1 0 47 48 -1 1 0
(rcsr)The canonical Systre key, copied verbatim from the local RCSR Systre archive of 2019-06-01. It is not computed here and cannot be: no Gavrog/Systre toolchain runs on this machine, so nothing on this site derives, extends, repairs or verifies a key. The checksum served beside it is the one the archive itself carries, copied from the same block, so that this copy can be checked against the upstream file; no checksum is computed or verified here.
Checksum
eb7d956e6229095bef07096c2303777d (rcsr)

Vertices

The mapping of coordination sequences onto vertex classes that the source supplied was checked against a walk over the periodic topology of the net itself, one walk per vertex class, and agreed. The sequences are the values the source supplied; the walk settled nothing but which class each one describes.

Not corroborated. The coordination sequences beside these symbols carry a corroboration of their own, stated under coordination_sequences; the vertex symbols carry none. A vertex symbol names the shortest ring at each angle of a vertex, no ring perception runs anywhere in this project, and so there is nothing here that could reproduce one: these strings are served on the word of the source alone. What was checked is their shape — a d-coordinated vertex has d(d-1)/2 angles and a whole symbol names a ring at each, and a string that lists fewer is flagged rather than served as a symbol. A string that passes that count can still be wrong in its rings, and nothing here says otherwise.

One row per distinct vertex. The coordination sequence counts how many vertices lie at each topological distance; the vertex symbol names the shortest ring at each angle of the vertex. The two columns do not carry the same warrant: which of them was corroborated, and which was not, is stated above the table.
# Coordination Site symmetry Vertex symbol Coordination sequence
0 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
1 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
2 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
3 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
4 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
5 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
6 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
7 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
8 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
9 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
10 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
11 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
12 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
13 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
14 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
15 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
16 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
17 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
18 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
19 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
20 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
21 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
22 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
23 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
24 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
25 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
26 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
27 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
28 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
29 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
30 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
31 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
32 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
33 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
34 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
35 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
36 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
37 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
38 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
39 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
40 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
41 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
42 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
43 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
44 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
45 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
46 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
47 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
48 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
49 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
50 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
51 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
52 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
53 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
54 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
55 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
56 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
57 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
58 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
59 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
60 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
61 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
62 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
63 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
64 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
65 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
66 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
67 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
68 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
69 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
70 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
71 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
72 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
73 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
74 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
75 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
76 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
77 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
78 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
79 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
80 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
81 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
82 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
83 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
84 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
85 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
86 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
87 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
88 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
89 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
90 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
91 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
92 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
93 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
94 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726
95 6 3.3.3.3.4(3).4(3).5.5.5.5(2).6.6.6(2).6(3).7(4)6 19 50 94 158 232 334 447 590 726

Provenance

Source
rcsr+mofplus — reconciled from both, field by field
Identifier at the source
sxp
Retrieved
2026-09-09
Licence
CC BY 4.0 — verified from MOF++ project decision, CONTEXT §6 (Licensing): MOF+ is this group's own service, so nets retrieved from it are the project's own data to license, and the project licenses its data CC BY 4.0. No third-party grant is claimed..
Published
yes

Position in the collection

RCSR index
1971 (derived) Derived by this site, not published by RCSR: the 1-based position of the symbol in the ascending ASCII-lexicographic ordering of the 2930 symbols in the RCSR Systre archive of 2019-06-01. RCSR does not number its nets; this is our ordering of their symbols and nothing more.
Complexity rank
2193 The order the ingest processed this net in, simplest first. A different number from the RCSR index above, meaning a different thing.