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Nanozeolite-LTL with GdIII Deposited in the Large and EuIII in the Small Cavities as a Magnetic Resonance Optical Imaging Probe

机译:纳米沸石-LTL,GdIII沉积在大腔中,EuIII沉积在小腔中,作为磁共振光学成像探针

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摘要

The immense structural diversity of more than 200 known zeolites is the basis for the wide variety of applications of these fascinating materials ranging from catalysis and molecular filtration to agricultural uses. Despite this versatility, the potential of zeolites in medical imaging has not yet been much exploited. In this work a novel strategy is presented to selectively deposit different ions into distinct framework locations of zeolite-LTL (Linde type L) and it is demonstrated that the carefully ion-exchanged Gd/Eu-containing nanocrystals acquire exceptional magnetic properties in combination with enhanced luminescence. This smart exploitation of the framework structure yields the highest relaxivity density (13.7 s~(-1)Lg~(-1) at 60 MHz and 25 ℃) reported so far for alumosilicates, rendering these materials promising candidates for the design of dual magnetic resonance/optical imaging probes, as demonstrated in preliminary phantom studies.
机译:超过200种已知沸石的巨大结构多样性是这些引人入胜的材料从催化和分子过滤到农业用途的广泛应用的基础。尽管具有这种多功能性,但沸石在医学成像中的潜力尚未得到充分利用。在这项工作中,提出了一种新颖的策略来选择性地将不同的离子沉积到沸石LTL(Linde L型)的不同构架位置,并且证明了经过精心离子交换的含Gd / Eu纳米晶体具有出色的磁性能,同时具有增强的磁性。发光。迄今为止,对铝硅酸盐的报道表明,这种对框架结构的巧妙开发可产生最高的弛豫密度(在60 MHz和25℃下为13.7 s〜(-1)Lg〜(-1)),这使这些材料有望成为双磁性设计的候选材料共振/光学成像探头,如初步的体模研究所示。

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