An aluminophosphate molecular sieve with 36 crystallographically distinct tetrahedral sites.

scientific article

An aluminophosphate molecular sieve with 36 crystallographically distinct tetrahedral sites. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1002/ANIE.201402495
P698PubMed publication ID24862164

P50authorJun Kyu LeeQ38329762
Paul CoxQ56896640
DaLiang ZhangQ57583373
P2093author name stringSuk Bong Hong
Shilun Qiu
Paul A Wright
Liangkui Zhu
Seungwan Seo
Alessandro Turrina
P2860cites workTowards automated diffraction tomography: part I--data acquisitionQ31093986
Three-dimensional rotation electron diffraction: software RED for automated data collection and data processingQ35054923
Synthesis of an extra-large molecular sieve using proton sponges as organic structure-directing agentsQ36673059
Unraveling the perplexing structure of the zeolite SSZ-57.Q45837201
Derivation of interatomic potentials for microporous aluminophosphates from the structure and properties of berliniteQ57619443
Delaminated zeolite precursors as selective acidic catalystsQ59061306
P433issue29
P407language of work or nameEnglishQ1860
P921main subjectmolecular sieveQ910229
P304page(s)7480-7483
P577publication date2014-05-26
P1433published inAngewandte Chemie International EditionQ62023953
P1476titleAn aluminophosphate molecular sieve with 36 crystallographically distinct tetrahedral sites
P478volume53

Reverse relations

Q981586443D-3D topotactic transformation in aluminophosphate molecular sieves and its implication in new zeolite structure generationcites workP2860

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