A perdeuterated protein crystal Perdeuterated crystals Shown here is a perdeuterated crystal of HIV-1 Protease/amprenavir complex (vol = 0.2 mm 3 ) used to collect data to 2.0 Å resolution using LADI-III ... Angew Chem Int Ed Engl. (2016) 55(16), 4924-4927. Joint X-ray/neutron crystallographic study of HIV-1 protease with clinical inhibitor ...
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crystal measurements, either with unpolarised or polarised neutrons, in the incident wave length range 1–3 Å. It can support large sample environments (pressure cells, up to 30 kbar, high field cryomagnets
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verdazyl ring (carrying a spin 1/2) surrounded by three phenyl groups.This compound is described by linear S = 1/2 antiferromagnetic (AF) Heisenberg chains. Below TN = 1.78 K, due to small interchain ... the c-axis, in terms of group theory. This small AF moment (1 μB is expected for a spin 1/2) can be interpreted interms of spin reduction in S = ...
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because of the Zeeman splitting of the S = 1 state, a phase transition occurs at a critical field H c11.5 T, for T < 500 mK, when the lowest gap closes. Above H c1 , the field-induced magnetic ordering is ... commensurate + + - - structure, described by the propagation wave vector k = (1/4, 1/4, 0), with the Cr3+ magnetic moments of 1.60(1) mB ...
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flight mode) Middle: collimation part Bottom: front and rear detector moving in the vacuum tube from 1.2 m to 12.8 m after the sample position.
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is often an automated sample changer with up to 22 positions for optical cells with a thickness of 1 to 5 mm (300-1500 µl). The temperature of the sample changer can be varied between 278 and 353 K with
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typical configurations allow neutron radiography and tomography with fields of views ranging from 4.1×4.1 mm 2 to 170×170 mm 2 . NeXT is located at the end of the H521 guide shared with MoTo , D16 and SuperADAM
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M=4 supermirrors to deflect the beam, it is possible to attain a q-range up to 0.42 Å -1 (reflection up) or 0.27 Å -1 (reflection down) for horizontal samples, and an even broader q-range can be achieved
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their organization, thickness, composition and roughness. Surface stacking can be studied on a depth of 1 to 300 nm (5 to 1500 atomic layers). If the incident angle is lower than the critical angle, the material
Pertinence: 13%
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their organization, thickness, composition and roughness. Surface stacking can be studied on a depth of 1 to 300 nm (5 to 1500 atomic layers). If the incident angle is lower than the critical angle, the material
Pertinence: 12%
