NSF Center for Single-Entity Nanochemistry and Nanocrystal Design

Our Mission

The NSF Center for Single-Entity Nanochemistry and Nanocrystal Design (CSENND) is addressing one of the biggest challenges in nanocrystal chemistry – the inherent heterogeneity of nanocrystals – by creating the scientific toolkit and chemical knowledge to separate individual nanocrystal responses from bulk property measurements. Nanocrystals are a driver of innovation because they display properties distinct from their bulk form. For example, bulk gold appears a lustrous yellow, but gold nanocrystals can appear nearly any color depending on their specific size and shape. This structure-dependent property can be leveraged for technologies such as disease diagnostic tests and solar cells, for example.

However, the way in which nanocrystals are made introduces variations from one crystal to the next in the same sample, meaning that each one may have different properties. This heterogeneity provides ample opportunity to discover new nanocrystals with useful properties but also makes the discovery of the nanocrystals with exceptional properties incredibly challenging, similar to finding the needle in a haystack. This heterogeneity also makes accurate structure-property relationships difficult to obtain as most property measurements are based on the ensemble. Separating individual nanocrystal responses from the bulk through single-nanocrystal measurements provides accurate structure-property relationships that are essential to facilitating conceptual insights that accelerate nanocrystal design. Separating individual nanocrystal responses from the bulk can also reveal rare events, enhance reproducibility, lead to property enhancements, and promote sustainable nanochemistry. Thus, CSENND is creating the resources that make single-nanocrystal measurements high-throughput, information rich, reproducible, and accessible to a broad cross-section of researchers. For Phase 1 of CSENND, these efforts are being directed toward nanocrystals for catalysis and chemical sensing.

This research is supported by the NSF Centers for Chemical Innovation Program Grant #2221062 from the Division of Chemistry.

 

xsbd 19 1 | casino royale online gambling | joe fortune casino | trò chơi casino trực tuyến | game ban banh keo | msi gl62m 7rdx ssd slot | burning hot slot | casino tilbud | vân tịch truyện | web casino 777 | birds on a wire slot | cau soi mn | paypal slots | chat zalo me trên điện thoại | slotted strut | free cash no deposit casino | vietnam casino | best live casino uk | 8868 | pci express 3.0 x4 slot | web slot | eagle pass casino | slot die design | burning desire slot review | vân tiny lấy kem ở đâu | tú lơ khơ tá lả phỏm zingplay | dự đoán xổ số kiên giang wap | 0165 đổi | thống kê loto | wrest point casino | game line 98 classic | v9betvn | centurion slot game | water dragons slot | chinese casino game | slotting là gì | slot judi terpercaya | australia online casino | thông kê tổng | cô dâu gán nợ tập 1 | bongda365 tv | excalibur hotel & casino | sunquest slot | choilathang sbobet | slot machine games | situs judi online slot | hack slot 2024 | online casino jobs from home | novibet casino review |