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020 ▼a 9780438135123
035 ▼a (MiAaPQ)AAI10903687
040 ▼a MiAaPQ ▼c MiAaPQ ▼d 248032
0820 ▼a 540
1001 ▼a Kafle, Kabindra.
24510 ▼a Understanding the Structure of Cellulose Microfibrils Using Vibrational Sum-Frequency-Generation (SFG) Spectroscopy in Intact Plant Cell Walls and Processed Biomass.
260 ▼a [S.l.] : ▼b The Pennsylvania State University., ▼c 2016
260 1 ▼a Ann Arbor : ▼b ProQuest Dissertations & Theses, ▼c 2016
300 ▼a 222 p.
500 ▼a Source: Dissertation Abstracts International, Volume: 79-12(E), Section: B.
5021 ▼a Thesis (Ph.D.)--The Pennsylvania State University, 2016.
520 ▼a Understanding the plant growth and development requires a comprehensive knowledge of hierarchical structure of cellulose in the plant cell wall. Higher plant cell walls consist of cellulose that forms an ordered fibrillary structure, called cell
520 ▼a We utilized SFG to probe the CMF orientation, which has been shown to play an important role in plant cell wall biomechanics and expansion. To better understand the changes in CMF orientation through developmental stages, the epidermal cell wall
520 ▼a SFG was employed along with x-ray diffraction (XRD) and infrared (IR) spectroscopy to detect the presence of cellulose polymorphs in cotton fabrics processed with mercerization and liquid ammonia treatment in the commercial textile mills. Partia
590 ▼a School code: 0176.
650 4 ▼a Chemistry.
650 4 ▼a Chemical engineering.
690 ▼a 0485
690 ▼a 0542
71020 ▼a The Pennsylvania State University. ▼b Chemistry.
7730 ▼t Dissertation Abstracts International ▼g 79-12B(E).
773 ▼t Dissertation Abstract International
790 ▼a 0176
791 ▼a Ph.D.
792 ▼a 2016
793 ▼a English
85640 ▼u http://www.riss.kr/pdu/ddodLink.do?id=T15000674 ▼n KERIS
980 ▼a 201812 ▼f 2019
990 ▼a 관리자