2016
DOI: 10.1002/adfm.201603886
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Photodetectors Based on Two‐Dimensional Layered Materials Beyond Graphene

Abstract: 1 of 41) 1603886However, despite its high absorption coefficient, [15] single-layer graphene can absorb only ≈2.3% of incident visible and infrared (IR) light due to its thinness, [16,17] which is undesirable for high performance photodetectors that require strong light absorption. Graphene's gaplessness also leads to short photocarrier lifetime in pure graphene, which is unfavorable for efficient photocurrent generation. [18][19][20] In addition to graphene, this family of materials contains an extremely larg… Show more

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Cited by 580 publications
(574 citation statements)
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References 314 publications
(537 reference statements)
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“…The few-layered two-dimensional GaTe materials with direct band gap were successfully prepared and applied as the channel of photodetectors [12][13][14][15], which exhibited a fairly high photoresponsivity of 10 4 A/W and a very fast photoresponse time less than 20 ms [13], which was much better than other layered materials [16,17]. Such wonderful performance may relate to its unique monoclinic structure, however, the crystal structure of GaTe is still not fully understood.…”
Section: Introductionmentioning
confidence: 99%
“…The few-layered two-dimensional GaTe materials with direct band gap were successfully prepared and applied as the channel of photodetectors [12][13][14][15], which exhibited a fairly high photoresponsivity of 10 4 A/W and a very fast photoresponse time less than 20 ms [13], which was much better than other layered materials [16,17]. Such wonderful performance may relate to its unique monoclinic structure, however, the crystal structure of GaTe is still not fully understood.…”
Section: Introductionmentioning
confidence: 99%
“…Their exceptional properties including an adjustable spectral absorption range, high carrier mobility, long diffusion lengths, and the affordability of fabrication render them one of the most exceptional optoelectronic materials for photoelectrical device applications especially in photodetectors [41]. Organic-inorganic hybrid halide perovskites have the same chemical formula ABX 3 . The A cation can be organic species including CH 3 CH 2 NH 3 + (EA), HC(NH 2 ) 2 + (FA), and CH 3 NH 3 (MA) or inorganic species such as Cs, Rb, K, and Na, and their ionic radiuses decrease gradually.…”
Section: Perovskite Photodetectormentioning
confidence: 99%
“…, strong photoluminescence, good chemical stability and mechanical flexibility, and so on [3]. (Figure 6b), but the response time can be several seconds, which is influenced by the surroundings of MoS 2 [32].…”
Section: Mos 2 Photodetectormentioning
confidence: 99%
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