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Reversible disorder-order transitions in atomic crystal nucleation 期刊论文
Science, 2021
作者:  Sungho Jeon;  Taeyeong Heo;  Sang-Yeon Hwang;  Jim Ciston;  Karen C. Bustillo;  Bryan W. Reed;  Jimin Ham;  Sungsu Kang;  Sungin Kim;  Joowon Lim;  Kitaek Lim;  Ji Soo Kim;  Min-Ho Kang;  Ruth S. Bloom;  Sukjoon Hong;  Kwanpyo Kim;  Alex Zettl;  Woo Youn Kim;  Peter Ercius;  Jungwon Park;  Won Chul Lee
收藏  |  浏览/下载:10/0  |  提交时间:2021/02/17
Confinement of atomically defined metal halide sheets in a metal-organic framework 期刊论文
NATURE, 2020, 577 (7788) : 64-+
作者:  Gonzalez, Miguel I.;  Turkiewicz, Ari B.;  Darago, Lucy E.;  Oktawiec, Julia;  Bustillo, Karen;  Grandjean, Fernande;  Long, Gary J.;  Long, Jeffrey R.
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/03

The size-dependent and shape-dependent characteristics that distinguish nanoscale materials from bulk solids arise from constraining the dimensionality of an inorganic structure(1-3). As a consequence, many studies have focused on rationally shaping these materials to influence and enhance their optical, electronic, magnetic and catalytic properties(4-6). Although a select number of stable clusters can typically be synthesized within the nanoscale regime for a specific composition, isolating clusters of a predetermined size and shape remains a challenge, especially for those derived from two-dimensional materials. Here we realize a multidentate coordination environment in a metal-organic framework to stabilize discrete inorganic clusters within a porous crystalline support. We show confined growth of atomically defined nickel(ii) bromide, nickel(ii) chloride, cobalt(ii) chloride and iron(ii) chloride sheets through the peripheral coordination of six chelating bipyridine linkers. Notably, confinement within the framework defines the structure and composition of these sheets and facilitates their precise characterization by crystallography. Each metal(ii) halide sheet represents a fragment excised from a single layer of the bulk solid structure, and structures obtained at different precursor loadings enable observation of successive stages of sheet assembly. Finally, the isolated sheets exhibit magnetic behaviours distinct from those of the bulk metal halides, including the isolation of ferromagnetically coupled large-spin ground states through the elimination of long-range, interlayer magnetic ordering. Overall, these results demonstrate that the pore environment of a metal-organic framework can be designed to afford precise control over the size, structure and spatial arrangement of inorganic clusters.


  
Multiple generations of grain aggregation in different environments preceded solar system body formation 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2018, 115 (26) : 6608-6613
作者:  Ishii, Hope A.;  Bradley, John P.;  Bechtel, Hans A.;  Brownlee, Donald E.;  Bustillo, Karen C.;  Ciston, James;  Cuzzi, Jeffrey N.;  Floss, Christine;  Joswiak, David J.
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
dust accretion  solar system origin  interstellar dust  cosmic dust