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Small-Angle Neutron Scattering (SANS) Facility at BATAN for Nanostructure Studies in Materials Science and Biology

机译:Batan的小角度中子散射(SAN)设施用于材料科学与生物学中的纳米结构研究

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A 36 meter small-angle neutron scattering (SANS) BATAN spectrometer (SMARTer) which is the second largest SANS spectrometer nowadays in the Asia-Oceania region was constructed at the neutron scattering laboratory (NSL) in Serpong, Indonesia. Lots of works on replacing, upgrading and improving the control system, experimental methods, data collection and reduction in the last three years have been carried out to revitalize and then optimize the performance of SMARTer. At first, some standard samples were measured for the inter-laboratory comparison and several kinds of substances such as liquid, gel, powder, and solid-state thin film have been investigated recently of proposed research interest. The morphological changes from ellipsoidal into cylindrical (worm-like) micelles of self-assembly amphiphilic molecules, sodium dodecyl sulfate (SDS) and transformation of disordered into ordered spherical micelle system from unimer Gaussian coils of PEO-PPO-PEO triblock copolymers (Pluronics) in solution by salt addition were also observed. Particle size and its distribution of spherical polystyrene latex and silica nanoparticles in dilute solution have been simply distinguished by applying a spherical calculation model. Bragg peaks which correspond to a lamellar structure was revealed from a powder sample of silver behenate [CH_3(CH_2)_(20)COOAg] nanoparticle and a solid-state PS-PEP, polystyrene-b-poly(ethylene-alt-propylene), diblock copolymer film. The growth mechanism and fractal structures from aggregation of nanoparticles such as Fe_3O_4 ferrofluids or titanium-silica aerogels were investigated directly using a SANS technique through a power-law scattering of fractal structures approximation fitted at their scattering profiles. Meanwhile, magnetic structure from metal-alloys, CuNiFe showing anisotropic magnetic scattering structure properties up to 1 Tesla of external magnetic field was also accomplished confirming the nanocrystalline and magnetic domain sizes. The detail structure of n-dodecyl-β-Dmaltoside (β-DMS) core-shell micelle has been revealed by applying a contrast variation, H_2O/D_2O mixture. Preliminary investigation of globular protein on folding-unfolding, protein denaturation and protein self-assembly studies is being performed. It can be concluded that SMARTer, a 36 m SANS BATAN spectrometer becomes a major tool for structural investigations in the effective length scale of 1 - 100 nm in materials science and biology.
机译:甲36米小角中子散射(SANS)BATAN分光计(更胜一筹的),这是第二大SANS在亚洲大洋洲地区在塞尔彭,印度尼西亚中子散射实验室(NSL)构建时下光谱仪。在更换,升级和完善的控制系统,实验方法,数据收集和减少在过去三年的作品很多已经进行了恢复和再优化更胜一筹的性能。首先,测量了实验室间比和若干种物质,例如液体,凝胶,粉末,和固态薄膜一些标准样品的最近提出的研究兴趣进行了研究。从椭圆形的形态变化到圆柱形(蠕虫状)的自组装的两亲分子,十二烷基硫酸钠(SDS)和从单聚体PEO-PPO-PEO三嵌段共聚物的高斯线圈无序到有序的球形胶束系统(普朗尼克)的转化的胶束在通过加入盐溶液中也观察到。粒径及其在稀溶液中的球形聚苯乙烯胶乳和二氧化硅纳米粒子的分布已经通过应用球形计算模型被简单地区别。其对应于层状结构布拉格峰由山萮酸银的粉末样品揭示[CH_3(CH_2)_(20)COOAg]纳米粒子和固态PS-PEP,聚苯乙烯-b-聚(乙烯 - 交替 - 丙烯)二嵌段共聚物膜。直接使用SANS技术通过分形结构的幂律散射近似装配在它们的散射截面的生长机制,并从纳米颗粒的聚集分形结构如Fe_3O_4铁磁流体或钛 - 二氧化硅气凝胶进行了调查。同时,从金属合金磁结构,CuNiFe表示各向异性磁散射结构特性高达外部磁场的1特斯拉也已实现证实纳米晶体和磁畴的大小。正十二烷基β-Dmaltoside(β-DMS)核 - 壳胶束的详细结构已揭示通过将对比度变化,H_2O / D_2O混合物。正在执行上折叠展开,蛋白质变性和蛋白质自组装研究球状蛋白的初步研究。由此可以得出的结论是更智能,一个36米SANS BATAN分光计成为在1的有效长度尺度结构的调查的主要工具 - 在材料科学与生物学100纳米。

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