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4篇 您的检索式:作者名="Tee SI"
    题名 作者 年代 出处 被引量
1Cutaneous infiltrates of acute myelogenous leukemia simulating inflammatory dermatoses显示文摘Martínez-Escanamé M Zuriel D Tee SI 2013Am J Dermatopathol2013,35,4:1
2Mammographic and sono- graphic findings of steatocystoma multiplex presenting as breast lumps显示文摘Wan JM Wong JS Tee SI 2012Singapore Med J2012,53,12:1
3Reflectance confocalmicroscopy is a useful non-invasive tool in the in vivo diagnosis ofpigmented basal cell carcinoma in Asians 显示文摘Chuah SY Tee SI Tan WP 2015Australas J Dermatol2015,,22:1
4Atomically Substitutional Engineering of Transition Metal Dichalcogenide Layers for Enhancing Tailored Properties and Superior Applications显示文摘Transition metal dichalcogenides(TMDs)are a promising class of layered materials in the post-graphene era,with extensive research attention due to their diverse alternative elements and fascinating semiconductor behavior.Binary MX2 layers with different metal and/or chalcogen elements have similar structural parameters but varied optoelectronic properties,providing opportunities for atomically substitutional engineering via partial alteration of metal or/and chalcogenide atoms to produce ternary or quaternary TMDs.The resulting multinary TMD layers still maintain structural integrity and homogeneity while achieving tunable(opto)electronic properties across a full range of composition with arbitrary ratios of introduced metal or chalcogen to original counterparts(0–100%).Atomic substitution in TMD layers offers new adjustable degrees of freedom for tailoring crystal phase,band alignment/structure,carrier density,and surface reactive activity,enabling novel and promising applications.This review comprehensively elaborates on atomically substitutional engineering in TMD layers,including theoretical foundations,synthetic strategies,tailored properties,and superior applications.The emerging type of ternary TMDs,Janus TMDs,is presented specifically to highlight their typical compounds,fabrication methods,and potential applications.Finally,opportunities and challenges for further development of multinary TMDs are envisioned to expedite the evolution of this pivotal field.Zhaosu Liu Si Yin Tee Guijian Guan Ming‑Yong Han 2024Nano-Micro Letters2024,16,5:0
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